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The Marikana Killings and Labour Dispute Resolution in South Africa: Implications of an Inquiry

Research Event

4 August 2015 - 4:00pm to 5:00pm

Chatham House, London

Event participants

Toby Fisher, Barrister, Landmark Chambers; Representative of the South African Human Rights Commission, Marikana Commission of Inquiry
Gary White, Director of Operations, Ineqe Group; Expert Witness on Policing, Marikana Commission of Inquiry
Chair: Muzong Kodi, Associate Fellow, Africa Programme

The Marikana Commission of inquiry was appointed by South Africa’s President Jacob Zuma following more than 40 deaths (with many others left injured) after police opened fire on striking miners at Marikana in August 2012.

The massacre was reported as the worst use of lethal force by the South African Police Service since 1994, and brought issues of labour dispute resolution, public-order policing and accountability into stark relief.

Speakers will discuss the Commission's recently-published report and its potential impact on industrial stakeholders, as well as the wider consequences for South Africa.

Department/project

Christopher Vandome

Research Fellow, Africa Programme
+44 (0) 20 7314 3669




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Estimating Levels of Illegal Logging and the Related Trade: Lessons from the Indicators Project

Invitation Only Research Event

9 November 2015 - 9:00am to 5:00pm

Chatham House, London

The aim of the meeting is to identify ways to improve monitoring of illegal logging and the trade in illegal timber. Building on the experiences of Chatham House’s project Indicators of Illegal Logging, the discussions will focus on the data needs of particular end users and methodological challenges for estimating levels of illegality. The potential for improved coordination and collaboration between global efforts to monitor trade flows will also be considered.

Attendance at this event is by invitation only.

Adelaide Glover

Digital Coordinator, Energy, Environment and Resources Programme




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Navigating the New Normal: China and Global Resource Governance

28 January 2016

How China responds to the challenges of resource security and sustainability, working with others, will help define its reputation as a responsible actor on the world stage in the next decade, according to a new paper.

Felix Preston

Former Senior Research Fellow and Deputy Research Director, Energy, Environment and Resources

Rob Bailey

Former Research Director, Energy, Environment and Resources

Siân Bradley

Research Fellow, Energy, Environment and Resources Programme

Dr Wei Jigang, Senior Research Fellow, Department of Industrial Economy, Development Research Center of the State Council (DRC)
Dr Zhao Changwen, Director, Department of Industrial Economy, Development Research Center of the State Council (DRC)

2016-01-27-china-resource-governance-2.jpg

Qingdao, China. Photo: Getty Images.
  • It is time to upgrade global resource governance
  • Meaningful progress cannot be achieved without China
  • China will need to be both innovative and pragmatic in its approach
  • New modes of cooperation are needed
  • Changes in China’s economy present opportunities and risks

Executive summary

China’s new role in the global governance of natural resources is coming to the fore against a backdrop of profound uncertainty, driven by the convergence of three interlinked trends. At home, China’s leaders are navigating the structural shift to slower but higher-quality growth, a phase of development referred to as the ‘new normal’, while facing considerable environmental and resource security challenges. Globally, the slowdown in China’s economy has sent reverberations through commodity markets, pulling the plug on the decade-long commodities ‘super cycle’. Meanwhile, China is taking on a growing role in global governance, from the G20 and multilateral development banks, to its regional partnerships in Latin America and Africa.

During the resources boom of the last decade, policy-makers and businesses in consumer countries were focused on high and volatile resource prices. The risks posed by resource nationalism in producer countries were seen in the proliferation of export restrictions and the increase in investment disputes. Today, the tables have turned, leaving producer countries facing economic pressure from falling revenues and investments. Many organizations have called on governments to phase out subsidies for fossil fuels and other natural resources while prices are low. The international policy debate is shifting to the immediate challenges presented by a massive oversupply of many energy and mineral commodities, and the longer-term risk of ‘stranded assets’.

These new resource realities will provide the context for China’s growing global role, as well as setting the tenor of its relations with producer countries. Over the past decade, narratives around China often focused on its real or perceived impacts from resource production overseas and consumption at home. In the next, China’s approach to resource security and sustainability will help define its reputation, and whether it is perceived as a responsible actor on the world stage and as a development partner. The collection of international narratives, norms, rules and organizations that currently guides resource production, trade and consumption – what we call ‘global resource governance' in this report – will provide the framework.

Much political leadership will be required to overcome the barriers to China assuming a more active role in global resource governance. On the one hand, there has been slow progress in expanding China’s role in organizations from the World Bank to the International Energy Agency (IEA). On the other, new instruments or processes initiated by China can be seen as a challenge to the existing rules-based order, as the US reaction to the establishment of the Asian Infrastructure Investment Bank (AIIB) demonstrated. Yet developments such as the US–China Joint Presidential Statement on Climate Change in September 2015, ahead of the Paris Climate Conference, show that it is possible to forge cooperation and boost the prospects for progress on public goods at the multilateral level, even in politically fraught areas.

China’s international role on natural resources is also closely tied to ongoing reforms at home. The introduction of ‘ecological civilization’ as a guiding principle for China’s development at the Communist Party’s 17th Congress in 2007 marked a recognition of the need not only to address China’s domestic challenges such as air quality and water scarcity but also shift to an environmentally sustainable model of economic development. In 2015 China’s leaders set out the key incentives, accountability and mechanisms to deliver the ecological civilization in China’s 13th Five-Year Plan. Central elements of this vision, such as building sustainable cities, pursuing environmentally-friendly economic growth and developing the circular economy will have major impacts on China’s future resource consumption and import needs.

Globally, the speed and scale of the economic realignments have taken most experts and policy-makers by surprise – in many respects, China’s new normal is the world’s new normal. The greatest challenge that China’s government faces is managing a shift to slower but higher-quality growth. It is clear that the ramifications of this reach far beyond the confines of the Chinese economy or global commodity markets; yet the situation remains fluid and the nature of a new equilibrium is difficult to predict. This only makes it more urgent to consider the strategic and practical options available to policy-makers, both in China and around the world.

This report is the result of two years of joint research between Chatham House and the Development Research Center of the State Council (DRC), including six expert workshops in China and conversations with international organizations. It discusses key policy areas in global resource governance as they relate to China – in light of recent falls in commodity prices, China’s shifting economic situation, and its growing global role in the ‘new normal’. The scope of the research is limited to non-renewable energy, metals and mineral resources; throughout this report, the term ‘resources’ refers to these commodities. Other traded commodities such as agricultural goods are not included, and land, water and air are discussed only in the context of their important linkages with energy and metals. 

The report considers the costs and benefits of a more active role for China in global resources governance. It recognizes that different commodities face different challenges and require different governance frameworks, and that different regions require context-specific responses. The report also considers the risks of more limited engagement of China and other new actors, which could mean declining relevance for existing processes and institutions that govern resource production, trade and consumption, and a diminished capacity to tackle longer-term challenges like climate change.




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Agricultural Commodity Supply Chains: Trade, Consumption and Deforestation

28 January 2016

Private-sector commitments and government policies, a loss of support for biofuels, and health concerns over the consumption of palm oil and beef, are factors that may help to restrict the further expansion of agricultural land into forest areas.

