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Fake crypto-wallet extensions appear in Chrome Web Store once again, siphoning off victims' passwords

'Seriously sometimes seems Google's moderators are only optimized to respond to social media outrage'

Three weeks after Google removed 49 Chrome extensions from its browser's software store for stealing crypto-wallet credentials, 11 more password-swiping add-ons have been spotted – and some are still available to download.…




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Server sales went through the roof in the first three months of 2020. Enjoy it while it lasts, Dell, HPE, and pals

Enterprise demand set to soften, offset tier-two cloud, telco sales

Global server shipments reached an industry record-breaking 3.3 million units in the first quarter of 2020, marking a 30 per cent year-on-year growth, Omdia analysts estimated this week.…




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Non-human Microsoft Office users get their own special licences

Automated operators can pay up like anyone – or anything – else

Microsoft has detailed a new form of software licence it offers to non-human users.…




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HCL finishes its year with 15 percent growth, 100 million minutes-a-month Teams usage

Cracks the 150,000-employee mark as revenue falls just short of $10bn

Indian services giant HCL Technologies has wound up its 19/20 financial year by reporting 15 percent annual growth but a flat Q4.…




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'A' is for ad money oddly gone missing: Probe finds middlemen siphon off half of online advertising spend

'B' is for basic controls that up and disappeared

A study of the UK online advertising market, conducted by global accounting firm PwC, has found that publishers get just half of what advertisers spend, with the other half siphoned off by ad-supply chain intermediaries.…




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Looking for a new IT gig? Here are vacancies around the world for developers, cloud engineers, infosec analysts, Jira admin, and more

Advertise your open positions here for free, no catch, and find opportunities within

Job Alert This week we've got job openings from all over the globe to tempt you, your friends or your past colleagues back into work, or indeed into new ventures.…




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BT suspends shareholder payments as folk forgo pricey sports TV deals for matches that won't happen anyway

We all need to tighten our belts

For the first time in over three decades, BT has suspended its dividend scheme as the former state-owned teleco grapples with the fallout from the novel coronavirus pandemic, and the financial uncertainty that'll inevitably ensue.…




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Surge in Zoom support requests was 'unexpected', says tool team as it turns taps down

John Cena!* Online resources only for free and end users due to the 'unprecedented period'

Video conferencing darling of the hour, Zoom, has tightened up support rules in order to "better serve" users.…




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Source code for seminal adventure game Zork circa-1977 exhumed from MIT tapes, plonked on GitHub

Revisit what it’s like to run a PDP-10 and be eaten by a grue

Source code for seminal adventure game Zork, dating back to 1977 and recovered from MIT tapes, was published this week on GitHub.…




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Backup and restore on AWS is a nightmare – is there a way to speed it up?

Apparently. But we’re so incredulous, we’re gonna test those claims on live internet TV…

Webcast “The journey to cloud” echoes through all organisations. It’s a Bildungsroman – a story of empowerment and betterment. A shiny, towering cityscape of gleaming edifices and elegant spires. It’s like an ascension into the actual clouds. Like dying and waking up in heaven.…




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DEF CON is canceled... No, for real. The in-person event is canceled. We're not joking. It's canceled. We mean it

Virus knocks hackers online: Show will try going virtual amid pandemic

Annual Las Vegas hacker gathering DEF CON has officially called off its physical conference for this year due to the coronavirus pandemic.…




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I've seen things you people wouldn't believe. Spacecraft with graphene sails powered by starlight and lasers

Nice way to get to Alpha Centauri though boffin tells us: 'Such a laser system could be used as a weapon'

Coin-sized pieces of graphene can be accelerated by firing low-powered lasers at them in micro-gravity conditions, say scientists. The technology could be a stepping stone to graphene solar sails, which could propel future spacecraft using starlight or a laser array.…




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11/03/13 - Perform without an audience




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12/2/13 - To speak and remove all doubt




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2/23/14 - They all clapped and cheered




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06/28/15 - Madly hopelessly




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07/26/15 - Heartshaped




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09/27/15 - I've always been scared of people like you




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03/20/16 - One person split




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08/07/16 - More people love you more




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08/21/16 - The unexpected touch of a hand




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04/02/17 - Finally stopped crying




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04/23/17 - Completely hopelessly wondrously




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06/25/17 - A gift of paper




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08/06/17 - Other people




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6/9/19 - As we mopped up the blood




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Инсайдер: Realme X3 SuperZoom получит 60-кратный зум и функцию Starry Mode для фотографий Млечного Пути

Индийский инсайдер Судханшу Амбхоре (Sudhanshu Ambhore)‏ продолжает публиковать подробности о новом смартфоне Realme X3 SuperZoom.




