STAT+: AIDS group sues Trump administration over undisclosed agreement with Gilead

An AIDS activist group filed a lawsuit against the Trump administration for failing to disclose a research and development agreement that was at the heart of a settlement between the U.S. government and Gilead Sciences over patents for HIV prevention.

The settlement resolved a contentious lawsuit that was filed six years ago by the previous Trump administration after the Centers for Disease Control and Prevention maintained that Gilead infringed its patent rights. The agency had helped fund academic research that later formed the basis for two Gilead HIV pills, Truvada and Descovy.

The administration had alleged that Gilead ignored the contributions by CDC scientists, exaggerated its own role in developing HIV prevention drugs, and refused to sign a licensing agreement despite “multiple attempts” at reaching a deal after unfairly reaping hundreds of millions of dollars from research funded by taxpayers.

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WHO Designates Network of Regional Biomanufacturing Training Centers

The World Health Organization (WHO) has designated a network of regional training centers for biomanufacturing across all six WHO regions, which is intended to mark a major step forward in strengthening the global workforce needed to produce vaccines, biotherapeutics and other biological products.

As global efforts continue to expand manufacturing infrastructure and advance technology transfer, WHO is placing equal emphasis on the people and systems required to make these investments sustainable and impactful.

The designation follows a global selection process conducted through two calls for expressions of interest and forms part of the WHO Biomanufacturing Workforce Training Initiative established in 2023. This flagship effort addresses critical skills gaps across the biomanufacturing value chain, enabling countries to translate technological advances into sustainable local production.

Yukiko Nakatani, MD, PhD [WHO]
Yukiko Nakatani, MD, PhD [WHO]

“Building a skilled biomanufacturing workforce is fundamental to advancing equitable access to health products and strengthening global health security. By designating regional training centers across all WHO regions, we are investing in people and systems that enable countries not only to produce quality-assured essential health technologies, but to sustain and scale them,” said Yukiko Nakatani, MD, PhD, WHO assistant director-general for health systems, access, and data. “This network reflects a strategic shift towards more resilient, geographically diversified manufacturing capacity, grounded in science and collaboration.”

The newly designated regional training centers will operate as part of a coordinated global network, delivering context-specific training aligned with regional priorities, regulatory environments and languages, according to Nakatani. By partnering with academia and industry, they plan to expand access to training, strengthen regional expertise and foster collaboration across countries, supporting the development of a skilled and sustainable workforce. While operating independently, they will work in close collaboration with WHO under agreed frameworks to ensure quality, alignment, and accountability, note WHO officials.

The selected institutions are:

  • African Region: Institut Pasteur de Dakar, Senegal; Council for Scientific and Industrial Research, South Africa
  • Region of the Americas: Oswaldo Cruz Foundation (Fiocruz), Brazil
  • South-East Asia Region: Translational Health Science and Technology Institute, India
  • European Region: National Institute for Bioprocessing Research and Training, Ireland
  • Eastern Mediterranean Region: Center for Continuing Professional Development, Egyptian Drug Authority, Egypt Western Pacific Region: Peking University, China

These centers will complement the Global Training Hub for Biomanufacturing (GTH-B), established in 2022 in collaboration with the Ministry of Health and Welfare of the Republic of Korea.The Global Hub delivers standardized training programs that combine hands-on experience and classroom-based learning, while also supporting the WHO initiative through training-of-trainers programs.

The WHO Biomanufacturing Workforce Training Initiative was designed to directly support the implementation of World Health Assembly resolution WHA74.6 on strengthening local production of medicines and other health technologies. By investing in workforce development, WHO states that it is helping to address longstanding inequities in access to health products and to ensure that all countries are better equipped to respond rapidly and effectively to future health emergencies.

As global health systems move from crisis response to long-term resilience, building a skilled and geographically distributed biomanufacturing workforce is emerging as a cornerstone of pandemic preparedness and health security, points out a WHO spokesperson.

 

 

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DeviceTalks Minnesota 2026 show preview: Speakers, exhibitors and more

It’s almost time for our May 4 DeviceTalks Minnesota show at the University of Minnesota’s McNamara Alumni Center in Minneapolis. We’ve got a great lineup of keynotes — Abbott’s Lisa Earnhardt, Solventum’s Heather Knight, Mike Blue at HistoSonics and Medical 21’s Manny Villafaña — plus more interviews and panels of experts from medical device OEMs…

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5 costly IP mistakes to avoid

By David Dykeman, Greenberg Traurig Patents are the currency of the medical technology industry and fundamental to the success of any medtech company. A medtech company can leverage its intellectual property (IP) in many ways including: raising capital, entering into strategic alliances, using licensing to generate revenue, blocking competitors, and through joint ventures, mergers, acquisitions…

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Kingstec advances real-time medical asset tracking

