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epithelial mechanics fan club

@epimechfc.bsky.social
2.1K followers 248 following 1.3K posts

📚 We're your source for papers on various #EpithelialMechanics topics 🔍 & platform to share your research and passion 🧫🔬 Like to write a thread? Please DM us! 💬 @onenimesa.bsky.social & @juliaeckert.bsky.social 👉 epithelialmechanics.github.io

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epithelial mechanics fan club @epimechfc.bsky.social · 3h
Gross, B. J., Soltwedel, J. R., ..., Gomez, C., & Campàs, O. (2025). STRESS, an automated geometrical characterization of deformable particles for in vivo measurements of cell and tissue mechanical stresses. Scientific Reports, 15(1), 28599. #EpithelialMechanics www.nature.com/articles/s41...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/10/2026
Rawal, S., Keshavanarayana, P., Manoj, D., Khuntia, P., Banerjee, S., ..., Spill, F., & Das, T. (2025). Edge curvature drives endoplasmic reticulum reorganization and dictates epithelial migration mode. Nature Cell Biology, 27(10), 1660–1675. #EpithelialMechanics www.nature.com/articles/s41...
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epithelial mechanics fan club @epimechfc.bsky.social · 05/10/2026
Tanida, S., Fuji, K., Lu, L., Guyomar, T., Lee, B. H., ..., Nonomura, M., & Sano, M. (2025). Predicting organoid morphology through a phase field model: Insights into cell division and lumenal pressure. PLOS Computational Biology, 21(8), e1012090. #EpithelialMechanics doi.org/10.1371/jour...
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epithelial mechanics fan club @epimechfc.bsky.social · 02/10/2026
Choi, B. J., Chen, Y.-C., & Desplan, C. (2025). Retinal calcium waves coordinate uniform tissue patterning of the Drosophila eye. Science, 390(6775), eady5541. #EpithelialMechanics www.science.org/doi/10.1126/...
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epithelial mechanics fan club @epimechfc.bsky.social · 01/10/2026
Lange, Z., Matthäus, F., & Qiu, M. (2025). Vertex models capturing subcellular scales in epithelial tissues. PLOS Computational Biology, 21(5), e1012993. #EpithelialMechanicsReview doi.org/10.1371/jour...
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epithelial mechanics fan club @epimechfc.bsky.social · 30/09/2026
Hsiao, S., Mukenhirn, M., Werner, C., Honigmann, A., & Krieg, E. (2025). Reconfigurable Microenvironments Uncover Mechano‐Sensing Timescales and Direct Cell Polarity. Advanced Functional Materials, 35(49), e13028. #EpithelialMechanics advanced.onlinelibrary.wiley.com/doi/10.1002/...
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epithelial mechanics fan club @epimechfc.bsky.social · 29/09/2026
Bresteau, E., Suva, E. E., Revell, C., Hassan, O. A., Grata, A., Sheridan, J., Mitchell, J., ..., Jensen, O. E., & Mitchell, B. (2025). Apical size reduction by macropinocytosis alleviates tissue crowding. Nature Communications, 16(1), 5338. #EpithelialMechanics www.nature.com/articles/s41...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Can mathematics explain how biological patterns are formed? Alan Turing thought so. Join me, @benswedlund.bsky.social, as we explore his reaction-diffusion theory and how it transformed our understanding of pattern formation and self-organisation.
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Benjamin Swedlund @benswedlund.bsky.social · 28/09/2026
Check out my latest thread for @epimechfc.bsky.social and dive into how a 70 yr old mathematical theory may explain pattern self-organisation in biology!
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Mark Peifer (He, him) @peiferlabunc.bsky.social · 27/09/2026
Lovely thread about how this decades old theory continues to help us understand developmental pattern 🧪
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Can mathematics explain how biological patterns are formed? Alan Turing thought so. Join me, @benswedlund.bsky.social , as we explore his reaction-diffusion theory and how it transformed our understanding of pattern formation and self-organisation.
