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Pfizer CFO to step down; Denali sells a regulatory fast-pass

Today, a brief rundown of news involving Pfizer and Denali Therapeutics, as well as updates from GSK, Spot Biosystems and Novocure that you may have missed. Pfizer CFO Dave Denton will leave the company on Aug. 15 to pursue a new job he’s accepted in the consu

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This guide cannot diagnose a condition or recommend a personal treatment plan. Discuss medical questions with a qualified professional.

Today, a brief rundown of news involving Pfizer and Denali Therapeutics, as well as updates from GSK, Spot Biosystems and Novocure that you may have missed. Pfizer CFO Dave Denton will leave the company on Aug. 15 to pursue a new job he’s accepted in the consumer goods sector, the company said Thursday. He’ll be succeeded on an interim basis by Cecile Guegan , the head of finance for the company's global pharmaceutical business, while Pfizer conducts a “comprehensive internal and external search.” Denton has been Pfizer’s financial leader since May 2022, when he took over for Frank D’Amelio. Over that time, Pfizer made multiple large acquisitions, including buyouts of Seagen , Biohaven and Metsera . Denali Therapeutics sold a fast pass that can accelerate U.S. drug reviews in a deal worth $195 million. Denali acquired that “priority review” voucher in March, when the Food and Drug Administration approved its Hunter syndrome treatment Avlayah . Denali didn’t reveal which company bought the voucher, but said the proceeds will help develop the rest of its pipeline, including other therapies for lysosomal storage disorders, Alzheimer’s and other neurodegenerative conditions. Spot Biosystems launched with $40 million in funding and plans to develop a new kind of gene therapy for Duchenne muscular dystrophy . Spot’s treatment uses a different delivery system than many Duchenne gene therapies in development and is designed to help the body make “full-length” dystrophin, the shock-absorbing protein patients lack. Other treatments, such as Sarepta Therapeutics ’ Elevidys , spur production of a shortened form of that protein. A first-in-human trial in China is ongoing. Those results could help “inform and support” a regulatory path in the U.S., the company said. The FDA on Wednesday approved a new oral antibiotic for people with complicated urinary tract infections. Called Utebzi , the treatment was long developed by biotechnology company Spero Therapeutics as a more convenient alternative to intravenous injections and is now largely owned by GSK , which acquired most rights to the therapy four years ago. The FDA rejected Utebzi in 2022, but Spero worked with the regulator to design a new trial that could support a clearance. That study found Utebzi statistically non-inferior to an intravenous antibiotic. In a statement, GSK referred to Utebzi as the first and only oral antibiotic of its kind available in the U.S. Novocure shares dipped by more than 20% Thursday after the company reported a setback for its electrical field-emitting device in a Phase 3 trial in brain cancer. Novocure evaluated use of that device when patients with newly diagnosed glioblastoma start receiving a combination of chemotherapy and radiation. That regimen failed to meaningfully extend survival when compared to use during the subsequent “maintenance” phase of treatment. Novocure’s device is already approved to treat glioblastoma in the “adjuvant” setting after surgery and as a monotherapy in recurrent disease. It’s also cleared for use in mesothelioma, pancreatic cancer and non-small cell lung tumors.

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01Lifestyle Matters: How do environmental and lifestyle factors influence Alzheimer’s disease?

Dr. Harrison and Finnish neuroscientist Dr. Miia Kivipelto explore the complex interplay between genetics and lifestyle in Alzheimer's development. Learn how the groundbreaking FINGER study demonstrates potential prevention strategies, and discover the latest evidence on how environmental factors, diet, and chronic conditions influence Alzheimer's risk.

Source: www.biopharmadive.com ↗
02China: Threat or opportunity?

One of the biggest biotech news stories of recent years is China’s continued rise as a biotech and life sciences powerhouse. China conducts a quarter of all clinical trials and drug development and has almost 1,500 new drugs in development.¹ Many China-based biotechs have benefitted from government funds, out-licencing deals with large pharmas and venture capital funding. However, policymakers in the US and EU have concerns about the possible threat to their region’s biosecurity and competitiveness as centres for health and life science research. Given China’s increased importance, ICON Biotech conducted the same biotech sector survey with 100 China-based biotech leaders. The results show that Chinese biotechs face many of the same challenges as biotechs located elsewhere. They share the same funding challenges and burdens associated with increasingly complex clinical trials and regulations.

