Francoise Helmbacher

@fhelmbacher.bsky.social

Developmental Biologist, #CNRS researcher, studying morphogenesis, muscle regeneration and pathologies, and curious for all life sciences. Lab website: https://helmbacherlab.org/

As Editor of @dev-journal.bsky.social I get asked "What are you doing about your impact factor?" In our new editorial we say: Ask not what Dev can do for the impact factor. Ask what you can do for Dev's IF The IF is about how we all cite, review & assess each other's work doi.org/10.1242/dev....

The elephant in the room: impact factor

Summary: This Editorial offers an honest look at impact factor trends in developmental biology, explains how Development serves its community, and makes the case that sustaining developmental biology ...

doi.org

FAT1 FibroAdipogenic Progenitor Muscle Regeneration #SciArt 2/2 Prx1+ (Germline) or PDGFRα+ (Tmx-induced) mesenchymal Fat1 KO🐭 +Glycerol injury 👉⏫intramuscular fibrotic (7dpi) & adipose content (7, 14 dpi) 👉⏬myofiber size (7dpi in Prx1+ Fat1 KO; 14dpi in PDGFRα+ Fat1 KO) 👉Loss of PDGFRα+ FAP pool

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Out now in @cp-iscience.bsky.social: we investigate how the peripheral limb architecture can affect the cellular and transcriptional maturation dynamics of spinal cord neurons #plasticity www.cell.com/iscience/ful... congrats and thanks to all co-authors!!! 👏🥳🙏

Transcriptional and cellular maturation of the chick spinal cord in the context of distinct neuromuscular circuits

Molecular biology; Neuroscience; Developmental biology; Omics

cell.com

Tumours aren’t just a messy mix of cells—they’re highly organised and hierarchical societies! Just like in all societies, small chats between individuals can drive collective emergent behaviours - we reveal how these sustain tumour growth and cellular heterogeneity. 🧵👇

System-level regulation of hierarchical transitions in a tumour lineage

The fundamental principles defining how cell state transitions are regulated along a tumour lineage to determine its cellular composition remain unclear. Here, we investigate how such transitions are controlled in a reductionist hierarchical brain tumour model. Quantitative analysis of 3D transition maps revealed that the differentiation of cancer stem cells (CSCs) into transit amplifying progenitors (TAPs) depends on the identity of their immediate neighbours. This is embodied in a transition rule that quantitatively predicts the probability to differentiate as a function of the proportion of TAP neighbours. Integrated into 3D simulations of tumour growth, this rule spontaneously recapitulates spatial segregation of CSCs in clusters and their stable proportion. We further show in vivo that CSC clustering protects the CSC pool from depletion driven by TAPs. We identify an EGFR-mediated relay mechanism that propagates the CSC-to-TAP transition across CSC clusters. In CSCs, the LRIG1-like EGFR inhibitor Kekkon1 dampens this propagation, ensuring continuous replenishment of the CSC pool. Collectively, these findings show how local fate regulation drives emergent segregation which in turn constrains CSC differentiation dynamics. This provides a conceptual framework to understand and exploit the tumour’s intrinsic differentiation potential by manipulating the determinants of its system-level features. ### Competing Interest Statement The authors have declared no competing interest. Turing Centre for Living Systems (CENTURI) La Ligue Contre le Cancer, https://ror.org/00rkrv905, Equipe Labellisée LIGUE 2025 Fondation pour la Recherche Médicale, ANR-24-EXCI-0001, ANR-24-EXCI-0002, ANR-24-EXCI-0003, ANR-24-EXCI-0004, ANR-24-EXCI-0005 Agence Nationale de la Recherche under the France 2030 program, ANR-24-EXCI-0001, ANR-24-EXCI-0002, ANR-24-EXCI-0003, ANR-24-EXCI-0004, ANR-24-EXCI-0005 Centre South-ROCK, INCa-Cancer_18695

biorxiv.org

Dan Perez founded the #FSHD Society to foster research & help patients w this painful & debilitating muscular dystrophy. It was a privilege to have known this brave, caring, smart person who was instrumental in getting research money for FSHD, a strange epigenetics-related disease. Melanie Ehrlich

In Memoriam: Daniel Paul Perez - FSHD Society

Written by Howard Chabner, Board Vice Chair, and shared on behalf of the entire FSHD Society Board of Directors The Board of Directors of the FSHD Society is deeply saddened to announce that Dan Perez...

fshdsociety.org

It was a privilege to have known Dan, a brave, caring, loving, & extremely smart person who was instrumental in getting research money for FSHD, a strange epigenetics-related disease. My deepest sympathy for his lovely and loving wife Sue & for his many devoted friends. Melanie Ehrlich #Epigenetics

FSHD Society@fshdsociety.com · 10mo ago

"The Board is deeply saddened to announce that Dan Perez, co-founder & former President/CEO, died on October 2. Everything being accomplished today stands on the foundation he built." Read the full In Memoriam piece: https://www.fshdsociety.org/2025/10/08/in-memoriam-daniel-paul-perez/