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Неожиданно: Xiaomi, совместно с JD, выпустит смартфон Redmi K30 5G Speed Edition на базе нового чипа Snapdragon 768G

Компания Xiaomi, неожиданно для всех, объявила дату анонса очередного смартфона из линейки Redmi K30.




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Mold Inspection and Testing Service

Mold is a fungus with the Ability to flourish in just about any circumstance. While found almost everywhere in nature, mold can cause serious problems when found in residential areas and must be quarantined and removed as soon as possible.… Continue Reading




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Featured - Know Thy Genome, Know Thyself - Coriell Personalized Medicine Collaborative

For those of you who follow the tweets of @DivaBiotech, you are already familiar with the varied interests and activities of outgoing world traveler and international marketing guru in the area of genomics, Ruby Gadelrab. Ruby is one of my favorite tweeps, keeping me up to date on the personal genomics scene and the latest biotech science news. I asked Ruby to guest post; (read more)

Source: Suzy - Discipline: BioTech




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Featured - Operations: another role for scientists in biotech

I began a series of posts that explained how products are born, that is, how they go from a concept or idea to a product on the shelf waiting to be bought. So far we've discussed what R&D does and what marketing does to make sure that a product has the greatest possibility for success. Well there is another person on this team who plays a critical role in the product development ; (read more)

Source: Suzy - Discipline: BioTech




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Last Day to Enter Video Contest! Show Us Your Kid’s Newfound Independence!

I realize that sounds kinda nuts — why are we asking PARENTS to show us their KIDS being independent? Who, after all, is better at making videos? Mom or little Ava (who’s 5)? But legally we can’t ask anyone under 13 to do anything. So go document your children doing something new on their own, […]




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Smart, Helpful, FUNNY Flow Chart for Kid Independence

This flow chart, created by University of Virginia Psychology Professors Jim Coan and Daniel Willingham, is just plain terrific. “Could a child do this alone?” asks the chart. Then let ’em! “Could a child do this with some instruction?” Then let ’em. Etc. etc. Check it out — print it out! — by clicking here. […]




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Expanding Miami Zika Zone: Time To Wipe Out Invasive Mosquito

The Miami Beach danger zone for mosquitoes carrying Zika virus is expanding. This isn't just about microcephaly in developing fetuses. Since Zika attacks neural progenitor cells it might cause lasting damage in adults too. A case of acute sensory polyneuropathy in an adult caused symptoms that lasted for months. It is suspected that Zika causes inflammation of sensory nerves and possibly an auto-immune response. So Zika is bad. What should we do about it? Wipe out the mosquitoes that carry it. Totally drive them to extinction. These mosquitoes are invasive in the Western Hemisphere. If a mosquito causes major health problems for the human species we should just wipe it out. Wiping out a mosquito species could be done with...




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Hippocampus l'hippocampe.

Contes de fées aux enfants - Hippocampus l'hippocampe.




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Thank You: Coronavirus helpers (April 25, 26)

Date: April 25, 2020

As COVID-19 continues to impact communities around the world, people are coming together to help one another now more than ever. We’re launching a Doodle series to recognize and honor many of those on the front lines.

Today, we’d like to say: 

To all coronavirus helpers, thank you.
 


 

Help stop the spread of COVID-19 by following these steps.  

 




Learn more here about the latest ways we’re responding, and how our products can help people stay connected during this time.

Location: Global

Tags: covid, Current Event, covid-19, appreciation, helpers, coronavirus




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Israel Independence Day 2020

Date: April 29, 2020

On the fifth day of the Hebrew month of Iyar, Israeli communities worldwide celebrate their Independence Day, known locally as Yom Ha’atzmaut. Today’s Doodle pays tribute to this annual holiday in recognition of the day in 1948 when the State of Israel declared its independence. 

