🆕 ADVANCE ONLINE 🆕 REVIEW: Mechanisms coordinating exit from the stem cell state in mammals By Park, Levin-Ferreyra and Bruno Di Stefano ➡️ https://ow.ly/siz250Za9Wh Bruno Di Stefano Baylor College of Medicine #stemcell #embryogenesis #celldifferentiation
Florencia Levin Ferreyra
@levin-ferreyra.bsky.social
PhD candidate at Baylor College of Medicine. Currently working in the Di Stefano Lab, studying molecular mechanisms that regulate cell identity during the early stages of human embryonic development.
Online registration for #ISSCR2026 closes on 1 July! Do not miss your chance to join nearly 3,500 stem cell researchers and regenerative medicine professionals from around the world to discuss the latest advances and innovations in the field! invt.io/1bxb2w2ogmi @ISSCR.org
ISSCR 2026 online registration closes 1 July.
Learn more.
invt.io
Connect with leading scientists, discover groundbreaking research, and take part in countless networking opportunities designed to spark collaboration and innovation at #ISSCR2026! Register for The Global Stem Cell Event to be part of the future of stem cell science! invt.io/1bxbrzs76m8 @ISSCR.org
Network with stem cell leaders at ISSCR 2026.
Learn more.
invt.io
Connect, collaborate, and share ideas at the #ISSCR2026 Meet-Up Hub. Reserve a 45-minute slot to bring a group of scientists who share a common interest together and network with peers in your field. Space is limited - submissions are due 13 May. invt.io/1bxbzeyz6n5 @isscr.org
ISSCR 2026 Meet-Up Hub submission ends 13 May
Learn more.
invt.io
Expand your professional circle at #ISSCR2026! Networking opportunities include small-group sessions in the Meet-Up Hub, networking breaks and receptions, & one-on-one partnering designed to facilitate collaboration & idea exchange. Register 👉 invt.io/1bxb3a6xjvy @ISSCR.org
Network with stem cell leaders at ISSCR 2026.
Learn more.
invt.io
Deadline approaching! Do not miss your chance to present a poster at the #ISSCR2026 Annual Meeting this July in Montréal. Submit your abstract by 22 April to present your latest research to the global stem cell and regenerative medicine community. invt.io/1bxbp0oj7ou @isscr.org
ISSCR 2026 abstract submission ends 22 April.
Learn more.
invt.io
Late-breaking abstract submission is now open for #ISSCR2026! Share timely results with the global stem cell community in Montréal this July through a poster presentation. Submit by 22 April 2026. invt.io/1bxbkzz2dl3 @isscr.org
ISSCR 2026 Late-Breaking Abstracts due 22 April
Learn more.
invt.io
#ISSCR2026 offers exclusive networking opportunities designed to connect you with researchers driving the future of stem cell science. Make connections that progress your research forward and join me at @ISSCR.org 2026 in Montréal, Canada this July. invt.io/1bxbvn48sxd
Network with stem cell leaders at ISSCR 2026.
Learn more.
invt.io
Open doors to new collaborations, mentorship, and global recognition in the stem cell community by presenting your research at #ISSCR2026. Abstracts are due 25 February to be considered for oral presentations and travel & merit awards. invt.io/1bxb36zykwu @isscr.org
ISSCR 2026 abstract submission ends 25 February.
Learn more.
invt.io
The #ISSCR2026 scientific program brings together leading voices and new ideas, covering a wide range of topics from stem cell biology to organoids, disease modeling, and cell therapies. Submit an abstract by 25 February for the opportunity to present your research! invt.io/1bxbq12tu9w @isscr.org
ISSCR 2026 abstract submission ends 25 February.
Learn more.
invt.io
Submit a science spotlight proposal to contribute to the scientific programming at #ISSCR2026! Organized by @ISSCR.org student & postdoc members, these sessions provide a fresh perspective on emerging scientific topics. Proposals are due 25 February invt.io/1bxbauz2smu
Submit a Science Spotlight Proposal by 25 February.
Learn more.
invt.io
The abstract submission deadline for #ISSCR2026 is coming up on 25 February! Submit your research to showcase your findings, connect with global experts, and gain visibility. Travel awards are available for early career researchers. Learn more: invt.io/1bxbje02xjt @ISSCR.org
Submit an Abstract by 25 February.