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Although biology isn’t yet a predictable engineering science, combining modelling with perturbation and reconstruction experiments brings us one step closer. Thanks for reading! @benswedlund.bsky.social out. bsky.app/profile/epim...
bsky.app
epithelial mechanics fan club (@epimechfc.bsky.social)
📚 Welcome to the Epithelial Mechanics Fan Club! 🌟 We're all about sharing research papers and threads. If you'd like to contribute, please send DM us! 💬 Our goal is to build a community that…
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
As in natural systems, synthetic reaction-diffusion systems can be coupled with other patterning mechanisms, such as differential adhesion, to generate more robust patterns. doi.org/10.64898/202...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
But are these remarkably simple circuits really sufficient to generate patterns in living cells? I tested this by engineering minimal two-component synthetic reaction-diffusion circuits in mammalian fibroblasts and… they self-organised beautiful patterns. doi.org/10.64898/202...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
But how do we identify reaction-diffusion circuits within complex biological networks? We need to know what to look for. Computational screening of thousands of circuit architectures helps us identify the designs that have the ability to generate patterns. doi.org/10.1016/j.ce...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Beyond embryonic development, self-organised reaction-diffusion-type mechanisms may also contribute to pattern formation in adult tissues, and even during disease progression. doi.org/10.1016/j.ce...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Of course, biology is not purely self-organised, as embryonic development is a precise sequence of inter-dependent patterning events. Positional information, encoded in the form of morphogen gradients, can orient and constrain self-organised patterning. doi.org/10.1242/dev....
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Models are useful because they can make predictions. Alterations in Turing systems are predicted to change the spacing (wavelength) of the pattern – and that has been observed during digit formation, another reaction-diffusion-mediated patterning event. doi.org/10.1126/scie...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Over the past two decades, researchers have identified the molecular components of reaction-diffusion systems underlying various periodic patterning events, including the formation of feather buds, hair follicles, and fingerprints. doi.org/10.1016/j.ce...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
What is remarkable is how unreasonably good these equations are at reproducing the incredible diversity of animal skin patterns. But mechanistically, does nature actually work this way? doi.org/10.1146/annu...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
In his seminal 1952 theoretical paper, Alan Turing proposed that partial differential equations, representing molecules (“morphogens”) that react with one another and diffuse through space, can encode spontaneous periodic pattern formation. doi.org/10.1098/rstb...
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epithelial mechanics fan club @epimechfc.bsky.social · 27/09/2026
Can mathematics explain how biological patterns are formed? Alan Turing thought so. Join me, @benswedlund.bsky.social, as we explore his reaction-diffusion theory and how it transformed our understanding of pattern formation and self-organisation.
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epithelial mechanics fan club @epimechfc.bsky.social · 25/09/2026
Toda, S., Guan, G., Tambo, M., Morita, H., & Lim, W. A. (2026). Coupling Mechanical Regulation with Biochemical Reaction-Diffusion Circuits Yields Robust Self-Organized Pattern Formation. Synthetic Biology. #EpithelialMechanics doi.org/10.64898/202...
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epithelial mechanics fan club @epimechfc.bsky.social · 25/09/2026
Scholes, N. S., Schnoerr, D., Isalan, M., & Stumpf, M. P. H. (2019). A Comprehensive Network Atlas Reveals That Turing Patterns Are Common but Not Robust. Cell Systems, 9(3), 243–257.e4. #EpithelialMechanics doi.org/10.1016/j.ce...
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epithelial mechanics fan club @epimechfc.bsky.social · 24/09/2026
Ramos, R., Swedlund, B., Ganesan, A. K., Morsut, L., Maini, P. K., Monuki, E. S., ..., Chuong, C.-M., & Plikus, M. V. (2024). Parsing patterns: Emerging roles of tissue self-organization in health and disease. Cell, 187(13), 3165–3186. #EpithelialMechanicsReview doi.org/10.1016/j.ce...
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epithelial mechanics fan club @epimechfc.bsky.social · 24/09/2026
Green, J. B. A., & Sharpe, J. (2015). Positional information and reaction-diffusion: two big ideas in developmental biology combine. Development, 142(7), 1203–1211. #EpithelialMechanics doi.org/10.1242/dev....
