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Gloerich lab

@gloerichlab.bsky.social
152 followers 201 following 10 posts

Molecular cell biology lab exploring the role of mechanical forces in epithelial homeostasis and cancer @ Center for Molecular Medicine UMCU

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epithelial mechanics fan club @epimechfc.bsky.social · 03/05/2026
How do epithelial cells integrate mechanical and biochemical signals to control their behavior? I am @ronjahoutekamer.bsky.social, and in this thread, I’ll show you how force transduction connects to biochemical signaling, and how it activates ERK by inducing biochemical ligand shedding.
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Gloerich lab @gloerichlab.bsky.social · 16/12/2025
Paper alert! β-catenin forms condensates that help build cell–cell adhesions - showing its role goes beyond simply linking E-cadherin to α-cat/actin. Great collaboration with the Schuijers lab! 👉 nature.com/articles/s41...
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
Many thanks to all collaborators (including @cperezgonzalez.bsky.social, @vignjeviclab.bsky.social @vanrheenenlab.bsky.social, @hugosnippert.bsky.social) and the Dutch Cancer Foundation for making this work possible!
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
In future work we hope to unravel how TRPV4 and integrins cooperate to control YAP signaling in CRC cells, and how mechanical forces intersect with other cues controlling CRC cell plasticity
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
Chemical activation of mechanosensitive calcium channels is sufficient to trigger the emergence of fetal-like cells, and screening channels expressed in CRCs points to TRPV4 as the key channel. Blocking both integrin signaling and TRPV4 fully prevents Collagen I–induced reprogramming
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
CRC cells pulling on Collagen I show increased calcium fluctuations, visualized with the calcium reporter K-GECO1
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
CRC reprogramming by mechanical interactions with Collagen I involves the usual suspects: induction of YAP-mediated transcription via integrins. Interestingly, we find that for this integrins team up with other mechanosensors: mechanosensitive calcium channels
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
…which requires CRC cells to mechanically pull on the Collagen I network (e.g., being disrupted when plating CRC cells on collagen I-coated substrates of low stiffness).
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
Using CRC organoid models we found that interactions with Collagen I, a main component of the stroma, can trigger this reprogramming…
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
Consistent with previous work (including from @vanrheenenlab.bsky.social), spatial transcriptomic analysis of colorectal cancer (CRC) shows that cells invading the stroma lose Lgr5-stem cell signatures. We show that these cells adopt a fetal-like transcriptional program
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Gloerich lab @gloerichlab.bsky.social · 07/11/2025
We finally made it over here ! And excited to share our new paper on mechanical forces regulating stem cell plasticity in colorectal cancer, involving force transduction via mechanosensitive calcium channels! www.cell.com/cell-reports...
cell.com
Mechanosensitive calcium channels and integrins coordinate the reprogramming of colorectal cancer cells into a fetal-like state
van der Net et al. show that mechanical interactions with the stromal component collagen I trigger reprogramming of colorectal cancer cells into a fetal-like state, through mechanosensitive integrins ...
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