Duncan Brack

Associate Fellow, Energy, Environment and Resources Programme

Laura Wellesley

Research Fellow, Energy, Environment and Resources Programme

Adelaide Glover, Project Coordinator, Forest Governance and Natural Resources

2016-01-28-agricultural-commodity-supply-chain.jpg

An employee arranges packages of instant ramen noodles a store in Seoul, South Korea. Photo via Getty Images.
  • Clearance of forests for agriculture is a major cause of deforestation worldwide; the three most significant commodities in this regard are palm oil, soy and beef, which between them accounted for an estimated 76 per cent of the deforestation associated with agriculture in 1990–2008. International markets are an important driver of demand, particularly for palm oil and soy.
  • Global production of palm oil has grown strongly for several decades, more than doubling over the period 2000–13. Indonesia and Malaysia between them account for more than 80 per cent of palm oil production, and are likely to continue to dominate world exports. The European Union (EU), India and China are the main consumers, importing almost 60 per cent of the market; EU demand is driven significantly by biofuel policy, while India and China use palm oil mainly as a cooking oil and in processed foods.
  • Global production of soybeans has roughly doubled since 2000, and the expansion of output has been particularly rapid in South America; Brazil and Argentina accounted for almost 50 per cent of global production in 2013. Overwhelmingly the main importer is China (which took 43 per cent of all soy imports in 2014), mainly for animal feed for its growing meat industry. The EU is the second largest importer, using soy for animal feed and biofuel.
  • In contrast, consumption and production of beef has grown only slowly. Major producers are the US, Brazil, the EU and China; principal exporters are Brazil, India, Australia and the US. The US and the EU are still major consumers, although – as in most developed countries – consumption is falling slightly; other significant consumers include Brazil, India, Pakistan and China. Russia and Japan are also significant importers.
  • Three main factors underlie the growth in both consumption and production of palm oil and soy: population growth; changing dietary preferences; and policy support for biofuels. The first two are just as relevant to beef. Continued growth in world population and the expansion of the global middle class, with accompanying higher consumption levels of processed food and meat, will continue to drive demand upwards – strongly for palm oil and soy, more weakly for beef. Given the difficulty of increasing yields, particularly in developing countries, the further expansion of agricultural land into forest areas is inevitable. None the less, three other factors may restrict this growth: the private-sector commitments and government policies that are being developed with the aim of decoupling agricultural production from deforestation; a loss of support for biofuels, most notably in the EU; and health concerns, particularly over the consumption of palm oil and beef.

 




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Illegal Logging Update and Stakeholder Consultation Meeting Number 26

Research Event

16 June 2016 - 8:30am to 17 June 2016 - 5:00pm

The Crystal, London

This event is part of a series of illegal logging update meetings that will bring together more than 250 participants from civil society, industry and governments from around the world. 

Download the presentations from the event on the Illegal Logging Portal.

Illegal Logging Project




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The Elements of Power: Gadgets, Guns and the Struggle for a Sustainable Future in the Rare Metal Age

Invitation Only Research Event

19 May 2016 - 5:00pm to 6:30pm

Chatham House, London, UK

At this session, the speaker will argue that our future hinges on a set of elements that receive scant attention even from those whose fortunes rely upon them. The speaker will outline why our electronic gadgets, the most powerful armies and indeed the fate of our planet depend on producing sustainable supplies of rare metals. He will outline some of the  new environmental, economic, and geopolitical consequences of supply chains and discuss the dynamics of the rare metal markets which are vastly different than traditional commodities traded on open exchanges. The speaker will also address some of the security of supply issues arising from China's role as the dominant consumer and producer of most of the world’s minor metals. Finally, the discussion will also include what countries and companies can do to ensure resilient supply lines.

Attendance at this event is by invitation only. 

Owen Grafham

Manager, Energy, Environment and Resources Programme
+44 (0)20 7957 5708




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Guidelines for Good Governance in Emerging Oil and Gas Producers 2016

13 July 2016

The updated Guidelines focus on eight key objectives for the petroleum sector in emerging producing countries and include policy-oriented recommendations for each objective.

Dr Valérie Marcel

Associate Fellow, Energy, Environment and Resources Programme

2016-07-13-guidelines-good-governance.jpg

An operating drill during oil and gas exploration. Photo: Getty Images.

Summary

The Guidelines for Good Governance in Emerging Oil and Gas Producers 2016, compiled under the auspices of the New Petroleum Producers Discussion Group, review common challenges facing emerging producer countries in the phases of exploration, recent discoveries and early production. The following are the Guidelines’ broad recommendations for addressing these challenges.

  • International best practice may not be appropriate in the case of emerging producers in the oil and gas sector. Instead, the aim should be for more appropriate practice, taking account of the national context; more effective practice, in the interests of achieving rapid results; and better practice, allowing incremental improvements to governance.
  • Government policy should be guided by a clear vision for the development of the country and a strategic view of how the petroleum sector will deliver that vision. 
  • In order to attract the most qualified oil company to a country with an unproven resource base, the host government can invest in geological data, strengthen its prequalification criteria and ensure transparency. It should also plan for success and anticipate the implications of hydrocarbon discoveries in its tax code, and be robust through declining oil and gas prices.
  • Licensing is a key mechanism whereby government can reap early revenues and maximize long-term national benefits. Government must ensure that it simplifies both negotiations and tax structures to mitigate knowledge asymmetries with oil companies.
  • Government and industry must engage and share information with affected communities to manage local expectations regarding the petroleum sector and build trust. 
  • In emerging producers, budgets for local content may be small and timelines for building capacity short. In this context, the focus should be on the potential for repeat use of any local capacity developed. 
  • Meaningful participation of national organizations in resource development is a central objective of many emerging producers. Capacity is needed to enable this, and the Guidelines examine where and how best to develop that capacity.
  • Incremental improvements to the governance of the national petroleum sector will allow emerging producers to increase accountability. The focus in this regard should be on building up capacity in checks and balances as resources become proven.




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Resources, Sovereignty and Geopolitics

Invitation Only Research Event

26 May 2016 - 2:00pm to 27 May 2016 - 4:30pm

Harbour Grand Kowloon Hotel, Hong Kong

This workshop will bring together experts from across Asia to discuss the challenges around natural resources that cause them to become drivers of conflict in the region, particularly in the context of territorial disputes, geopolitical competition and concerns over national sovereignty.

Attendance at this event is by invitation only.

Event attributes

External event




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How the New Indonesia-EU FLEGT Licence Can Contribute to the Sustainable Development Agenda

15 November 2016

Alison Hoare

Senior Research Fellow, Energy, Environment and Resources Programme
The FLEGT timber licence marks a breakthrough in the battle against illegal logging and has the potential to help towards achieving the SDGs in the forest sector and beyond.

2016-11-15-Indonesia-logging.jpg

Collected logs along a river in West Kalimantan province, Indonesia. Photo by Getty Images.

Today Indonesia begins issuing the first ever FLEGT licenses for timber exports bound for the EU market. A major step in the battle against illegal logging and trade in illegal timber, these licenses are issued under a national system to verify the legality of all timber and timber products. A commitment to licensing its timber exports to Europe was made in the country’s Voluntary Partnership Agreement (VPA) with the EU, although the licensing system applies to all exports and to the domestic market. The scale of this achievement can not be underestimated given the size of the country and of its forest sector – there are hundreds of thousands of forest enterprises ranging from large-scale concession holders and processing industries, to smallholders and micro-scale loggers, saw-millers and manufacturers.

It is also remarkable given the state of Indonesia’s forest sector at the turn of the century. Looking back to 2000, rule of law was all but absent and corruption was rife - with the allocation of concessions and timber industries closely tied with the country’s ruling elite. Widespread logging contributed to the high rates of deforestation seen at the turn of the century, which stood at over one per cent per year.

In 2016, the forest sector is vastly different – there are much higher levels of accountability and legal compliance, the result of the considerable effort and resources that have been put into enforcement and anti-corruption efforts. The sector is also much more open, reflected both in the significant improvements in the availability of forest data and legislation as well as the increased space that has been made available to civil society to participate both in policy processes and in monitoring of the sector.

These improvements are the result in large part of the reform processes that have been enabled and supported by the VPA process, for which negotiations began in 2007. However, the process is far from complete and the issuance of FLEGT licences is best viewed as a marking point in an ongoing trajectory towards establishing a legal and sustainable sector.

If we take 2000 as the starting point of this trajectory, with FLEGT licensing as the midway point, this brings us to just beyond 2030, the target date for the UN’s global agenda for sustainable development of which the Sustainable Development Goals (SDG) are an integral part. The SDGs provide a broader framework for considering what further progress is needed in the coming years both to improve legality and to ensure that the forest sector makes a positive contribution towards achieving widespread sustainable development in Indonesia.

There are a number of factors that risk the achievement of these aims. Key challenges that remain in the country’s forest sector include the high levels of informality in the small-scale sector, corruption, limited transparency and pressure on forests from other sectors (as highlighted in the report 'Illegal Logging and Related Trade. The Response in Indonesia').

As noted, there are hundreds of thousands of forest enterprises in the country, many of which – particularly small-scale businesses – operate informally. Further concerted efforts are needed to ensure that these enterprises are not excluded from the formal market, but are able to contribute to a thriving economy – for example, through continued support for certification, as well as much greater investment in the provision of extension services and further reforms to establish a policy framework that facilitates the growth of small businesses (see 'Improving Legality Among Small-Scale Forest Enterprises'). This will make an important contribution to the achievement of SDG 8, to enable ‘decent work and economic growth’, this including the target [8.3] to encourage the growth of small enterprises.