Depicted in the Doodle artwork, the flag of Israel features two blue stripes running horizontally over the white background with the Star of David at its center. Officially adopted in 1948, the same year as independence, the flag will be waved proudly wherever Israeli’s call home. 

Happy Yom Ha’atzmaut, Israel!​

Location: Israel

Tags: national day, National Holiday, independence, history, Israel




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The Independent (Великобритания): речь королевы Елизаветы II в честь 75-летия Дня победы в Европе

Королева Великобритании Елизавета II — единственная из действующих глав государств, служившая в вооруженных силах во время Второй мировой войны, — произнесла речь в честь Дня победы в Европе, который отмечается 8 мая. В своем выступлении она воздала дань памяти погибших и подчеркнула, что они гордились бы потомками.




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Myeloid-specific Asxl2 deletion limits diet-induced obesity by regulating energy expenditure

We previously established that global deletion of the enhancer of trithorax and polycomb (ETP) gene, Asxl2, prevents weight gain. Because proinflammatory macrophages recruited to adipose tissue are central to the metabolic complications of obesity, we explored the role of ASXL2 in myeloid lineage cells. Unexpectedly, mice without Asxl2 only in myeloid cells (Asxl2ΔLysM) were completely resistant to diet-induced weight gain and metabolically normal despite increased food intake, comparable activity, and equivalent fecal fat. Asxl2ΔLysM mice resisted HFD-induced adipose tissue macrophage infiltration and inflammatory cytokine gene expression. Energy expenditure and brown adipose tissue metabolism in Asxl2ΔLysM mice were protected from the suppressive effects of HFD, a phenomenon associated with relatively increased catecholamines likely due to their suppressed degradation by macrophages. White adipose tissue of HFD-fed Asxl2ΔLysM mice also exhibited none of the pathological remodeling extant in their control counterparts. Suppression of macrophage Asxl2 expression, via nanoparticle-based siRNA delivery, prevented HFD-induced obesity. Thus, ASXL2 controlled the response of macrophages to dietary factors to regulate metabolic homeostasis, suggesting modulation of the cells’ inflammatory phenotype may impact obesity and its complications.




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Epigenetic driver mutations in ARID1A shape cancer immune phenotype and immunotherapy

Whether mutations in cancer driver genes directly affect cancer immune phenotype and T cell immunity remains a standing question. ARID1A is a core member of the polymorphic BRG/BRM-associated factor chromatin remodeling complex. ARID1A mutations occur in human cancers and drive cancer development. Here, we studied the molecular, cellular, and clinical impact of ARID1A aberrations on cancer immunity. We demonstrated that ARID1A aberrations resulted in limited chromatin accessibility to IFN-responsive genes, impaired IFN gene expression, anemic T cell tumor infiltration, poor tumor immunity, and shortened host survival in many human cancer histologies and in murine cancer models. Impaired IFN signaling was associated with poor immunotherapy response. Mechanistically, ARID1A interacted with EZH2 via its carboxyl terminal and antagonized EZH2-mediated IFN responsiveness. Thus, the interaction between ARID1A and EZH2 defines cancer IFN responsiveness and immune evasion. Our work indicates that cancer epigenetic driver mutations can shape cancer immune phenotype and immunotherapy.




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Specificity of bispecific T cell receptors and antibodies targeting peptide-HLA

Tumor-associated peptide–human leukocyte antigen complexes (pHLAs) represent the largest pool of cell surface–expressed cancer-specific epitopes, making them attractive targets for cancer therapies. Soluble bispecific molecules that incorporate an anti-CD3 effector function are being developed to redirect T cells against these targets using 2 different approaches. The first achieves pHLA recognition via affinity-enhanced versions of natural TCRs (e.g., immune-mobilizing monoclonal T cell receptors against cancer [ImmTAC] molecules), whereas the second harnesses an antibody-based format (TCR-mimic antibodies). For both classes of reagent, target specificity is vital, considering the vast universe of potential pHLA molecules that can be presented on healthy cells. Here, we made use of structural, biochemical, and computational approaches to investigate the molecular rules underpinning the reactivity patterns of pHLA-targeting bispecifics. We demonstrate that affinity-enhanced TCRs engage pHLA using a comparatively broad and balanced energetic footprint, with interactions distributed over several HLA and peptide side chains. As ImmTAC molecules, these TCRs also retained a greater degree of pHLA selectivity, with less off-target activity in cellular assays. Conversely, TCR-mimic antibodies tended to exhibit binding modes focused more toward hot spots on the HLA surface and exhibited a greater degree of crossreactivity. Our findings extend our understanding of the basic principles that underpin pHLA selectivity and exemplify a number of molecular approaches that can be used to probe the specificity of pHLA-targeting molecules, aiding the development of future reagents.