NEWS RELEASE: Kingstec celebrates Technology Trace Inc.’s breakthrough in real-time medical asset management Strategic manufacturing partnership instrumental in bringing innovative medical asset tracking technology to Ontario hospitals Kingstec Technologies, a leader in project management, engineering, manufacturing, and logistics solutions, is proud to announce the successful implementation of Technology Trace Inc’s trevii platform at St. Joseph’s Healthcare Hamilton (St.…

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Baxter discloses executive pay under new CEO and golden parachute for the last CEO

Baxter International disclosed how much it paid its new CEO last year in a recent filing with the U.S. Securities and Exchange Commission. The medical device manufacturer also disclosed pay packages for other current and former executives — including a severance payment for its former CEO — and reported higher pay for its median employee. Baxter’s…

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Restoring Gut Barrier Function in Crohn’s by Targeting ISR Activation

Researchers at the University of Houston, working with collaborators at Baylor College of Medicine and The University of Texas MD Anderson Cancer Center, have identified a mechanism that identifies epithelial cell stress as a one of the main drivers of Crohn’s disease, a finding that runs counter to much current thinking of Crohn’s disease as immune-mediated and instead frames it as a failure of within the intestinal barrier. The study, published in Gastro Hep Advances, shows that chronic integrated stress response (ISR) activation and a related cell death pathway, necroptosis, form a feedback loop that damages intestinal epithelial cells and prevents cell regeneration leading to sustained inflammation.

“It’s a paradigm shift from the way we’ve thought about the disease,” said senior author Seema Khurana, PhD, a professor of biology and biochemistry at the University of Houston. “Existing therapies primarily manage symptoms because we don’t know what causes the disease. We believe our research brings us closer to identifying those drivers.”

Crohn’s disease is typically treated with anti-inflammatory therapies aimed at suppressing immune activity, but only a minority of patients have long lasting benefits. This current study may help explain why anti-inflammatories only have limited benefits by showing that intestinal barrier dysfunction is not simply a consequence of inflammation but is a factor in disease development.

For their research, the team sought to discover how stress signaling within certain epithelial cells contribute to disease progression. The ISR is a conserved cellular pathway that helps cells respond to stress by temporarily reducing protein production and activating processes that restore cellular balance, including stress-response gene expression, protein quality control, and metabolic adaptation. While short-term ISR activation is a temporary response to cellular stress, the researchers found that in Crohn’s disease, ISR signaling becomes chronically activated.

“Our results identify ISR activation as a unifying hallmark of epithelial stress in CD, regardless of whether the initiating insult is intrinsic (loss of villin-1/gelsolin) or extrinsic (TNF-α dysregulation),” the researchers wrote.

The result of this chronic ISR activation is that instead of helping epithelial cells become healthy, they are instead kept in a dysfunctional state. This leads to mitochondrial stress and triggers necroptosis, a form of programmed cell death that releases inflammatory signals. The combination of ongoing stress signaling and cell death prevents epithelial regeneration and weakens the intestinal barrier, allowing microbes to infiltration tissue in the intestine further increasing inflammation.

Prior studies have focused on this form of dysfunction to Crohn’s disease, but ISR activation had not been clearly characterized as a central driver of disease development. To address this, the team used a number of different models of Crohn’s disease, including genetically engineered mice with epithelial-specific ISR activation, mice with chronic inflammation driven by TNF-α dysregulation, and patient-derived intestinal organoids. The organoids allowed the researchers to directly study human epithelial responses.

The resulting data showed that for all the models, the same pattern of chronic ISR activation, increased necroptosis, impaired epithelial survival, and failure of regenerative growth emerged.

To begin finding potential therapeutic approaches based on these new findings, the investigators then tested whether blocking these pathways could reverse intestinal damage. Using both experimental inhibitors and two FDA-approved cancer drugs, pazopanib and ponatinib, repurposed at low concentrations, they were able to suppress ISR signaling and necroptosis. This restored epithelial cell survival, improved regeneration, and reestablished barrier integrity.

“A major advance of this work is the demonstration that pharmacologic inhibition of ISR or necroptosis restores epithelial homeostasis by promoting regenerative growth of the epithelium in both murine and human models of CD,” the researchers wrote.

If additional studies can establish ISR inhibition as safe and effective for human use, this research could be the beginning of a shift in how Crohn’s disease is treated. Instead of focusing only on controlling inflammation, a new class of treatments could aim to repair the epithelial barrier directly. This approach aligns with emerging evidence that permeability barrier healing is a stronger predictor of long-term remission than traditional measures such as mucosal healing.

Further, because both pazopanib and ponatinib are already approved drugs that are known to be safe and have well characterized pharmacology profiles, the path to these new treatments could be on a fast track.

“If you had to start from scratch to identify and develop a drug, it takes 10 to 15 years and can cost between $1 billion to $2 billion,” Khurana said. “For a patient who is suffering from chronic Crohn’s disease, they’re looking for some immediate relief. Our goal was to make our findings much more translatable to real patients.”

