Arun Sharma

@arunsharmaphd.bsky.social

Stem cell, heart, and space biologist 🧫🫀🚀 • Associate Professor and Director, Center for Space Medicine Research at Cedars-Sinai • Host of the Stem Cell Podcast Lab and science links: https://www.arun-sharma.com

It’s a great night to send more science to space! 🚀 We are proud to launch our 6th stem cell science payload from Cedars-Sinai to the International Space Station. Stay tuned for the first production of human organoids in space! Congrats to all involved. Onwards and upwards! ✨

The other, other best part of meetings is sharing the science and fun with the next generation! Great representation from Sharma lab at #BCVS25. Thanks Maedeh, Jemima, and Sean for excellent posters on all things iPSCs, organoids, organ chips, and cardiotoxicity! 🫀

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Thrilled to be the director of the new Center for Space Medicine Research at Cedars-Sinai! 🚀 We study the impact of spaceflight on cell function and harnessing microgravity to make unique bioproducts in space. Come explore what we’re working on! www.cedars-sinai.org/newsroom/ced...

Cedars-Sinai Launches Center for Space Medicine Research

The Cedars-Sinai Board of Governors Regenerative Medicine Institute launched the Cedars-Sinai Center for Space Medicine Research on May 22—and marked the occasion with a visit from NASA astronaut and ...

cedars-sinai.org

Moving up a notch! Honored to become an Associate Professor at Cedars-Sinai. Huge thanks to my incredible lab team for their amazing work. Also grateful to the leadership here, especially Clive Svendsen, for believing in me. Onwards! 🚀

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Incredible work! A study years in the making published in Nature. I’ve been waiting for this one. Engineered heart muscle patches from iPSC improve cardiac function in non-human primates…and are stable/show evidence for remuscularization in a human patient! Wow! ❤️ www.nature.com/articles/s41...

Engineered heart muscle allografts for heart repair in primates and humans - Nature

Epicardial engineered heart muscle allografts from induced pluripotent stem cell-derived cardiomyocytes can safely and effectively remuscularize chronically failing hearts in rhesus macaques, leading ...

nature.com