Longevity medicine best practices | healthspan | precision medicine | bio/acc | consulting @ agingdoc.com Connect: linkedin.com/in/agingdoc

Geroscience & Aging Biology 🌎
Honored to be named among the Top 10 emerging voices in longevity by @StoryfulNews! Proud to be listed with such a dynamic and thoughtful group—including @mkaeberlein, @CharlesMBrenner, and Rhonda Patrick @foundmyfitness—for helping shape science-driven longevity conversations🚀
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Transplanted hearts assimilate the recipient’s biological age 👉 “These data identify the systemic environment as a driving force on tissue biological age. The rejuvenation of older organs in young recipients suggests novel approaches to organ allocation that may expand the pool of transplantable organs.” @jpoganik @gladyshev_lab biorxiv.org/content/10.64898…
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Sugar restriction in first 1,000 days from conception linked to lower risk for dementia medicalxpress.com/news/2026-…
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Feeding-induced muscle mTORC1 signaling regulates postprandial protein synthesis and endurance but not muscle size insight.jci.org/articles/vie…
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Lifetime fitness and annual survival are heritable and highly genetically correlated in a wild primate population "our findings reveal a substantial genetic contribution to variation in survival, and in turn, to fitness and contemporary evolution in a long-lived animal." academic.oup.com/evolut/arti…?
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Extreme longevity revealed by 24-year genetic mark–recapture challenges conservation of endangered sea cucumbers 👉 “Longevity exceeded 100 years, and mortality was exceptionally low…” cell.com/iscience/fulltext/S…
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As More Americans Turn to Cannabis, Problem Use Is Increasing A growing number of Americans report they are unable to quit or cut down. nytimes.com/2026/08/19/well/…
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Anthropic’s discovery will, at best, be just another gene-editing tool The AI company Anthropic has announced that its Claude large language model has discovered a system reminiscent of CRISPR, but that doesn’t mean the Nobel prizes will start rolling in, says Michael Le Page newscientist.com/article/259…
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The Effect of Integrated Aerobic and Cognitive Training (Activ4Brain) on Cognition and Neurophysiology in Older Adults: Protocol for a Controlled Trial researchprotocols.org/2026/1…
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UNC Researchers Identify Dietary Oxalate as a Hidden Driver of Gut Inflammation newswise.com/articles/unc-re… Study: Dietary Oxalate and Intestinal Inflammation: Evidence From Experimental Colitis and Inflammatory Bowel Disease Patient Cohorts cmghjournal.org/article/S235…
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Does the Combination of Abdominal Obesity and Vitamin D Deficiency Increase the Risk of Death in Individuals Aged 50 or Older? Evidence From the ELSA Study "AO combined with 25(OH)D deficiency increases mortality risk in older adults. Early identification and management of these conditions could reduce this risk." dom-pubs.onlinelibrary.wiley…
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Does timing matter when you take supplements? Here’s what the evidence says theconversation.com/does-tim…
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Sex is safe in type 1 diabetes, shows small study using continuous glucose monitoring devices medicalxpress.com/news/2026-…
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Only 100 invited globally. Aubrey among them! It’s official: longevity, Science and Medicine are on the map. 🔬⚕️👨🏻‍⚕️
I've focused for 25 years on aging damage repair, many of them while it was viewed as unscientific. Not any more! In December I oversee the Friday program at the Trampoline Zermatt Summit, with about 100 founders, investors and scientists. 2-6 December, by invitation.
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Agingdoc🩺Dr David Barzilai🔔MD PhD MS MBA DipABLM retweeted
Longevity has no shortage of exciting ideas. The harder question is: what does the evidence actually support? In my Q&A with Future Biotech Expo, I discuss biological age testing, AI, cognitive health, preventive medicine, and where longevity science may be heading. Full Q&A: lnkd.in/gwZJ5KKy #Longevity #LongevityScience #Biotech #PreventiveMedicine
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Using @claudeai for longevity science and medicine? 👨🏻‍⚕️⚕️ Share your experience.
Today we announced the Claude-led discovery of a molecular machine that we suspect could represent a new gene editing mechanism. Its precise function, biotechnological utility (if any), or level of significance is not yet clear, but at minimum it is work I would have been proud to do as a PhD student. The work was done mostly, though not entirely, by Claude: our life sciences team suggested a broad area of research, Claude read through the literature and a bunch of genome data and discovered something interesting, then Claude proposed experiments to verify the discovery and our team carried them out. It’s easy to dismiss this as a one-off or curiosity, but we’ve repeatedly seen a pattern where AI performance in new intellectual domains goes from weak to superhuman in a matter of a few years. In 2023 models struggled to do math at the level of an average high-school student. In 2024 they started to do well on math competitions for the best high-schoolers in the country, in 2025 they started to solve minor open problems, in early 2026 more significant open problems, and in late 2026 they are beginning to solve the top few open problems in all of mathematics. We believe AI for biology is on a similar exponential trend. The main difference between biology and mathematics, of course, is that math can be done purely theoretically, while biology requires experimentation. Some have used this to draw the conclusion that AI’s utility in biology will be limited. We think this is wrong. As we’ve demonstrated today, humans can collaborate with AI to perform the experiments, validate key results in a few weeks and, if necessary, work with the AI to iterate on what they find. Eventually it may even be possible for Claude itself to safely perform the experiments by autonomously controlling lab equipment, with appropriate safeguards in place, but we aren’t doing that today (our lab is also a BSL1/BSL2 facility that doesn't handle materials dangerous to humans). More broadly, biomedical advancement has many stages — from fundamental biology discoveries, to translational research, to drug discovery, clinical trials, and finally the actual delivery of medicines and health care to patients. We are also interested in these later stages, but even simply accelerating the first stage of fundamental biological discoveries has the potential to speed up and broaden the entire pipeline. Improving our understanding of biology and sharpening biologists’ tools can drive forward all of the later stages, for example by identifying new drug targets, finding new therapeutic modalities, allowing for more precise measurement, and speeding up the experimental loop which itself further accelerates our understanding of biology. This will not in itself speed up clinical trial times, but if it succeeds it could greatly increase the number of promising candidates that go into the pipeline — an increase in throughput even though latency remains. In Machines of Loving Grace, I wrote about AI’s potential to “cure most diseases in 5-10 years” — a goal that sounds impossible, but one I believe is just barely possible if AI is applied to every stage of the pipeline. The first step is showing that AI can first help with, and then drive, biological discoveries. Claude’s discovery is the latest in a line of related prior work that goes back decades, beginning with systems like CRISPR, and continuing with discoveries like the bridge recombinase and VIPR in the past few years. Recently, there has been heightened interest in systems based on reverse transcriptase (RT) enzymes, the enzyme underlying the system Claude identified. And most recently, a Stanford team working independently described a novel RT system with an associated non-coding array that is in some ways similar to the one Claude found, though they are distinct systems that evolved independently from each other. I believe that we’re at the very beginning of finding such systems and developing them into powerful tools for biotechnology. I’m proud of the resources Anthropic has invested in accelerating the public benefits of AI through the life sciences, and we’re aiming both to grow our life sciences team and to work with other scientists to extend this approach to a broad range of problems. If you have a proposal for a research collaboration or are interested in joining our life sciences team, please reach out.
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Physical activity and sitting over 9 years of the Women’s Health Initiative Strong & Healthy (WHISH) randomized physical activity intervention trial in older women "A 9-year “light touch” remotely-delivered PA intervention modestly attenuated age-related PA decreases and sitting time increases in older women" academic.oup.com/biomedgeron…
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