Beyond drug development, the study points to new opportunities for improving clinical care. Biomarkers of ISR activation, such as phosphorylated eIF2α or RIPK3 expression, could help identify patients with barrier dysfunction and guide treatment decisions. Patient-derived organoid systems may also enable personalized testing of therapeutic responses before treatment.

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Sexual Assault Prevention via Bystander Intervention Using Instagram Reels as a Communication Channel: Experimental Design Study

Background: Bystander intervention is one of the most commonly used methods to curb the sexual violence crisis on college campuses. Most universities conduct training among their student bodies to ensure students are familiar with the procedure. However, it is necessary to remind and repeat messages to audiences to underscore their importance and solidify that knowledge among populations. Objective: In this study, the author developed Instagram-type reel messages that consider multiple frameworks used to develop bystander training and programs, such as the social norms approach and bystander barriers. Methods: These messages were tested via a 4×1 experimental design study with college students at a large public university (N=157). The conditions were messages that emphasize norms (norm reinforcement condition, based on the social norms approach; n=39), messages that emphasize behavior (norm readjustment condition, based on bystander barriers; n=39), messages that underscore the discrepancy between perceived peer norm and actual behavior (combination condition, based on both the social norms approach and bystander barriers; n=39), and a control condition (n=40). Results: ANOVA analysis revealed that the norms reinforcement condition and the combination condition seemed to have the greatest impact on participants’ perceived norms and behavioral intentions. In particular, when assessing norms as the dependent variable, the reinforcement group was significantly different from the readjustment group (Δmean 0.682, SD 0.160; 001), the combination group (Δmean 0.675, SD 0.160; 001), and the control group (Δmean 0.432, SD 0.159; =.04). For behavioral intentions to engage in bystander intervention, the reinforcement group was significantly different from the control group (Δmean 0.217, SD 0.073; =.02), and the combination group was significantly different from the control group as well (Δmean 0.221, SD 0.073; 02). Conclusions: The findings indicate that these messages could work in conjunction with training as a way to underscore the importance of bystander intervention behavior. It also highlights the role that Instagram reels can play in the prevention of sexual violence on college campuses.
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Benefit of the N-of-1 Approach Versus Aggregate Analysis in Tracking Individual Trajectories During Pregnancy: Comparison of Longitudinal Wearable Observational Studies

Background: Personal digital health technologies (DHTs) enable real-time monitoring of physiological metrics and behavioral data, including heart rate variability (HRV), supporting analysis of pregnancy-related conditions and personalized care throughout the perinatal period. While recent studies demonstrate the utility of personal DHTs in tracking pregnancy-related symptoms, they often rely on aggregate statistical methods that overlook individual variability. Objective: This study aims to compare aggregate and individual-level analyses of DHT data for pregnancy-related conditions, using the comprehensive BUMP (Better Understanding the Metamorphosis of Pregnancy) dataset to highlight the importance of individual variability and data heterogeneity. Methods: We analyzed wearable and self-reported data from 256 participants enrolled in the BUMP study (January 2021 to May 2022), including HRV, sleep, and fatigue measured via Oura Rings and smartphone surveys. Individual-level (N-of-1) trajectories were evaluated and compared with aggregate results to uncover personal and collective trends. A statistical method was developed to assess the influence of adverse events and severe symptoms, while case studies explored confounding and modifying factors underlying heterogeneity. Comprehensive statistical analysis included the coefficient of determination, Kolmogorov-Smirnov tests, likelihood ratio tests, and Welch tests, with interindividual variability flagged based on high-variability thresholds. Results: Substantial interindividual variability was observed across all features. Only 4.76% (12/256) of participants exhibited an HRV inflection at the aggregate week-33 inflection point, with a coefficient of variation of 14.24%. The median value of the gestational week in individual fatigue troughs was 23 (IQR 8; range 8-38) weeks, differing from aggregate estimates. Distributional comparisons showed no statistically significant differences in individual-level model fit (²) by pregnancy complications or age ( values ranging from .06 to .99 across all model fit comparisons). Case studies further highlighted both intraindividual and interindividual differences, emphasizing the importance of considering external factors, such as adverse events and severe symptoms. Conclusions: Our findings show that aggregate wearable data often fail to generalize across populations, oversimplifying pregnancy-related physiological and subjective changes. This simplification can obscure individual trajectories, leading to generalized insights that may not reflect many pregnant women’s experiences. Our results highlight the impact of heterogeneity on pregnancy outcomes, emphasizing the need to move beyond one-size-fits-all models and leverage DHT for personalized care.
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Why Microbot Medical developed a fully disposable surgical robot

Microbot Medical is creating a “whole new category in robotics” with its fully disposable Liberty endovascular navigation surgical robot, co-founder and CEO Harel Gadot says. The medical device developer designed Liberty as a single-use system to overcome adoption barriers in robot-assisted surgery. The main barrier in endovascular surgical robotics is extended setup time, Gadot said, followed…

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