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Sina Kheiri

@sinakheiri.bsky.social
21 followers 22 following 3 posts

Incoming Assistant Professor, McGill University | Jarislowsky Chair in Translational Thoracic Surgery

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Reposted by Sina Kheiri
Ritu Raman @rituraman.bsky.social · 07/07/2026
Out today in PNAS: We show that dynamic "4D" forces can spatially pattern angiogenesis in a PIEZO1-dependent manner. Excitingly, changing force patterns over time enables redirecting sprouting trajectories, forming complex branched geometries: www.pnas.org/doi/10.1073/... #TissueEngineering
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Reposted by Sina Kheiri
Ryan Flynn @raflynn5.bsky.social · 28/01/2026
Science update from my postdoc Peiyuan Chai - his work “glycoRNA complexed with heparan sulfate regulates VEGF-A signaling” is now published @nature.com uncovering a new layer or glycoRNA-regulation of growth factor mediated control physiological processes rdcu.be/e1bBX
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Reposted by Sina Kheiri
Ritu Raman @rituraman.bsky.social · 28/01/2026
Out today in Nature - our collaborative work with Ryan Flynn's lab, led by Dr. Peiyuan Chai with support from Dr. @sinakheiri.bsky.social and @shahjess.bsky.social from our group. Exciting findings showcasing how glycoRNAs can modulate angiogenesis!
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Reposted by Sina Kheiri
Ritu Raman @rituraman.bsky.social · 16/12/2025
Excited to share our new paper on high-throughput #optogenetic #exercise assays for tissue engineered skeletal muscle! We leverage a multi-well stimulation apparatus to study how exercise regimen of various durations + frequencies impact muscle gene expression: doi.org/10.1002/btm2... #myoblue
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Sina Kheiri @sinakheiri.bsky.social · 21/11/2025
What if we could “nudge” blood vessels to grow where we want them, in 3D and over time? We show that mechanical strain can guide new vessel sprouts in 3D as they grow. Thanks to my co-authors @shahjess.bsky.social Shah, Shashaank Venkatesh, Roger Kamm, and @rituraman.bsky.social
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Sina Kheiri @sinakheiri.bsky.social · 18/02/2025
So happy to see our work in Nature Communications! 🧠🔎 We developed a #selfdriving lab to synthesize different shapes and sizes of #nanoparticles more efficiently. Please check it out here: 📄 www.nature.com/articles/s41...
nature.com
Self-driving lab for the photochemical synthesis of plasmonic nanoparticles with targeted structural and optical properties - Nature Communications
The automated synthesis of plasmonic nanoparticles with on-demand properties is a challenging task. Here the authors integrate a fluidic reactor, real-time characterization, and machine learning in a ...
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