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epithelial mechanics fan club @epimechfc.bsky.social · 23/09/2026
Glover, J. D., Sudderick, Z. R., Shih, B. B.-J., Batho-Samblas, C., Charlton, L., Krause, A. L., ..., Crichton, M. L., & Headon, D. J. (2023). The developmental basis of fingerprint pattern formation and variation. Cell, 186(5), 940–956.e20. #EpithelialMechanics doi.org/10.1016/j.ce...
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epithelial mechanics fan club @epimechfc.bsky.social · 23/09/2026
Swedlund, B., Danan, J. J., Jiang, T.-X., Ben Tahar, S., Poon, K., ..., Ehrenreich, I. M., & Morsut, L. (2026). A novel reaction-diffusion architecture for engineering self-organized patterns in mammalian cells. Synthetic Biology. #EpithelialMechanics doi.org/10.64898/202...
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epithelial mechanics fan club @epimechfc.bsky.social · 23/09/2026
Turing, A. M. (1952). The chemical basis of morphogenesis. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences, 237(641), 37–72. #EpithelialMechanics doi.org/10.1098/rstb...
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epithelial mechanics fan club @epimechfc.bsky.social · 22/09/2026
Sheth, R., Marcon, L., Bastida, M. F., Junco, M., Quintana, L., Dahn, R., Kmita, M., Sharpe, J., & Ros, M. A. (2012). Hox Genes Regulate Digit Patterning by Controlling the Wavelength of a Turing-Type Mechanism. Science, 338(6113), 1476–1480. #EpithelialMechanics www.science.org/doi/10.1126/...
science.org
Hox Genes Regulate Digit Patterning by Controlling the Wavelength of a Turing-Type Mechanism
Mouse genetics and computer modeling suggest that a reaction-diffusion mechanism defines digit pattern.
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epithelial mechanics fan club @epimechfc.bsky.social · 21/09/2026
Milinkovitch, M. C., Jahanbakhsh, E., & Zakany, S. (2023). The Unreasonable Effectiveness of Reaction Diffusion in Vertebrate Skin Color Patterning. Annual Review of Cell and Developmental Biology, 39(1), 145–174. #EpithelialMechanicsReview www.annualreviews.org/content/jour...
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epithelial mechanics fan club @epimechfc.bsky.social · 18/09/2026
Panda, Y. A., & Fischer-Friedrich, E. (2026). Localized actin cortex perturbation generates cell-scale membrane tension gradients. Biophysics. #EpithelialMechanics doi.org/10.64898/202...
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epithelial mechanics fan club @epimechfc.bsky.social · 17/09/2026
Cao, J., Chiappori, A., Landiech, S., Clément, R., & Lenne, P.-F. (2026). A developmental biologist's guide to mechanics. Development, 153(16), dev205785. #EpithelialMechanicsReview doi.org/10.1242/dev....
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epithelial mechanics fan club @epimechfc.bsky.social · 16/09/2026
Eddy, C. Z., Raposo, H., Manchanda, A., Wong, R., Li, F., & Sun, B. (2021). Morphodynamics facilitate cancer cells to navigate 3D extracellular matrix. Scientific Reports, 11(1), 20434. #EpithelialMechanics www.nature.com/articles/s41...
nature.com
Morphodynamics facilitate cancer cells to navigate 3D extracellular matrix - Scientific Reports
Scientific Reports - Morphodynamics facilitate cancer cells to navigate 3D extracellular matrix
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epithelial mechanics fan club @epimechfc.bsky.social · 15/09/2026
Ishihara, K., Mukherjee, A., Gromberg, E., Brugués, J., Tanaka, E. M., & Jülicher, F. (2022). Topological morphogenesis of neuroepithelial organoids. Nature Physics. #EpithelialMechanics www.nature.com/articles/s41...
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epithelial mechanics fan club @epimechfc.bsky.social · 14/09/2026
Krueger, D., Spoelstra, W. K., Mastebroek, D. J., Kok, R. N. U., Wu, S., Nikolaev, M., Bannier-Hélaouët, M., Gjorevski, N., ..., Tans, S. J., & Clevers, H. (2025). Epithelial tension controls intestinal cell extrusion. Science, 389(6764), eadr875. #EpithelialMechanics www.science.org/doi/10.1126/...