Both corruption and limited transparency also need to be addressed if widespread legality and sustainability are to be achieved in the forest sector. Transparency has improved greatly in the forest sector, with significant improvements to the availability of information and the establishment of independent monitoring by civil society. However, further progress is needed to improve the accessibility of information, not least to ensure that NGOs are able to fulfil this monitoring role. In relation to corruption, the anti-corruption agency has made good progress, but it remains under threat and needs to be strengthened. Improving governance is a priority under the SDGs, Goal 16 (peace, justice and strong institutions) including targets to reduce corruption, develop transparent institutions and ensure public access to information.  

The progress made in these areas also needs to be replicated outside the forest sector. A major threat to Indonesia’s forests comes from conversion to other land-uses, in particular agricultural plantations. Effective land-use planning, including transparent and participatory decision-making, is needed if the sustainable management and efficient use of natural resources is to be achieved and deforestation slowed – as set out under SDG 12 (responsible consumption and production) and SDG 15 (life on land).

An important means to drive progress is to ensure close monitoring of progress as well as the evaluation of the measures being adopted. A framework for monitoring the impact of FLEGT licences, as well as the related measures being implemented under the VPA, is under development. This will need to link up to national efforts to monitor progress towards the SDGs – both to contribute towards the monitoring of these goals and to facilitate communication of the progress and lessons being learnt in the forest sector.

To comment on this article, please contact Chatham House Feedback




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Mining and National Development in the New Global Context

Research Event

1 December 2016 - 5:30pm to 7:00pm

Chatham House, London

Event participants

Tom Butler, Chief Executive Officer, International Council for Mining and Metals (ICMM)
Evelyn Dietsche, Associate Fellow, Energy, Environment and Resources, Chatham House
Chair: Bernice Lee, Executive Director, Hoffman Centre, Chatham House 

During the resources boom of the last decade, countries, companies and communities alike were quick to highlight the transformative potential of the mining sector. With appropriate governance advice and capacity-building support, it seemed the ‘resource curse’ could be overcome. Yet as companies have adjusted their spending in response to declining global commodities prices and longer-term supply and demand projections, low- and middle-income resource-rich economies appear to have increased their dependence on the minerals sector. But how far has the potential of the mining sector been realised to date, and how different does this potential look today?

Taking ICMM’s third edition of the ‘Role of Mining in National Economies’ as the starting point, this meeting will critically assess the contribution that mining has made to development over the past decade, the prospects for ‘mining-led’ growth in the new global context, and the relevance of classic fiscal, employment and governance prescriptions.

Owen Grafham

Manager, Energy, Environment and Resources Programme
+44 (0)20 7957 5708




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Chokepoints and Vulnerabilities in Global Food Trade

27 June 2017

Policymakers must take action immediately to mitigate the risk of severe disruption at certain ports, maritime straits, and inland transport routes, which could have devastating knock-on effects for global food security.

Rob Bailey

Former Research Director, Energy, Environment and Resources

Laura Wellesley

Research Fellow, Energy, Environment and Resources Programme

2017-06-27-chokepoints.jpg

Pedro Miguel locks, Panama Canal. Photo: Gonzalo Azumendi/Getty Images.
  • Trade chokepoints – maritime, coastal and inland – pose an underexplored and growing risk to global food security.
  • Maritime chokepoints will become increasingly integral to meeting global food supply as population growth, shifting dietary preferences, bioenergy expansion and slowing improvements in crop yields drive up demand for imported grain.
  • Rising trade volumes, increasing dependence on imports among food-deficit countries, underinvestment, weak governance, climate change and emerging disruptive hazards together make chokepoint disruptions – both small-scale and large-scale – increasingly likely.
  • Climate change will have a compounding effect on chokepoint risk, increasing the probability of both isolated and multiple concurrent weather-induced disturbances.
  • Investment in infrastructure lags demand growth: critical networks in major crop-producing regions are weak and ageing, and extra capacity is urgently needed. 

Recommendations

  • Integrate chokepoint analysis into mainstream risk management and security planning - for example, government agencies should assess exposure and vulnerability to chokepoint risk at the national and subnational levels.
  • Invest in infrastructure to ensure future food security – for example by agreeing on guidelines for climate-compatible infrastructure through an international taskforce established under the G20.
  • Enhance confidence and predictability in global trade - for example, through a process under the World Trade Organization (WTO) to continually reduce the scope for export restrictions
  • Develop emergency supply-sharing arrangements and smarter strategic storage, e.g. an emerging response mechanism among major players in the global food trade, modelled in part on that of the International Energy Agency in oil markets and led by the UN Food and Agriculture Organization (FAO), the UN World Food Programme (WFP) or the Agricultural Market Information System (AMIS).
  • Build the evidence base around chokepoint risk - including through the collection of data on real-time food trade and infrastructural capacity to aid in assessing risks to food supply chains.

Further Reading




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D-backs, manager Lovullo agree on extension

The Arizona Diamondbacks agreed to terms on a contract extension with manager Torey Lovullo on Tuesday.




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Holland joins D-backs on 1-year deal

The D-backs signed veteran free-agent reliever Greg Holland to a one-year contract on Thursday.




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Inbox: Is D-backs' closer Holland or Bradley?

With Greg Holland now signed, will he be the closer or is that still going to be Archie Bradley? Beat reporter Steve Gilbert answers this question and more from fans as Spring Training approaches.




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D-backs announce record turnout to Fan Fest

As he walked around D-backs Fan Fest on Saturday afternoon at Salt River Fields, general manager Mike Hazen was pleasantly surprised to see the fan reaction as a record crowd of over 40,000 poured into the event.




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Marte confident transition to CF will be smooth

Ketel Marte does not lack for confidence when it comes to switching from second base/shortstop to center field, which is where he's expected to see a lot of time this season.




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Adil El-Tayar: renowned NHS transplant surgeon who died from covid-19

bmj;369/may07_6/m1803/FAF1faPhoto credit: Abbas GhazanfarOn 25 March Adil El-Tayar, a renowned organ transplantation specialist, became the first working NHS surgeon to die from covid-19 in hospital...




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Covid-19: Number of Germans infected could be 10 times higher than official estimates

The number of people in Germany infected with covid-19, could be 10 times higher than official government estimates, according to a new study by University of Bonn researchers.1The Heinsberg study is...




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Vitamin C in Human Health and Disease: Effects, Mechanisms of Action, and New Guidance on Intake




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Myocardial Blood Flow and Myocardial Flow Reserve After Cardiac Transplantation: Mistakes in Diagnostic Value and Prognosis




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Reply: Clarifying the Utility of Myocardial Blood Flow and Myocardial Flow Reserve After Cardiac Transplantation




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Reversibility of 68Ga-FAPI-2 Trapping Might Prove an Asset for PET Quantitative Imaging




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Human Radiation Dosimetry for Orally and Intravenously Administered 18F-FDG

Intravenous access is difficult in some patients referred for 18F-FDG PET imaging. Extravasation at the injection site and accumulation in central catheters can lead to limited tumor 18F-FDG uptake, erroneous quantitation, and significant image artifacts. In this study, we compared the human biodistribution and dosimetry for 18F-FDG after oral and intravenous administrations sequentially in the same subjects to ascertain the dosimetry and potential suitability of orally administered 18F-FDG as an alternative to intravenous administration. We also compared our detailed intravenous 18F-FDG dosimetry with older dosimetry data. Methods: Nine healthy volunteers (6 male and 3 female; aged 19–32 y) underwent PET/CT imaging after oral and intravenous administration of 18F-FDG. Identical preparation and imaging protocols (except administration route) were used for oral and intravenous studies. During each imaging session, 9 whole-body PET scans were obtained at 5, 10, 20, 30, 40, 50, 60, 120, and 240 min after 18F-FDG administration (370 ± 16 MBq). Source organ contours drawn using CT were overlaid onto registered PET images to extract time–activity curves. Time-integrated activity coefficients derived from time–activity curves were given as input to OLINDA/EXM for dose calculations. Results: Blood uptake after orally administered 18F-FDG peaked at 45–50 min after ingestion. The oral-to-intravenous ratios of 18F-FDG uptake for major organs at 45 min were 1.07 ± 0.24 for blood, 0.94 ± 0.39 for heart wall, 0.47 ± 0.12 for brain, 1.25 ± 0.18 for liver, and 0.84 ± 0.24 for kidneys. The highest organ-absorbed doses (μGy/MBq) after oral 18F-FDG administration were observed for urinary bladder (75.9 ± 17.2), stomach (48.4 ± 14.3), and brain (29.4 ± 5.1), and the effective dose was significantly higher (20%) than after intravenous administration (P = 0.002). Conclusion: 18F-FDG has excellent bioavailability after oral administration, but peak organ activities occur later than after intravenous injection. These data suggest PET at 2 h after oral 18F-FDG administration should yield images that are comparable in biodistribution to conventional clinical images acquired 1 h after injection. Oral 18F-FDG is a palatable alternative to intravenous 18F-FDG when venous access is problematic.