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TRPV4 channel opening mediates pressure-induced pancreatitis initiated by Piezo1 activation

Elevated pressure in the pancreatic gland is the central cause of pancreatitis following abdominal trauma, surgery, endoscopic retrograde cholangiopancreatography, and gallstones. In the pancreas, excessive intracellular calcium causes mitochondrial dysfunction, premature zymogen activation, and necrosis, ultimately leading to pancreatitis. Although stimulation of the mechanically activated, calcium-permeable ion channel Piezo1 in the pancreatic acinar cell is the initial step in pressure-induced pancreatitis, activation of Piezo1 produces only transient elevation in intracellular calcium that is insufficient to cause pancreatitis. Therefore, how pressure produces a prolonged calcium elevation necessary to induce pancreatitis is unknown. We demonstrate that Piezo1 activation in pancreatic acinar cells caused a prolonged elevation in intracellular calcium levels, mitochondrial depolarization, intracellular trypsin activation, and cell death. Notably, these effects were dependent on the degree and duration of force applied to the cell. Low or transient force was insufficient to activate these pathological changes, whereas higher and prolonged application of force triggered sustained elevation in intracellular calcium, leading to enzyme activation and cell death. All of these pathological events were rescued in acinar cells treated with a Piezo1 antagonist and in acinar cells from mice with genetic deletion of Piezo1. We discovered that Piezo1 stimulation triggered transient receptor potential vanilloid subfamily 4 (TRPV4) channel opening, which was responsible for the sustained elevation in intracellular calcium that caused intracellular organelle dysfunction. Moreover, TRPV4 gene–KO mice were protected from Piezo1 agonist– and pressure-induced pancreatitis. These studies unveil a calcium signaling pathway in which a Piezo1-induced TRPV4 channel opening causes pancreatitis.




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Molecular crosstalk between Y5 receptor and neuropeptide Y drives liver cancer

Hepatocellular carcinoma (HCC) is clearly age-related and represents one of the deadliest cancer types worldwide. As a result of globally increasing risk factors including metabolic disorders, the incidence rates of HCC are still rising. However, the molecular hallmarks of HCC remain poorly understood. Neuropeptide Y (NPY) and NPY receptors represent a highly conserved, stress-activated system involved in diverse cancer-related hallmarks including aging and metabolic alterations, but its impact on liver cancer had been unclear. Here, we observed increased expression of NPY5 receptor (Y5R) in HCC, which correlated with tumor growth and survival. Furthermore, we found that its ligand NPY was secreted by peritumorous hepatocytes. Hepatocyte-derived NPY promoted HCC progression by Y5R activation. TGF-β1 was identified as a regulator of NPY in hepatocytes and induced Y5R in invasive cancer cells. Moreover, NPY conversion by dipeptidylpeptidase 4 (DPP4) augmented Y5R activation and function in liver cancer. The TGF-β/NPY/Y5R axis and DPP4 represent attractive therapeutic targets for controlling liver cancer progression.




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Pembrolizumab plus allogeneic NK cells in advanced non–small cell lung cancer patients