Source: www.biopharmadive.com ↗
03Why Muscle Cells Might Do Some Heavy Lifting

Brown was studying gene therapy in the 1990s when he designed a technology to turn mRNA expression on or off in different cells. For the new mouse study, published in Nature Biotechnology , he adapted the technology to turn off mRNA expression in dendritic cells, muscle cells, or liver cells. The researchers then vaccinated the mice with each version, delivering the vaccines both intravenously and intramuscularly. “The results were pretty stunning,” Brown said. When mRNA expression was turned off in muscle cells, T-cell response went down, suggesting muscle cells play a role in immunity. When expression was turned off in liver cells, T-cell expression tripled — indicating liver cells dampen immunity. Turning off expression in dendritic cells had no effect on T-cell activation, though it did reduce the number of killer T cells by as much as half. (Interestingly, no such reduction occurred when the antigen was SARS-CoV-2 spike. Brown is now investigating why different antigens had varying effects.) Knowing all this is crucial for designing effective mRNA vaccines and therapies. That’s because different mRNA therapies require different strategies. Cancer vaccines must boost tumor-fighting killer (CD8+) T cells. For genetic disease treatments, scientists want to avoid triggering the immune system to prevent killing the very cells the mRNA is meant to modify. “Understanding the immunology is extremely important for this class of drug,” Brown said. The finding doesn’t mean dendritic cells aren’t important for mRNA vaccines to work. “It just means that the mRNA doesn’t have to get into those cells to induce an immune response,” Brown said. Instead, the antigen can be transferred to those dendritic cells.

Source: www.medscape.com ↗
04How Real Brain Cells Respond to Artificial Neurons

Holla, who completed her PhD in Raman’s lab and is now a postdoctoral researcher studying memory at New York University in New York City, designed and ran experiments in mouse cerebellar slices. She positioned a stimulation electrode on the parallel fibers, the main pathway that excites Purkinje cells, and a recording electrode on the Purkinje cells themselves. She played recordings of the artificial neurons’ waveforms into the tissue through a standard stimulation electrode at four different speeds: 7, 60, 218, and 740 spikes per second. At every speed below 200 spikes per second, the Purkinje cells fired in response. The strongest results came at 60 spikes per second, where each artificial spike lasted 0.7 milliseconds, which is fast enough to trigger the cell but brief enough to avoid flooding the tissue with unnecessary current. Above 200 spikes per second, the cells stopped responding. They simply cannot fire that fast. The team included the 740-spikes-per-second condition on purpose to directly challenge the many engineering groups building artificial neurons that operate at those speeds. “We had to show them [740 spikes] wasn’t sufficient,” Brown said. “You can’t work that fast.” “You can see the living neurons respond to our artificial neuron,” Hersam said. But he is careful to note a caveat: The printed artificial neurons were not touching the brain tissue. The waveforms they generated were recorded and then played back into the slice through standard laboratory stimulation equipment. The next step is to prove the printed device itself can interface with living tissue.

Source: www.medscape.com ↗
05What Comes Next

With data expected in the fourth quarter of 2026, we are prioritizing histology alongside patient-reported outcomes using the Celiac Disease Symptom Diary, one of only two instruments developed in line with U.S. Food and Drug Administration (FDA) guidance, to capture changes in symptoms such as abdominal pain and nausea. Ultimately, the broader aim is to give gastroenterologists and patients a therapeutic option for a disease that has long been managed without one. The future of drug development will not be defined by statistical significance alone, but by whether new therapies also improve the daily burden of living with celiac disease. “The first therapy to cross the line could change the field,” Geller concluded. “It would help establish celiac as a serious medical condition with options beyond a restrictive diet and open the door for what comes next.” Dr. Paul Lizzul is chief medical officer at First Tracks Biotherapeutics, a clinical ‑ stage biotechnology company advancing antibody therapeutics that modulate immune pathways implicated in autoimmune and inflammatory diseases. Marilyn Geller serves as an advisor to First Tracks Bio. Footnotes Abadie V, Jabri B. IL-15: a central regulator of celiac disease immunopathology. Immunol Rev . 2014;260(1):221-234. https://doi.org/10.1111/imr.12191. Yokoyama S, Watanabe N, Sato N, et al. Antibody-mediated blockade of IL-15 reverses the autoimmune intestinal damage in transgenic mice that overexpress IL-15 in enterocytes. Proc Natl Acad Sci U S A . 2009;106(37):15849-15854. https://doi/full/10.1073/pnas.0908834106. Anthony S, Schluns KS. Emerging roles for IL-15 in the activation and function of T-cells during immune stimulation. Research and Reports in Biology . 2015;6:25-37. https://doi.org/10.2147/RRB.S57685.

Source: www.biopharmadive.com ↗
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Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

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