Schistosomiasis Vaccine Shows Strong Immune Memory in Early Clinical Trials

Helminth parasites of the Schistosoma genus cause roughly 290,000 deaths annually, primarily in tropical and subtropical regions. In addition, an estimated 250 million people are currently chronically infected with Schistosoma parasites—with an additional 800 million people at risk of getting the infection—making schistosomiasis second only to malaria among the world’s deadliest tropical parasitic diseases.

The larvae, which live in fresh water, penetrate the skin and develop into adults. Schistosomiasis can be found in nearly 80 countries and is common in sub-Saharan Africa.

Now, new research shows promise for a vaccine being tested to prevent and treat schistosomiasis. SchistoShield® (Sm-p80 + GLA-SE) is a leading vaccine candidate for schistosomiasis that has successfully completed Phase I (USA) and Phase Ib (Africa) safety and immunogenicity clinical trials. Findings in a new report suggest that the vaccine triggered an adaptive immune effector and memory responses.

This work is published in npj Vaccines in the paper, “Schistosomiasis vaccine SchistoShield® induces functional immune memory responses in U.S. and African populations.

Afzal Siddiqui, PhD, director of the Center for Tropical Medicine and Infectious Diseases and chair of the Department of Immunology and Molecular Microbiology at the TTUHSC School of Medicine has devoted decades to creating SchistoShield.

In this study, samples taken from people who’ve received trial doses of the vaccine in both the United States and Africa now demonstrate the vaccine’s effectiveness. Using Peripheral Blood Mononuclear Cells (PBMCs) obtained from intercontinental Phase I and Phase Ib trial participants, the team analyzed adaptive immune effector and memory responses to SchistoShield.

“The SchistoShield vaccine,” Siddiqui notes, “induced robust cell-mediated effector and memory responses, hallmarks of a potentially efficacious vaccine against schistosome/helminth parasites.”

More specifically, the paper reports results demonstrating that “the vaccine induced pronounced effector and memory T-cell responses. Upon recall with Sm-p80 antigen, cytokines including IFN-γ, TNF-α, IL-17A, IL-9, and granzyme B were produced, indicating the generation of functionally heterogeneous CD4 T-helper and cytotoxic lymphocyte responses. Consistent with T-helper responses that promote humoral immunity, Sm-p80 antigen-specific antibody-secreting plasmablasts were detected in vaccinated volunteers who were tracked longitudinally.”

“The people we have vaccinated, in both the U.S. and in Africa, have the memory response, both B-cell and T-cell-based,” Siddiqui said. “The vaccine is doing what it is supposed to. But always remember that these trials are very small 50 to 100 people. Now it has to go to thousands of people. So that’s where we are moving into.”

Schistosomiasis is considered a “neglected disease” because it predominantly affects impoverished communities in tropical and subtropical regions. There’s only one drug available to treat people, but it does not prevent re-infection. Through his efforts, and the support of TTUHSC, federal grants and national and international charitable and non-profit groups, Siddiqui has been able to develop SchistoShield as a humanitarian effort, rather than making it for profit.

“Our purpose from the beginning has been to expand access to care,” Lori Rice-Spearman, PhD, president of TTUHSC said. “Dr. Siddiqui’s work reflects that commitment through research that could help address a disease affecting millions of people around the world.”

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Iron Accumulation Drives Neurodegeneration via Chronic Stress Pathway

Neurodegenerative diseases affect tens of millions of people worldwide. A new study published in Cell Death Discovery titled, “Sustained dysregulation of iron and glutathione homeostasis induces chronoferroptosis, a persistent ferroptotic adaptation in neuronal cells,” points to iron accumulation as a key target in the effort to predict, prevent, and treat neurodegenerative diseases. 

“Resilience has become a huge topic of discussion when it comes to Alzheimer’s disease and other neurodegenerative disorders, trying to make the brain more resilient in the face of stressors that contribute to neurodegeneration,” said Pam Maher, PhD, co-corresponding author and a research professor at the Salk Institute. “Our study reveals that cells lose resilience when iron hits a certain level, making neurons more susceptible to stressors that damage or even kill them.” 

Found in dark leafy greens, starchy cereals, lean meats, seafood, and other common foods, iron helps red blood cells develop, carries oxygen, makes hormones, and engages in key functions across the immune system and energy production. 