BACKGROUND The anti–programmed cell death 1 (anti–PD-1) antibody pembrolizumab is clinically active against non–small cell lung cancer (NSCLC). In addition to T cells, human natural killer (NK) cells, reported to have the potential to prolong the survival of patients with advanced NSCLC, also express PD-1. This study aimed to investigate the safety and efficacy of pembrolizumab plus allogeneic NK cells in patients with previously treated advanced NSCLC.METHODS In total, 109 enrolled patients with a programmed death ligand 1 (PD-L1) tumor proportion score (TPS) of 1% or higher were randomly allocated to group A (n = 55 patients given pembrolizumab plus NK cells) or group B (n = 54 patients given pembrolizumab alone). The patients received i.v. pembrolizumab (10 mg/kg) once every 3 weeks and continued treatment until the occurrence of tumor progression or unacceptable toxicity. The patients in group A continuously received 2 cycles of NK cell therapy as 1 course of treatment.RESULTS In our study, patients in group A had longer survival than did patients in group B (median overall survival [OS]: 15.5 months vs. 13.3 months; median progression-free survival [PFS]: 6.5 months vs. 4.3 months; P < 0.05). In group A patients with a TPS of 50% or higher, the median OS and PFS was significantly longer. Moreover, the patients in group A treated with multiple courses of NK cell infusion had better OS (18.5 months) than did those who received a single course of NK cell infusion (13.5 months).CONCLUSIONS Pembrolizumab plus NK cell therapy yielded improved survival benefits in patients with previously treated PD-L1+ advanced NSCLC.TRIAL REGISTRATION ClinicalTrials.gov NCT02843204.FUNDING This work was supported by grants from the National Natural Science Foundation of China (NSFC) – Guangdong Joint Foundation of China (no. U1601225); the NSFC (no. 81671965); the Guangdong Provincial Key Laboratory Construction Project of China (no. 2017B030314034); and the Key Scientific and Technological Program of Guangzhou City (no. 201607020016).




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The lymph node stromal laminin α5 shapes alloimmunity

Lymph node stromal cells (LNSCs) regulate immunity through constructing lymphocyte niches. LNSC-produced laminin α5 (Lama5) regulates CD4+ T cells but the underlying mechanisms of its functions are poorly understood. Here we show that depleting Lama5 in LNSCs resulted in decreased Lama5 protein in the LN cortical ridge (CR) and around high endothelial venules (HEVs). Lama5 depletion affected LN structure with increased HEVs, upregulated chemokines, and cell adhesion molecules, and led to greater numbers of Tregs in the T cell zone. Mouse and human T cell transendothelial migration and T cell entry into LNs were suppressed by Lama5 through the receptors α6 integrin and α-dystroglycan. During immune responses and allograft transplantation, depleting Lama5 promoted antigen-specific CD4+ T cell entry into the CR through HEVs, suppressed T cell activation, and altered T cell differentiation to suppressive regulatory phenotypes. Enhanced allograft acceptance resulted from depleting Lama5 or blockade of T cell Lama5 receptors. Lama5 and Lama4/Lama5 ratios in allografts were associated with the rejection severity. Overall, our results demonstrated that stromal Lama5 regulated immune responses through altering LN structures and T cell behaviors. This study delineated a stromal Lama5–T cell receptor axis that can be targeted for immune tolerance modulation.




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Dysfunctional polycomb transcriptional repression contributes to lamin A/C–dependent muscular dystrophy

Lamin A is a component of the inner nuclear membrane that, together with epigenetic factors, organizes the genome in higher order structures required for transcriptional control. Mutations in the lamin A/C gene cause several diseases belonging to the class of laminopathies, including muscular dystrophies. Nevertheless, molecular mechanisms involved in the pathogenesis of lamin A–dependent dystrophies are still largely unknown. The polycomb group (PcG) of proteins are epigenetic repressors and lamin A interactors, primarily involved in the maintenance of cell identity. Using a murine model of Emery-Dreifuss muscular dystrophy (EDMD), we show here that lamin A loss deregulated PcG positioning in muscle satellite stem cells, leading to derepression of non–muscle-specific genes and p16INK4a, a senescence driver encoded in the Cdkn2a locus. This aberrant transcriptional program caused impairment in self-renewal, loss of cell identity, and premature exhaustion of the quiescent satellite cell pool. Genetic ablation of the Cdkn2a locus restored muscle stem cell properties in lamin A/C–null dystrophic mice. Our findings establish a direct link between lamin A and PcG epigenetic silencing and indicate that lamin A–dependent muscular dystrophy can be ascribed to intrinsic epigenetic dysfunctions of muscle stem cells.