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TSPO Versus P2X7 as a Target for Neuroinflammation: An In Vitro and In Vivo Study

Neuroinflammation is important in amyotrophic lateral sclerosis (ALS). The P2X7 receptor (P2X7R) is a promising target for neuroinflammation. The objective of this study was to compare 18F-DPA714, a second-generation translocator protein tracer, with 11C-JNJ717, a novel P2X7R tracer, in vitro and in vivo in ALS. Methods: For the in vitro portion of the study, autoradiography with 18F-DPA714 and 11C-JNJ717 was performed on human ALS brain sections in comparison to immunofluorescence with Iba1 and GFAP. For the in vivo portion, 3 male patients with early-stage ALS (59.3 ± 7.2 y old) and 6 healthy volunteers (48.2 ± 16.5 y old, 2 men and 4 women) underwent dynamic PET/MR scanning with 18F-DPA714 and 11C-JNJ717. Volume-of-distribution images were calculated using Logan plots and analyzed on a volume-of-interest basis. Results: Autoradiography showed no difference in 11C-JNJ717 binding but did show increased 18F-DPA714 binding in the motor cortex correlating with Iba1 expression (glial cells). Similar findings were observed in vivo, with a 13% increase in 18F-DPA714 binding in the motor cortex. Conclusion: In symptomatic ALS patients, 18F-DPA714 showed increased signal whereas 11C-JNJ717 was not elevated.




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Predictive Value of 18F-Florbetapir and 18F-FDG PET for Conversion from Mild Cognitive Impairment to Alzheimer Dementia

The present study examined the predictive values of amyloid PET, 18F-FDG PET, and nonimaging predictors (alone and in combination) for development of Alzheimer dementia (AD) in a large population of patients with mild cognitive impairment (MCI). Methods: The study included 319 patients with MCI from the Alzheimer Disease Neuroimaging Initiative database. In a derivation dataset (n = 159), the following Cox proportional-hazards models were constructed, each adjusted for age and sex: amyloid PET using 18F-florbetapir (pattern expression score of an amyloid-β AD conversion–related pattern, constructed by principle-components analysis); 18F-FDG PET (pattern expression score of a previously defined 18F-FDG–based AD conversion–related pattern, constructed by principle-components analysis); nonimaging (functional activities questionnaire, apolipoprotein E, and mini-mental state examination score); 18F-FDG PET + amyloid PET; amyloid PET + nonimaging; 18F-FDG PET + nonimaging; and amyloid PET + 18F-FDG PET + nonimaging. In a second step, the results of Cox regressions were applied to a validation dataset (n = 160) to stratify subjects according to the predicted conversion risk. Results: On the basis of the independent validation dataset, the 18F-FDG PET model yielded a significantly higher predictive value than the amyloid PET model. However, both were inferior to the nonimaging model and were significantly improved by the addition of nonimaging variables. The best prediction accuracy was reached by combining 18F-FDG PET, amyloid PET, and nonimaging variables. The combined model yielded 5-y free-of-conversion rates of 100%, 64%, and 24% for the low-, medium- and high-risk groups, respectively. Conclusion: 18F-FDG PET, amyloid PET, and nonimaging variables represent complementary predictors of conversion from MCI to AD. Especially in combination, they enable an accurate stratification of patients according to their conversion risks, which is of great interest for patient care and clinical trials.




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Multimodality Imaging of Inflammation and Ventricular Remodeling in Pressure-Overload Heart Failure

Inflammation contributes to ventricular remodeling after myocardial ischemia, but its role in nonischemic heart failure is poorly understood. Local tissue inflammation is difficult to assess serially during pathogenesis. Although 18F-FDG accumulates in inflammatory leukocytes and thus may identify inflammation in the myocardial microenvironment, it remains unclear whether this imaging technique can isolate diffuse leukocytes in pressure-overload heart failure. We aimed to evaluate whether inflammation with 18F-FDG can be serially imaged in the early stages of pressure-overload–induced heart failure and to compare the time course with functional impairment assessed by cardiac MRI. Methods: C57Bl6/N mice underwent transverse aortic constriction (TAC) (n = 22), sham surgery (n = 12), or coronary ligation as an inflammation-positive control (n = 5). MRI assessed ventricular geometry and contractile function at 2 and 8 d after TAC. Immunostaining identified the extent of inflammatory leukocyte infiltration early in pressure overload. 18F-FDG PET scans were acquired at 3 and 7 d after TAC, under ketamine-xylazine anesthesia to suppress cardiomyocyte glucose uptake. Results: Pressure overload evoked rapid left ventricular dilation compared with sham (end-systolic volume, day 2: 40.6 ± 10.2 μL vs. 23.8 ± 1.7 μL, P < 0.001). Contractile function was similarly impaired (ejection fraction, day 2: 40.9% ± 9.7% vs. 59.2% ± 4.4%, P < 0.001). The severity of contractile impairment was proportional to histology-defined myocardial macrophage density on day 8 (r = –0.669, P = 0.010). PET imaging identified significantly higher left ventricular 18F-FDG accumulation in TAC mice than in sham mice on day 3 (10.5 ± 4.1 percentage injected dose [%ID]/g vs. 3.8 ± 0.9 %ID/g, P < 0.001) and on day 7 (7.8 ± 3.7 %ID/g vs. 3.0 ± 0.8 %ID/g, P = 0.006), though the efficiency of cardiomyocyte suppression was variable among TAC mice. The 18F-FDG signal correlated with ejection fraction (r = –0.75, P = 0.01) and ventricular volume (r = 0.75, P < 0.01). Western immunoblotting demonstrated a 60% elevation of myocardial glucose transporter 4 expression in the left ventricle at 8 d after TAC, indicating altered glucose metabolism. Conclusion: TAC induces rapid changes in left ventricular geometry and contractile function, with a parallel modest infiltration of inflammatory macrophages. Metabolic remodeling overshadows inflammatory leukocyte signal using 18F-FDG PET imaging. More selective inflammatory tracers are requisite to identify the diffuse local inflammation in pressure overload.




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Preoperative Localization of Adenomas in Primary Hyperparathyroidism: The Value of 11C-Choline PET/CT in Patients with Negative or Discordant Findings on Ultrasonography and 99mTc-Sestamibi SPECT/CT

We aimed to assess the value of 11C-choline PET in patients with primary hyperparathyroidism and negative or discordant results on 99mTc-sestamibi imaging and neck ultrasound. Methods: Eighty-seven such patients were assessed and subsequently underwent parathyroidectomy. PET/CT image data were analyzed semiquantitatively using SUVmax and SUV ratios (target to contralateral thyroid gland and carotid artery). A positive PET/CT result was defined as focal uptake significantly higher than regular thyroid tissue. Ectopic foci were also considered positive. Inconclusive PET/CT cases were defined as a lesion with uptake equal to normal thyroid tissue. If no prominent or ectopic uptake was detectable, the PET/CT result was considered negative. Results: When dichotomizing the 11C-choline PET/CT imaging results by defining lesions with both positive and inconclusive uptake as positive, we found 84 of 92 lesions (91.3%) to have true-positive uptake whereas 8 lesions (8.7%) had false-positive uptake. One lesion showed false-negative uptake; the sensitivity was 98.8%. The corresponding positive predictive value for lesions was 91.3%. The mean SUVmax was 6.15 ± 4.92 in 72 lesions with positive uptake (70 patients) and 2.96 ± 2.32 in 20 lesions with inconclusive uptake (18 patients). Conclusion: These results in a large group of patients indicate that 11C-choline PET/CT is a promising tool for parathyroid adenoma localization when ultrasound and 99mTc-sestamibi imaging yield negative or discordant results.