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epithelial mechanics fan club @epimechfc.bsky.social · 12/09/2026
Hi #EpithelialMechanics friends 👋 What are you working on right now? Have you just published a paper and want to share your amazing findings with the world? We will host your Thread! 🧵 Let's amplify your science together and become part of our community! 👉 epithelialmechanics.github.io/contact/
epithelialmechanics.github.io
Contact us | Epithelial Mechanics Fan Club
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epithelial mechanics fan club @epimechfc.bsky.social · 12/09/2026
Hi #EpithelialMechanics friends 👋 What are you working on right now? Have you just published a paper and want to share your amazing findings with the world? We will host your Thread! 🧵 Let's amplify your science together and become part of our community! 👉 epithelialmechanics.github.io/contact/
epithelialmechanics.github.io
Contact us | Epithelial Mechanics Fan Club
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epithelial mechanics fan club @epimechfc.bsky.social · 11/09/2026
De Belly, H., Paluch, E. K., & Chalut, K. J. (2022). Interplay between mechanics and signalling in regulating cell fate. Nature Reviews Molecular Cell Biology, 23(7), 465–480. #EpithelialMechanicsReview www.nature.com/articles/s41...
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epithelial mechanics fan club @epimechfc.bsky.social · 10/09/2026
Xue, X., Sun, Y., Resto-Irizarry, A. M., Yuan, Y., Aw Yong, K. M., Zheng, Y., ..., Studer, L., & Fu, J. (2018). Mechanics-guided embryonic patterning of neuroectoderm tissue from human pluripotent stem cells. Nature Materials, 17(7), 633–641. #EpithelialMechanics www.nature.com/articles/s41...
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epithelial mechanics fan club @epimechfc.bsky.social · 09/09/2026
Rembert, N., Dedenon, M., Roux, A., & Dessalles, C. A. (2026). Nematic order in cellular tissues: a standardized framework and anomalous defect dynamics. Biophysics. #EpithelialMechanics www.biorxiv.org/content/10.6...
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epithelial mechanics fan club @epimechfc.bsky.social · 08/09/2026
Santhosh, S., & Serra, M. (2026). Achiral Odd Mechanics in Cell Monolayers. bioRxiv, 2026-07. #EpithelialMechanics www.biorxiv.org/content/10.6...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
Hi! I’m @vitoryang.bsky.social, a PhD candidate studying how cells migrate collectively during development. My work focuses on cytoskeleton dynamics and Rho GTPase signalling, using Drosophila border cells as a genetically tractable in vivo model.
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
Thanks for following along. For more such threads, follow us and join our club 👇 bsky.app/profile/epim...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
Thanks to the labs and scientists behind these studies for advancing our understanding of invasive epithelial migration, actomyosin regulation, and Rho signaling. @vitoryang.bsky.social Cristian Marchant @polarityi3s.bsky.social Lab
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
So all there is left to answer is how RhoA/Rho1 is regulated? This paper shows that downregulation of Rho1 by RhoGAP15B stabilize protrusions and enable efficient collective migration in vivo. @vitoryang.bsky.social @polarityi3s.bsky.social www.biorxiv.org/content/10.6... bsky.app/profile/epim...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
But what activates myosin in the first place? RhoA/Rho1 signalling activates Myosin II via ROCK, generating acto-myosin contractility that controls cortical tension, cell shape, and force transmission during collective migration. Zegers; Friedl bsky.app/profile/epim...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
Myosin is more than a contractility motor. This paper shows that spatially patterned acto-myosin possibly ensures cell-cell communication and coordinates protrusion dynamics cells, to preserve cohesion and directionality. Mishra; @denisemontell.bsky.social bsky.app/profile/epim...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
Collective migration depends on dynamic shape changes. This study reveals how dynamic Myosin contractility regulates epithelial clusters geometry, balancing tension and plasticity to enable movement in confined environments. @gfaranjuez.bsky.social @jocmcdonald.bsky.social bsky.app/profile/epim...
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epithelial mechanics fan club @epimechfc.bsky.social · 06/09/2026
How do epithelial cells migrate collectively through dense tissues? This review shows that coordinated protrusion, adhesion, and force transmission allow groups of cells to move as a coherent unit during development and disease. Cheung; Horne-Badovinac bsky.app/profile/epim...
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