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Pathogenesis of peritumoral hyperexcitability in an immunocompetent CRISPR-based glioblastoma model

Seizures often herald the clinical appearance of gliomas or appear at later stages. Dissecting their precise evolution and cellular pathogenesis in brain malignancies could inform the development of staged therapies for these highly pharmaco-resistant epilepsies. Studies in immunodeficient xenograft models have identified local interneuron loss and excess glial glutamate release as chief contributors to network disinhibition, but how hyperexcitability in the peritumoral microenvironment evolves in an immunocompetent brain is unclear. We generated gliomas in WT mice via in utero deletion of key tumor suppressor genes and serially monitored cortical epileptogenesis during tumor infiltration with in vivo electrophysiology and GCAMP7 calcium imaging, revealing a reproducible progression from hyperexcitability to convulsive seizures. Long before seizures, coincident with loss of inhibitory cells and their protective scaffolding, gain of glial glutamate antiporter xCT expression, and reactive astrocytosis, we detected local Iba1+ microglial inflammation that intensified and later extended far beyond tumor boundaries. Hitherto unrecognized episodes of cortical spreading depolarization that arose frequently from the peritumoral region may provide a mechanism for transient neurological deficits. Early blockade of glial xCT activity inhibited later seizures, and genomic reduction of host brain excitability by deleting MapT suppressed molecular markers of epileptogenesis and seizures. Our studies confirmed xenograft tumor–driven pathobiology and revealed early and late components of tumor-related epileptogenesis in a genetically tractable, immunocompetent mouse model of glioma, allowing the complex dissection of tumor versus host pathogenic seizure mechanisms.




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Fetal alcohol spectrum disorder predisposes to metabolic abnormalities in adulthood

Prenatal alcohol exposure (PAE) affects at least 10% of newborns globally and leads to the development of fetal alcohol spectrum disorders (FASDs). Despite its high incidence, there is no consensus on the implications of PAE on metabolic disease risk in adults. Here, we describe a cohort of adults with FASDs that had an increased incidence of metabolic abnormalities, including type 2 diabetes, low HDL, high triglycerides, and female-specific overweight and obesity. Using a zebrafish model for PAE, we performed population studies to elucidate the metabolic disease seen in the clinical cohort. Embryonic alcohol exposure (EAE) in male zebrafish increased the propensity for diet-induced obesity and fasting hyperglycemia in adulthood. We identified several consequences of EAE that may contribute to these phenotypes, including a reduction in adult locomotor activity, alterations in visceral adipose tissue and hepatic development, and persistent diet-responsive transcriptional changes. Taken together, our findings define metabolic vulnerabilities due to EAE and provide evidence that behavioral changes and primary organ dysfunction contribute to resultant metabolic abnormalities.




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Live attenuated pertussis vaccine BPZE1 induces a broad antibody response in humans

BACKGROUND The live attenuated BPZE1 vaccine candidate induces protection against B. pertussis and prevents nasal colonization in animal models. Here we report on the responses in humans receiving a single intranasal administration of BPZE1.METHODS We performed multiple assays to dissect the immune responses induced in humans (n = 12) receiving BPZE1, with particular emphasis on the magnitude and characteristics of the antibody responses. Such responses were benchmarked to adolescents (n = 12) receiving the complete vaccination program of the currently used acellular pertussis vaccine (aPV). Using immunoproteomics analysis, potentially novel immunogenic B. pertussis antigens were identified.RESULTS All BPZE1 vaccinees showed robust B. pertussis–specific antibody responses with regard to significant increase in 1 or more of the following parameters: IgG, IgA, and memory B cells to B. pertussis antigens. BPZE1–specific T cells showed a Th1 phenotype, and the IgG exclusively consisted of IgG1 and IgG3. In contrast, all aPV vaccines showed a Th2-biased response. Immunoproteomics profiling revealed that BPZE1 elicited broader and different antibody specificities to B. pertussis antigens as compared with the aPV that primarily induced antibodies to the vaccine antigens. Moreover, BPZE1 was superior at inducing opsonizing antibodies that stimulated ROS production in neutrophils and enhanced bactericidal function, which was in line with the finding that antibodies against adenylate cyclase toxin were only elicited by BPZE1.CONCLUSION The breadth of the antibodies, the Th1-type cellular response, and killing mechanisms elicited by BPZE1 may hold prospects of improving vaccine efficacy and protection against B. pertussis transmission.TRIAL REGISTRATION ClinicalTrials.gov NCT02453048, NCT00870350.FUNDING ILiAD Biotechnologies, Swedish Research Council (Vetenskapsrådet), Swedish Heart-Lung Foundation.