Learn more.
invt.io
The #ISSCR2026 scientific program features the field’s most influential voices and groundbreaking science. Explore breakthroughs from basic biology to clinical translation and join the conversations driving stem cell research and regenerative medicine forward. invt.io/1bxbzmedr2k @ISSCR.org
Join me at the ISSCR 2026 Annual Meeting!
Register now
invt.io
Showcase your research on a global stage at #ISSCR2026! Submit an abstract by 25 February to share your latest stem cell discoveries, translational insights, or clinical advances. Research from all sectors is welcome - academia, industry, and beyond! invt.io/1bxbk8gby81 @ISSCR.org
Join me at the ISSCR 2026 Annual Meeting!
Register now
invt.io
@stemcellreports.bsky.social, the official meeting journal of #ISSCR2026, communicates basic discoveries in stem cell research, in addition to translational & clinical studies. Meet the editorial team at @ISSCR.org 2026 & discuss how to publish your work in Stem Cell Reports! invt.io/1bxbzaorikl
Join me at the ISSCR 2026 Annual Meeting!
Register now
invt.io
There are many ways to make your voice heard and participate in all that the #ISSCR2026 Annual Meeting has to offer! Discover how to get involved, including submitting an abstract, proposing a science spotlight, hosting a meet-up hub, and more! invt.io/1lxby1coomp @isscr.org
1/ Excited to share our new study with @brumbaugh-lab.bsky.social, out in @natbiotech.nature.com! P-bodies selectively sequester RNAs encoding cell fate regulators, often from the preceding developmental stage. Releasing these RNAs can drive changes in cell identity. 🧵 www.nature.com/articles/s41...
Selective RNA sequestration in biomolecular condensates directs cell fate transitions - Nature Biotechnology
Stem cell differentiation is controlled by manipulating RNA condensates.
nature.com
Thrilled to be selected as an #ISSCR2026 Ambassador! The @ISSCR.org 2026 Annual Meeting will take place in Montréal, Canada on 8-11 July 2026 & features 4 days of scientific sessions with talks from global researchers! Explore the scientific program and the ways to participate. invt.io/1bxbwbghvue
I'm an ISSCR 2026 Ambassador, join me!
Register now
invt.io
1/ Pleased to share our review, published today @natrevimmunol.bsky.social, highlighting how biomolecular condensates enhance the precision and flexibility of gene regulatory networks that guide fate decisions during normal and pathological immune cell development. www.nature.com/articles/s41...
Biomolecular condensates in immune cell fate - Nature Reviews Immunology
Recent studies suggest that biomolecular condensates — membrane-less assemblies of proteins and nucleic acids — are involved in regulating gene expression to ensure proper immune cell development. Thi...
nature.com
Transposable element activity captures human #pluripotent cell states. #Stemcells @bcmhouston.bsky.social -> www.embopress.org/doi/full/10....
Excited to share my first manuscript in the @distefanolab.bsky.social , now out in @emboreports.bsky.social! 🎉 We demonstrate how two transposable elements, MER51B and LTR5_Hs, serve as selective indicators of human pluripotency states embopress.org/doi/full/10..... 🧵 below:
The latest paper from the Di Stefano lab showing the power of using transposable elements as reporters of different human pluripotent states! www.embopress.org/doi/full/10....
Transposable element activity captures human pluripotent cell states | EMBO reports
imageimageA novel dual reporter system based on transposable elements LTR5_Hs and MER51B enables precise tracking of human pluripotent stem cell states. This system reveals also a rare, metastable pri...
embopress.org
I love a good reporter! TE reporters for capturing distinct hESC states. Looking forward to reading #TEsky
The latest paper from the Di Stefano lab showing the power of using transposable elements as reporters of different human pluripotent states! www.embopress.org/doi/full/10....
Excited to share my first manuscript in the @distefanolab.bsky.social , now out in @emboreports.bsky.social! 🎉 We demonstrate how two transposable elements, MER51B and LTR5_Hs, serve as selective indicators of human pluripotency states embopress.org/doi/full/10..... 🧵 below:
Transposable element activity captures human pluripotent cell states | EMBO reports
imageimageA novel dual reporter system based on transposable elements LTR5_Hs and MER51B enables precise tracking of human pluripotent stem cell states. This system reveals also a rare, metastable pri...
embopress.org