Scientists found that key “SP” genes drive limb regeneration across species like salamanders, zebrafish, and mice, revealing a shared genetic program for regrowth. By mimicking these genes with gene therapy, they partially restored bone regrowth in mice, suggesting a potential path toward regenerating human limbs in the future.
https://t.co/Qbl9CZCSU9
New Paper - Evidence suggests regeneration may be a natural and achievable biological process worth prioritizing over merely slowing aging—ideally beginning in midlife (around 40–60) to postpone decline, with the potential to reverse aging later in older individuals. Insights from species capable of rejuvenation and evolutionary models indicate that aging may be actively regulated, implying it could be reversed, not just managed.
https://t.co/uGivC445D1
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Millions of people with vision loss are watching advances in vision restoration, and while an FDA-approved gene therapy now helps some patients with RPE65-related blindness, newer optogenetic treatments may soon offer hope to many more, including those with advanced retinal damage.
https://t.co/k7JEjLNK7d
I am working with a company that is building protocols for "patient's own cells" rather than using immune suppression, but I am delighted to see more human progress here: https://t.co/Vv4CA6PW9b