“It’s one of the most important minerals in the body,” says co-corresponding author Nawab John Dar, PhD, a postdoctoral researcher in Maher’s lab. “So, it isn’t the iron itself that is a problem with age. It is this accumulation of iron over time that is the problem.” 

The authors suggest iron buildup is caused by a failure in iron export machinery. Using a human-derived nerve cell line, the study generated a progressive model of iron accumulation in neuronal cells. They compared the effects of both acute (between six and eight hours) and chronic (nine days) exposure to iron and found the chronoferroptosis pathway. 

Traditionally, ferroptosis was considered an iron-dependent cell death pathway related to lipid peroxidation. “It is like the cellular equivalent of when a cooking oil or nut goes bad. The fats in that oil or nut have undergone peroxidation,” explains Maher. 

Chronoferroptosis adds the dimension of time to ferroptosis. The pathway does not necessarily end in cell death, but rather, ferroptosis can act as a cellular stress pathway. 

“We think these coordinated alterations in iron-handling and antioxidant defense proteins make chronically exposed neurons vulnerable to neurodegenerative pathology,” said Dar. “Entering this state of chronoferroptosis may set neurons up for age-related failure.” 

“It’s not the amount of iron that seals the fate of these cells,” Dar continued. “It’s the amount of time they spend under stress.” 

Researchers aspire to detect when iron accumulation starts stressing neurons to develop new interventions for addressing iron imbalances to keep neurons resilient. 

“It’s not something we worked on in this paper, but our lab has developed several compounds to inhibit this pathway,” says Maher. “This could really be a promising therapeutic route for boosting neuron resilience and staving off neurodegeneration as we grow older.” 

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CCRM Ireland Would Be Established to Hasten Translation of Advanced Therapies Into Patient Treatments

Rinn Advanced Therapies, Ireland’s national research center for personalized immune cell therapies, signed a Memorandum of Understanding (MOU) with CCRM, which focuses on cell and gene therapy development and commercialization. The agreement outlines a strategic collaboration to explore establishing a CCRM-affiliated advanced therapies hub in Ireland.

The proposed initiative, referred to as CCRM Ireland, is designed to position Ireland as a key node within CCRM’s global network of advanced therapies hubs and further strengthen Ireland’s expertise in next-generation biomedicine. CCRM’s global network comprises CCRM in Canada, CCRM Australia, and CCRM Nordic in Sweden.

“The idea of collaborating with CCRM to establish CCRM Ireland is very attractive because of our shared commitment to improving patient outcomes,” said Sakis Mantalaris, PhD, director of Rinn Advanced Therapies. “By combining Rinn Advanced Therapies’ focus on novel personalized immune cell therapeutics with CCRM’s global platform, CCRM Ireland can accelerate the translation of cutting-edge science into accessible, high-quality treatments.”

Through this collaboration, Rinn Advanced Therapies will lead the evaluation of how Ireland’s integrated ecosystem—spanning academia, health care, biomanufacturing and research—can be aligned with CCRM’s model for accelerating the development of advanced therapies. The partnership will explore how to advance the design and clinical translation and delivery of personalized immune cell therapies, while also leveraging Ireland’s biopharmaceutical manufacturing skills.

CCRM Ireland would potentially support investment, venture creation and commercialization pathways, following CCRM Canada’s proven model.

“As cell and gene therapies move from scientific promise to clinical reality, no single organization, region or country can build this industry alone,” says Michael May, president and CEO, CCRM. “CCRM’s global hubs are designed to connect world-class research, manufacturing expertise, capital and talent into a coordinated network that accelerates the development and commercialization of advanced therapies.

By creating hubs around the world, and in the spirit of the Prime Minister of Canada’s call for middle-power countries to work together, with CCRM Ireland, we can help innovators overcome barriers to scale, strengthen local ecosystems and, most importantly, bring life-changing treatments to patients faster.”

Rinn Advanced Therapies brings together a network that includes universities, hospitals, and national organizations with a shared mission to develop and deliver personalized immune cell therapies that are more effective, accessible and affordable for patients.

CCRM will contribute its expertise in establishing and operating advanced therapies hubs, drawing on its experience in Canada and its growing international network. This includes proven frameworks in governance, GMP manufacturing, quality systems and commercialization.

 

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Shilpa Commissions Integrated ADC Drug Substance GMP Manufacturing Facility

India-based Shilpa Biologicals commissioned an antibody–drug conjugate (ADC) GMP manufacturing facility, purpose-built and designed to meet global regulatory approval standards including U.S. FDA, EMA, and other major health authority requirements. The facility is fully operational, with GMP qualification protocols now underway.