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18F-Fluorocholine PET/CT in Primary Hyperparathyroidism: Superior Diagnostic Performance to Conventional Scintigraphic Imaging for Localization of Hyperfunctioning Parathyroid Glands

Primary hyperparathyroidism (PHPT) is a common endocrine disorder, definitive treatment usually requiring surgical removal of the offending parathyroid glands. To perform focused surgical approaches, it is necessary to localize all hyperfunctioning glands. The aim of the study was to compare the efficiency of established conventional scintigraphic imaging modalities with emerging 18F-fluorocholine PET/CT imaging in preoperative localization of hyperfunctioning parathyroid glands in a larger series of PHPT patients. Methods: In total, 103 patients with PHPT were imaged preoperatively with 18F-fluorocholine PET/CT and conventional scintigraphic imaging methods, consisting of 99mTc-sestamibi SPECT/CT, 99mTc-sestamibi/pertechnetate subtraction imaging, and 99mTc-sestamibi dual-phase imaging. The results of histologic analysis, as well as intact parathyroid hormone and serum calcium values obtained 1 d after surgery and on follow-up, served as the standard of truth for evaluation of imaging results. Results: Diagnostic performance of 18F-fluorocholine PET/CT surpassed conventional scintigraphic methods (separately or combined), with calculated sensitivity of 92% for PET/CT and 39%–56% for conventional imaging (65% for conventional methods combined) in the entire patient group. Subgroup analysis, differentiating single and multiple hyperfunctioning parathyroid glands, showed PET/CT to be most valuable in the group with multiple hyperfunctioning glands, with sensitivity of 88%, whereas conventional imaging was significantly inferior, with sensitivity of 22%–34% (44% combined). Conclusion: 18F-fluorocholine PET/CT is a diagnostic modality superior to conventional imaging methods in patients with PHPT, allowing for accurate preoperative localization.




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PET Imaging of Pancreatic Dopamine D2 and D3 Receptor Density with 11C-(+)-PHNO in Type 1 Diabetes

Type 1 diabetes mellitus (T1DM) has traditionally been characterized by a complete destruction of β-cell mass (BCM); however, there is growing evidence of possible residual BCM present in T1DM. Given the absence of in vivo tools to measure BCM, routine clinical measures of β-cell function (e.g., C-peptide release) may not reflect BCM. We previously demonstrated the potential utility of PET imaging with the dopamine D2 and D3 receptor agonist 3,4,4a,5,6,10b-hexahydro-2H-naphtho[1,2-b][1,4]oxazin-9-ol (11C-(+)-PHNO) to differentiate between healthy control (HC) and T1DM individuals. Methods: Sixteen individuals participated (10 men, 6 women; 9 HCs, 7 T1DMs). The average duration of diabetes was 18 ± 6 y (range, 14–30 y). Individuals underwent PET/CT scanning with a 120-min dynamic PET scan centered on the pancreas. One- and 2-tissue-compartment models were used to estimate pancreas and spleen distribution volume. Reference region approaches (spleen as reference) were also investigated. Quantitative PET measures were correlated with clinical outcome measures. Immunohistochemistry was performed to examine colocalization of dopamine receptors with endocrine hormones in HC and T1DM pancreatic tissue. Results: C-peptide release was not detectable in any T1DM individuals, whereas proinsulin was detectable in 3 of 5 T1DM individuals. Pancreas SUV ratio minus 1 (SUVR-1) (20–30 min; spleen as reference region) demonstrated a statistically significant reduction (–36.2%) in radioligand binding (HCs, 5.6; T1DMs, 3.6; P = 0.03). Age at diagnosis correlated significantly with pancreas SUVR-1 (20–30 min) (R2 = 0.67, P = 0.025). Duration of diabetes did not significantly correlate with pancreas SUVR-1 (20–30 min) (R2 = 0.36, P = 0.16). Mean acute C-peptide response to arginine at maximal glycemic potentiation did not significantly correlate with SUVR-1 (20–30 min) (R2 = 0.57, P = 0.05), nor did mean baseline proinsulin (R2 = 0.45, P = 0.10). Immunohistochemistry demonstrated colocalization of dopamine D3 receptor and dopamine D2 receptor in HCs. No colocalization of the dopamine D3 receptor or dopamine D2 receptor was seen with somatostatin, glucagon, or polypeptide Y. In a separate T1DM individual, no immunostaining was seen with dopamine D3 receptor, dopamine D2 receptor, or insulin antibodies, suggesting that loss of endocrine dopamine D3 receptor and dopamine D2 receptor expression accompanies loss of β-cell functional insulin secretory capacity. Conclusion: Thirty-minute scan durations and SUVR-1 provide quantitative outcome measures for 11C-(+)-PHNO, a dopamine D3 receptor–preferring agonist PET radioligand, to differentiate BCM in T1DM and HCs.




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Theranostics Targeting Fibroblast Activation Protein in the Tumor Stroma: 64Cu- and 225Ac-Labeled FAPI-04 in Pancreatic Cancer Xenograft Mouse Models

Fibroblast activation protein (FAP), which promotes tumor growth and progression, is overexpressed in cancer-associated fibroblasts of many human epithelial cancers. Because of its low expression in normal organs, FAP is an excellent target for theranostics. In this study, we used radionuclides with relatively long half-lives, 64Cu (half-life, 12.7 h) and 225Ac (half-life, 10 d), to label FAP inhibitors (FAPIs) in mice with human pancreatic cancer xenografts. Methods: Male nude mice (body weight, 22.5 ± 1.2 g) were subcutaneously injected with human pancreatic cancer cells (PANC-1, n = 12; MIA PaCa-2, n = 8). Tumor xenograft mice were investigated after the intravenous injection of 64Cu-FAPI-04 (7.21 ± 0.46 MBq) by dynamic and delayed PET scans (2.5 h after injection). Static scans 1 h after the injection of 68Ga-FAPI-04 (3.6 ± 1.4 MBq) were also acquired for comparisons using the same cohort of mice (n = 8). Immunohistochemical staining was performed to confirm FAP expression in tumor xenografts using an FAP-α-antibody. For radioligand therapy, 225Ac-FAPI-04 (34 kBq) was injected into PANC-1 xenograft mice (n = 6). Tumor size was monitored and compared with that of control mice (n = 6). Results: Dynamic imaging of 64Cu-FAPI-04 showed rapid clearance through the kidneys and slow washout from tumors. Delayed PET imaging of 64Cu-FAPI-04 showed mild uptake in tumors and relatively high uptake in the liver and intestine. Accumulation levels in the tumor or normal organs were significantly higher for 64Cu-FAPI-04 than for 68Ga-FAPI-04, except in the heart, and excretion in the urine was higher for 68Ga-FAPI-04 than for 64Cu-FAPI-04. Immunohistochemical staining revealed abundant FAP expression in the stroma of xenografts. 225Ac-FAPI-04 injection showed significant tumor growth suppression in the PANC-1 xenograft mice, compared with the control mice, without a significant change in body weight. Conclusion: This proof-of-concept study showed that 64Cu-FAPI-04 and 225Ac-FAPI-04 could be used in theranostics for the treatment of FAP-expressing pancreatic cancer. α-therapy targeting FAP in the cancer stroma is effective and will contribute to the development of a new treatment strategy.




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Appropriate Use Criteria for Imaging Evaluation of Biochemical Recurrence of Prostate Cancer After Definitive Primary Treatment




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Prospective Evaluation of 18F-DCFPyL PET/CT in Biochemically Recurrent Prostate Cancer in an Academic Center: A Focus on Disease Localization and Changes in Management

18F-DCFPyL (2-(3-{1-carboxy-5-[(6-18F-fluoropyridine-3-carbonyl)-amino]-pentyl}-ureido)-pentanedioic acid) is a promising PET radiopharmaceutical targeting prostate-specific membrane antigen (PSMA). We present our experience with this single-academic-center prospective study evaluating the positivity rate of 18F-DCFPyL PET/CT in patients with biochemical recurrence (BCR) of prostate cancer (PC). Methods: We prospectively enrolled 72 men (52–91 y old; mean ± SD, 71.5 ± 7.2) with BCR after primary definitive treatment with prostatectomy (n = 42) or radiotherapy (n = 30). The presence of lesions compatible with PC was evaluated by 2 independent readers. Fifty-nine patients had scans concurrent with at least one other conventional scan: bone scanning (24), CT (21), MR (20), 18F-fluciclovine PET/CT (18), or 18F-NaF PET (14). Findings from 18F-DCFPyL PET/CT were compared with those from other modalities. Impact on patient management based on 18F-DCFPyL PET/CT was recorded from clinical chart review. Results: 18F-DCFPyL PET/CT had an overall positivity rate of 85%, which increased with higher prostate-specific antigen (PSA) levels (ng/mL): 50% (PSA < 0.5), 69% (0.5 ≤ PSA < 1), 100% (1 ≤ PSA < 2), 91% (2 ≤ PSA < 5), and 96% (PSA ≥ 5). 18F-DCFPyL PET detected more lesions than conventional imaging. For anatomic imaging, 20 of 41 (49%) CT or MRI scans had findings congruent with 18F-DCFPyL, whereas 18F-DCFPyL PET was positive in 17 of 41 (41%) cases with negative CT or MRI findings. For bone imaging, 26 of 38 (68%) bone or 18F-NaF PET scans were congruent with 18F-DCFPyL PET, whereas 18F-DCFPyL PET localized bone lesions in 8 of 38 (21%) patients with negative results on bone or 18F-NaF PET scans. In 8 of 18 (44%) patients, 18F-fluciclovine PET had located the same lesions as did 18F-DCFPyL PET, whereas 5 of 18 (28%) patients with negative 18F-fluciclovine findings had positive 18F-DCFPyL PET findings and 1 of 18 (6%) patients with negative 18F-DCFPyL findings had uptake in the prostate bed on 18F-fluciclovine PET. In the remaining 4 of 18 (22%) patients, 18F-DCFPyL and 18F-fluciclovine scans showed different lesions. Lastly, 43 of 72 (60%) patients had treatment changes after 18F-DCFPyL PET and, most noticeably, 17 of these patients (24% total) had lesion localization only on 18F-DCFPyL PET, despite negative results on conventional imaging. Conclusion: 18F-DCFPyL PET/CT is a promising diagnostic tool in the work-up of biochemically recurrent PC, given the high positivity rate as compared with Food and Drug Administration–approved currently available imaging modalities and its impact on clinical management in 60% of patients.




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Prostate-Specific Membrane Antigen PET/CT Combined with Sentinel Node Biopsy for Primary Lymph Node Staging in Prostate Cancer

Our objective was to determine the diagnostic capabilities of combined prostate-specific membrane antigen (PSMA) PET/CT and sentinel node (SN) biopsy in PSMA PET/CT–negative patients for primary lymph node (LN) staging in prostate cancer (PCa) patients. Methods: Between January 2017 and March 2019, retrospectively, all consecutive patients with diagnosed intermediate- or high-risk primary PCa who underwent preoperative PSMA PET/CT (68Ga or 18F-DCFPyL) followed by robot-assisted radical prostatectomy and extended pelvic LN dissection (ePLND) were included. All patients without suspected LN metastases on PSMA PET/CT were considered candidates for SN biopsy with indocyanine green–99mTc-nanocolloid or 99mTc-nanocolloid with free indocyanine green used as tracers. The ePLND was used as a reference standard. Results: Of 53 patients, 22 had positive PSMA PET/CT results and 31 underwent subsequent SN biopsy after negative PSMA PET/CT results. In total, 23 patients (43%) were pN1, of whom 6 (26%) had negative PSMA PET/CT results and underwent subsequent SN biopsy. The combined use of SN biopsy and PSMA PET/CT identified all pN1 patients (100% sensitivity; 95% confidence interval, 86%–100%) and performed correct nodal staging in 50 of 53 patients (94% diagnostic accuracy; 95% confidence interval, 84%–99%). SN biopsy identified significantly smaller LN metastases (median diameter, 2.0 mm; interquartile range, 1.0–3.8 mm) than PSMA PET/CT (median diameter, 5.5 mm; interquartile range, 2.6–9.3 mm; P = 0.007). Conclusion: Combining both modalities led to a 94% accuracy for nodal staging in diagnosed intermediate- and high-risk primary PCa. Adding SN biopsy in patients with negative PSMA PET/CT results increased the combined sensitivity to 100% for detecting nodal metastases at ePLND. This diagnostic accuracy may provide valuable information for directing further treatment in PCa patients, such as the use of PSMA PET/CT and SN biopsy rather than ePLND as the preferred approach for staging before radiotherapy.




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Comparison of 3 Interpretation Criteria for 68Ga-PSMA11 PET Based on Inter- and Intrareader Agreement

PET using radiolabeled prostate-specific membrane antigen (PSMA) is now being more widely adopted as a valuable tool to evaluate patients with prostate cancer (PC). Recently, 3 different criteria for interpretation of PSMA PET were published: the European Association of Nuclear Medicine (EANM) criteria, the Prostate Cancer Molecular Imaging Standardized Evaluation criteria, and the PSMA Reporting and Data System. We compared these 3 criteria in terms of interreader, intrareader, and intercriteria agreement. Methods: Data from 104 patients prospectively enrolled in research protocols at our institution were retrospectively reviewed. The cohort consisted of 2 groups: 47 patients (mean age, 64.2 y old) who underwent Glu-NH-CO-NH-Lys-(Ahx)-[68Ga(HBED-CC)] (68Ga-PSMA11) PET/MRI for initial staging of biopsy-proven intermediate- or high-risk PC, and 57 patients (mean age, 70.5 y old) who underwent 68Ga-PSMA11 PET/CT because of biochemically recurrent PC. Three nuclear medicine physicians independently evaluated all 68Ga-PSMA11 PET/MRI and PET/CT studies according to the 3 interpretation criteria. Two of them reevaluated all studies 6 mo later in the same manner and masked to the initial reading. The Gwet agreement coefficient was calculated to evaluate interreader, intrareader, and intercriteria agreement based on the following sites: local lesion (primary tumor or prostate bed after radical prostatectomy), lymph node metastases, and other metastases. Results: In the PET/MRI group, interreader, intrareader, and intercriteria agreement ranged from substantial to almost perfect for any site according to all 3 criteria. In the PET/CT group, interreader agreement ranged from substantial to almost perfect except for judgment of distant metastases based on the PSMA Reporting and Data System (Gwet agreement coefficient, 0.57; moderate agreement), in which the most frequent cause of disagreement was lung nodules. Intrareader agreement ranged from substantial to almost perfect for any site according to all 3 criteria. Intercriteria agreement for each site was also substantial to almost perfect. Conclusion: Although the 3 published criteria have good interreader and intrareader reproducibility in evaluating 68Ga-PSMA11 PET, there are some factors causing interreader disagreement. Further work is needed to address this issue.




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Head-to-Head Comparison of 68Ga-PSMA-11 with 18F-PSMA-1007 PET/CT in Staging Prostate Cancer Using Histopathology and Immunohistochemical Analysis as a Reference Standard

18F-PSMA-1007 is a novel prostate-specific membrane antigen (PSMA)–based radiopharmaceutical for imaging prostate cancer (PCa). The aim of this study was to compare the diagnostic accuracy of 18F-PSMA-1007 with 68Ga-PSMA-11 PET/CT in the same patients presenting with newly diagnosed intermediate- or high-risk PCa. Methods: Sixteen patients with intermediate- or high-risk PCa underwent 18F-PSMA-1007 and 68Ga-PSMA-11 PET/CT within 15 d. PET findings were compared between the 2 radiotracers and with reference-standard pathologic specimens obtained from radical prostatectomy. The Cohen -coefficient was used to assess the concordance between 18F-PSMA-1007 and 68Ga-PSMA-11 for detection of intraprostatic lesions. The McNemar test was used to assess agreement between intraprostatic PET/CT findings and histopathologic findings. Sensitivity, specificity, positive predictive value, and negative predictive value were reported for each radiotracer. SUVmax was measured for all lesions, and tumor-to-background activity was calculated. Areas under receiver-operating-characteristic curves were calculated for discriminating diseased from nondiseased prostate segments, and optimal SUV cutoffs were calculated using the Youden index for each radiotracer. Results: PSMA-avid lesions in the prostate were identified in all 16 patients with an almost perfect concordance between the 2 tracers ( ranged from 0.871 to 1). Aside from the dominant intraprostatic lesion, similarly detected by both radiotracers, a second less intense positive focus was detected in 4 patients only with 18F-PSMA-1007. Three of these secondary foci were confirmed as Gleason grade 3 lesions, whereas the fourth was shown on pathologic examination to represent chronic prostatitis. Conclusion: This pilot study showed that both 18F-PSMA-1007 and 68Ga-PSMA-11 identify all dominant prostatic lesions in patients with intermediate- or high-risk PCa at staging. 18F-PSMA-1007, however, may detect additional low-grade lesions of limited clinical relevance.