According to Sridevi Khambhampaty, CEO, Shilpa Biologicals, “The manufacturing of highly potent compounds has been a core pillar of Shilpa’s identity, and this ADC drug substance facility adds a new sophisticated dimension to the capabilities of the Shilpa group. We now offer global biotech and pharma partners a uniquely integrated ADC facility built with the knowledge of our existing high potency manufacturing excellence.”

“India has the scientific talent and now, with this facility, the infrastructure to be a serious and trusted partner in global ADC drug substance manufacturing,” said Vishnukant Bhutada, managing director, Shilpa Medicare. “We are ready to partner with the world’s leading oncology innovators.”

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Tecan Integrates Agentic AI Into Its Introspect Lab Analytics Platform

Tecan reported the integration of agentic AI capabilities into its lab analytics platform Introspect, leveraging the NVIDIA BioNeMo Agent Toolkit, which enable AI agents to access scientific AI capabilities within the Introspect platform. The goal is to help laboratories to optimize operations.

According to Tecan, agentic AI will allow laboratories to move beyond traditional monitoring and reactive troubleshooting toward proactive actions that help prevent issues before they impact performance, quality, or scientific outcomes. Early access to the enhanced Introspect platform is available, with applications focused on pharmaceutical, biotechnology, and clinical laboratory environments.

A milestone in the collaboration announced in 2026, this agentic AI development demonstrates advancement of Tecan and Nvidia’s shared vision of enabling data-driven laboratories with AI-powered platforms designed to accelerate scientific discovery and improve laboratory productivity, notes a company spokesperson, who adds that agentic AI introduces a new paradigm for laboratory operations.

Rather than identifying problems after they occur, intelligent agents can continuously analyze laboratory data, workflows, and system performance to uncover hidden patterns that limit throughput, constrain scalability, or reduce operational efficiency, explains Mukta Acharya, executive vice president and head of the life sciences business division at Tecan. By transforming data into recommended actions, laboratories can accelerate decision-making, optimize resource utilization, and proactively improve overall productivity, she continues.

Agentic AI has the potential to reshape how laboratories operate. By combining Tecan’s laboratory expertise with NVIDIA’s BioNeMo Agent Toolkit, we are enabling a new generation of intelligent laboratory solutions that can proactively support scientists, improve productivity, and help accelerate scientific outcomes,” says Acharya.

The work with Nvidia reportedly also focuses on the agentic guardrails required for the responsible and reliable deployment of AI in laboratory environments. These safeguards are designed to support transparency, reliability, and controlled automation, helping in the establishment of agentic AI as a technology to support key research and operational workflows.

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STAT+: Investor Clive Meanwell on designing biotechs for population health, and AI’s role as a catalyst

At first, Pfizer’s offer to buy obesity startup Metsera was $7.3 billion. Then Novo Nordisk entered the fray with an unsolicited bid for $9 billion. Then it was a $10 billion counteroffer. A bidding war like that is an investor’s dream, and it happened to Clive Meanwell. Now, he’s betting on AI to help him do it again.

The onetime oncologist has worked in drug development and biotech investment for close to four decades, and he’s now investing in big ideas with firm Population Health Partners, where he’s chairman and partner. 

The firm looks for the biggest problems facing human health, problems that could yield a handsome return on investment when solved. “Then we ask the question, ‘Is there anywhere in the world a technology, or a new business model, or a molecule or two or three, or a class of drugs or diagnostics that could solve this problem?’” he said.

Continue to STAT+ to read the full story…

STAT+: Moderna co-founder Kenneth Chien on the future of mRNA — and Moderna 

Among all the awards and mementos Moderna co-founder Kenneth Chien has accumulated over a 50-year career in science, one stands out for its sheer luxe: an Hermes belt.

It was a 2013 gift from Moderna CEO Stéphane Bancel, one of biotech’s more dapper CEOs, after Chien helped secure a large partnership between the then-tiny mRNA startup and the Swedish-British pharmaceutical giant AstraZeneca. 

The deal accelerated Moderna’s ascent, helping bring billions in funding and of course the life-saving mRNA Covid vaccines. But the actual medicines AstraZeneca planned to build through those deals — up to 40 mRNA-based drugs for cancer and cardiovascular disease — never materialized. 

Continue to STAT+ to read the full story…