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First-in-Humans Imaging with 89Zr-Df-IAB22M2C Anti-CD8 Minibody in Patients with Solid Malignancies: Preliminary Pharmacokinetics, Biodistribution, and Lesion Targeting

Immunotherapy is becoming the mainstay for treatment of a variety of malignancies, but only a subset of patients responds to treatment. Tumor-infiltrating CD8-positive (CD8+) T lymphocytes play a central role in antitumor immune responses. Noninvasive imaging of CD8+ T cells may provide new insights into the mechanisms of immunotherapy and potentially predict treatment response. We are studying the safety and utility of 89Zr-IAB22M2C, a radiolabeled minibody against CD8+ T cells, for targeted imaging of CD8+ T cells in patients with cancer. Methods: The initial dose escalation phase of this first-in-humans prospective study included 6 patients (melanoma, 1; lung, 4; hepatocellular carcinoma, 1). Patients received approximately 111 MBq (3 mCi) of 89Zr-IAB22M2C (at minibody mass doses of 0.2, 0.5, 1.0, 1.5, 5, or 10 mg) as a single dose, followed by PET/CT scans at approximately 1–2, 6–8, 24, 48, and 96–144 h after injection. Biodistribution in normal organs, lymph nodes, and lesions was evaluated. In addition, serum samples were obtained at approximately 5, 30, and 60 min and later at the times of imaging. Patients were monitored for safety during infusion and up to the last imaging time point. Results: 89Zr-IAB22M2C infusion was well tolerated, with no immediate or delayed side effects observed after injection. Serum clearance was typically biexponential and dependent on the mass of minibody administered. Areas under the serum time–activity curve, normalized to administered activity, ranged from 1.3 h/L for 0.2 mg to 8.9 h/L for 10 mg. Biodistribution was dependent on the minibody mass administered. The highest uptake was always in spleen, followed by bone marrow. Liver uptake was more pronounced with higher minibody masses. Kidney uptake was typically low. Prominent uptake was seen in multiple normal lymph nodes as early as 2 h after injection, peaking by 24–48 h after injection. Uptake in tumor lesions was seen on imaging as early as 2 h after injection, with most 89Zr-IAB22M2C–positive lesions detectable by 24 h. Lesions were visualized early in patients receiving treatment, with SUV ranging from 5.85 to 22.8 in 6 target lesions. Conclusion: 89Zr-IAB22M2C imaging is safe and has favorable kinetics for early imaging. Biodistribution suggests successful targeting of CD8+ T-cell–rich tissues. The observed targeting of tumor lesions suggests this may be informative for CD8+ T-cell accumulation within tumors. Further evaluation is under way.




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18F-FET PET Imaging in Differentiating Glioma Progression from Treatment-Related Changes: A Single-Center Experience

In glioma patients, differentiation between tumor progression (TP) and treatment-related changes (TRCs) remains challenging. Difficulties in classifying imaging alterations may result in a delay or an unnecessary discontinuation of treatment. PET using O-(2-18F-fluoroethyl)-l-tyrosine (18F-FET) has been shown to be a useful tool for detecting TP and TRCs. Methods: We retrospectively evaluated 127 consecutive patients with World Health Organization grade II–IV glioma who underwent 18F-FET PET imaging to distinguish between TP and TRCs. 18F-FET PET findings were verified by neuropathology (40 patients) or clinicoradiologic follow-up (87 patients). Maximum tumor-to-brain ratios (TBRmax) of 18F-FET uptake and the slope of the time–activity curves (20–50 min after injection) were determined. The diagnostic accuracy of 18F-FET PET parameters was evaluated by receiver-operating-characteristic analysis and 2 testing. The prognostic value of 18F-FET PET was estimated using the Kaplan–Meier method. Results: TP was diagnosed in 94 patients (74%) and TRCs in 33 (26%). For differentiating TP from TRCs, receiver-operating-characteristic analysis yielded an optimal 18F-FET TBRmax cutoff of 1.95 (sensitivity, 70%; specificity, 71%; accuracy, 70%; area under the curve, 0.75 ± 0.05). The highest accuracy was achieved by a combination of TBRmax and slope (sensitivity, 86%; specificity, 67%; accuracy, 81%). However, accuracy was poorer when tumors harbored isocitrate dehydrogenase (IDH) mutations (91% in IDH-wild-type tumors, 67% in IDH-mutant tumors, P < 0.001). 18F-FET PET results correlated with overall survival (P < 0.001). Conclusion: In our neurooncology department, the diagnostic performance of 18F-FET PET was convincing but slightly inferior to that of previous reports.




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Diagnostic Accuracy of PET Tracers for the Differentiation of Tumor Progression from Treatment-Related Changes in High-Grade Glioma: A Systematic Review and Metaanalysis

Posttreatment high-grade gliomas are usually monitored with contrast-enhanced MRI, but its diagnostic accuracy is limited as it cannot adequately distinguish between true tumor progression and treatment-related changes. According to recent Response Assessment in Neuro-Oncology recommendations, PET overcomes this limitation. However, it is currently unknown which tracer yields the best results. Therefore, a systematic review and metaanalysis were performed to compare the diagnostic accuracy of the different PET tracers in differentiating tumor progression from treatment-related changes in high-grade glioma patients. Methods: PubMed, Web of Science, and Embase were searched systematically. Study selection, data extraction, and quality assessment were performed independently by 2 authors. Metaanalysis was performed using a bivariate random-effects model when at least 5 studies were included. Results: The systematic review included 39 studies (11 tracers). 18F-FDG (12 studies, 171 lesions) showed a pooled sensitivity and specificity of 84% (95% confidence interval, 72%–92%) and 84% (95% confidence interval, 69%–93%), respectively. O-(2-18F-fluoroethyl)-l-tyrosine (18F-FET) (7 studies, 172 lesions) demonstrated a sensitivity of 90% (95% confidence interval, 81%–95%) and specificity of 85% (95% confidence interval, 71%–93%). For S-11C-methyl)-l-methionine (11C-MET) (8 studies, 151 lesions), sensitivity was 93% (95% confidence interval, 80%–98%) and specificity was 82% (95% confidence interval, 68%–91%). The numbers of included studies for the other tracers were too low to combine, but sensitivity and specificity ranged between 93%–100% and 0%–100%, respectively, for 18F-FLT; 85%–100% and 72%–100%, respectively, for 3,4-dihydroxy-6-18F-fluoro-l-phenylalanine (18F-FDOPA); and 100% and 70%–88%, respectively, for 11C-choline. Conclusion: 18F-FET and 11C-MET, both amino-acid tracers, showed a comparably higher sensitivity than 18F-FDG in the differentiation between tumor progression and treatment-related changes in high-grade glioma patients. The evidence for other tracers is limited; thus, 18F-FET and 11C-MET are preferred when available. Our results support the incorporation of amino-acid PET tracers for the treatment evaluation of high-grade gliomas.




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The Academic NDA: Justification, Process, and Lessons Learned

The University of Iowa recently completed a 4-y expedition into the uncharted waters of the Food and Drug Administration (FDA) new-drug application (NDA) process that ultimately resulted in approval of 68Ga-DOTATOC in August 2019. The journey was enlightening, revealing a highly structured, arcane, but rigorous regulatory approval process. The FDA proved to be an efficient, reasonable, and communicative regulatory body that achieved balance between support of the initiative and its mission-bound, process-bound duty to ensure that the application met the expected safety and efficacy standards of the agency. With several clinically valuable PET radiopharmaceuticals without intellectual property residing in regulatory limbo, without industry champions to bring them to marketing approval, there may be justification for a more concerted effort from the molecular imaging community into generating better understanding, support, and perhaps even infrastructure for the academic NDA. As a first step, this article briefly describes the start-to-finish story for 68Ga-DOTATOC, including a description of the clinical trials, a broad overview of the structured content of the NDA document, and the distilled experiences associated with the 68Ga-DOTATOC NDA process. It is anticipated that with sustained free sharing of information relating to the FDA drug registration process, it will prove less daunting and more efficient in future academically sponsored NDA filings for PET imaging agents.




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A Conversation with John Sunderland, Johannes Czernin, and Thomas Hope




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SNMMI Leadership Update: To the SNMMI-TS: Congratulations on 50 Years of Dedicated Service to SNMMI and Your Patients




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Future Leaders of SNMMI and SNMMI-TS




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Congressional Briefing: Diagnostic Imaging and Alzheimer Disease




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Fibrotic Encapsulation Is the Dominant Source of Continuous Glucose Monitor Delays

Continuous glucose monitor (CGM) readings are delayed relative to blood glucose, and this delay is usually attributed to the latency of interstitial glucose levels. However, CGM-independent data suggest rapid equilibration of interstitial glucose. This study sought to determine the loci of CGM delays. Electrical current was measured directly from CGM electrodes to define sensor kinetics in the absence of smoothing algorithms. CGMs were implanted in mice, and sensor versus blood glucose responses were measured after an intravenous glucose challenge. Dispersion of a fluorescent glucose analog (2-NBDG) into the CGM microenvironment was observed in vivo using intravital microscopy. Tissue deposited on the sensor and nonimplanted subcutaneous adipose tissue was then collected for histological analysis. The time to half-maximum CGM response in vitro was 35 ± 2 s. In vivo, CGMs took 24 ± 7 min to reach maximum current versus 2 ± 1 min to maximum blood glucose (P = 0.0017). 2-NBDG took 21 ± 7 min to reach maximum fluorescence at the sensor versus 6 ± 6 min in adipose tissue (P = 0.0011). Collagen content was closely correlated with 2-NBDG latency (R = 0.96, P = 0.0004). Diffusion of glucose into the tissue deposited on a CGM is substantially delayed relative to interstitial fluid. A CGM that resists fibrous encapsulation would better approximate real-time deviations in blood glucose.




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Immunomodulation Followed by Antigen-Specific Treg Infusion Controls Islet Autoimmunity

Optimal immune-based therapies for type 1 diabetes (T1D) should restore self-tolerance without inducing chronic immunosuppression. CD4+Foxp3+ regulatory T cells (Tregs) are a key cell population capable of facilitating durable immune tolerance. However, clinical trials with expanded Tregs in T1D and solid-organ transplant recipients are limited by poor Treg engraftment without host manipulation. We showed that Treg engraftment and therapeutic benefit in nonautoimmune models required ablative host conditioning. Here, we evaluated Treg engraftment and therapeutic efficacy in the nonobese diabetic (NOD) mouse model of autoimmune diabetes using nonablative, combinatorial regimens involving the anti-CD3 (αCD3), cyclophosphamide (CyP), and IAC (IL-2/JES6–1) antibody complex. We demonstrate that αCD3 alone induced substantial T-cell depletion, impacting both conventional T cells (Tconv) and Tregs, subsequently followed by more rapid rebound of Tregs. Despite robust depletion of host Tconv and host Tregs, donor Tregs failed to engraft even with interleukin-2 (IL-2) support. A single dose of CyP after αCD3 depleted rebounding host Tregs and resulted in a 43-fold increase in donor Treg engraftment, yet polyclonal donor Tregs failed to reverse diabetes. However, infusion of autoantigen-specific Tregs after αCD3 alone resulted in robust Treg engraftment within the islets and induced remission in all mice. This novel combinatorial therapy promotes engraftment of autoantigen-specific donor Tregs and controls islet autoimmunity without long-term immunosuppression.




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Evidence of Tissue Repair in Human Donor Pancreas After Prolonged Duration of Stay in Intensive Care

M2 macrophages play an important role in tissue repair and regeneration. They have also been found to modulate β-cell replication in mouse models of pancreatic injury and disease. We previously reported that β-cell replication is strongly increased in a subgroup of human organ donors characterized by prolonged duration of stay in an intensive care unit (ICU) and increased number of leukocytes in the pancreatic tissue. In the present study we investigated the relationship between duration of stay in the ICU, M2 macrophages, vascularization, and pancreatic cell replication. Pancreatic organs from 50 donors without diabetes with different durations of stay in the ICU were analyzed by immunostaining and digital image analysis. The number of CD68+CD206+ M2 macrophages increased three- to sixfold from ≥6 days’ duration of stay in the ICU onwards. This was accompanied by a threefold increased vascular density and a four- to ninefold increase in pancreatic cells positive for the replication marker Ki67. A strong correlation was observed between the number of M2 macrophages and β-cell replication. These results show that a prolonged duration of stay in the ICU is associated with an increased M2 macrophage number, increased vascular density, and an overall increase in replication of all pancreatic cell types. Our data show evidence of marked levels of tissue repair in the human donor pancreas.




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A Critical Insulin TCR Contact Residue Selects High-Affinity and Pathogenic Insulin-Specific T Cells

Type 1 diabetes is an autoimmune-mediated disease that culminates in the targeted destruction of insulin-producing β-cells. CD4 responses in NOD mice are dominated by insulin epitope B:9-23 (InsB9-23) specificity, and mutation of the key T-cell receptor (TCR) contact residue within the epitope prevents diabetes development. However, it is not clear how insulin self-antigen controls the selection of autoimmune and regulatory T cells (Tregs). Here we demonstrate that mutation of insulin epitope results in escape of highly pathogenic T cells. We observe an increase in antigen reactivity, clonality, and pathogenicity of insulin-specific T cells that develop in the absence of cognate antigen. Using a single TCR system, we demonstrate that Treg development is greatly diminished in mice with the Y16A mutant epitope. Collectively, these results suggest that the tyrosine residue at position 16 is necessary to constrain TCR reactivity for InsB9-23 by both limiting the development of pathogenic T cells and supporting the selection of Tregs.




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{beta}-Cell Stress Shapes CTL Immune Recognition of Preproinsulin Signal Peptide by Posttranscriptional Regulation of Endoplasmic Reticulum Aminopeptidase 1

The signal peptide of preproinsulin is a major source for HLA class I autoantigen epitopes implicated in CD8 T cell (CTL)–mediated β-cell destruction in type 1 diabetes (T1D). Among them, the 10-mer epitope located at the C-terminal end of the signal peptide was found to be the most prevalent in patients with recent-onset T1D. While the combined action of signal peptide peptidase and endoplasmic reticulum (ER) aminopeptidase 1 (ERAP1) is required for processing of the signal peptide, the mechanisms controlling signal peptide trimming and the contribution of the T1D inflammatory milieu on these mechanisms are unknown. Here, we show in human β-cells that ER stress regulates ERAP1 gene expression at posttranscriptional level via the IRE1α/miR-17-5p axis and demonstrate that inhibition of the IRE1α activity impairs processing of preproinsulin signal peptide antigen and its recognition by specific autoreactive CTLs during inflammation. These results underscore the impact of ER stress in the increased visibility of β-cells to the immune system and position the IRE1α/miR-17 pathway as a central component in β-cell destruction processes and as a potential target for the treatment of autoimmune T1D.




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Maternal Type 1 Diabetes Reduces Autoantigen-Responsive CD4+ T Cells in Offspring

Autoimmunity against pancreatic β-cell autoantigens is a characteristic of childhood type 1 diabetes (T1D). Autoimmunity usually appears in genetically susceptible children with the development of autoantibodies against (pro)insulin in early childhood. The offspring of mothers with T1D are protected from this process. The aim of this study was to determine whether the protection conferred by maternal T1D is associated with improved neonatal tolerance against (pro)insulin. Consistent with improved neonatal tolerance, the offspring of mothers with T1D had reduced cord blood CD4+ T-cell responses to proinsulin and insulin, a reduction in the inflammatory profile of their proinsulin-responsive CD4+ T cells, and improved regulation of CD4+ T cell responses to proinsulin at 9 months of age, as compared with offspring with a father or sibling with T1D. Maternal T1D was also associated with a modest reduction in CpG methylation of the INS gene in cord blood mononuclear cells from offspring with a susceptible INS genotype. Our findings support the concept that a maternal T1D environment improves neonatal immune tolerance against the autoantigen (pro)insulin.




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Artificial intelligence versus clinicians: systematic review of design, reporting standards, and claims of deep learning studies