epithelial mechanics fan club (@epimechfc) 's Twitter Profile
epithelial mechanics fan club

@epimechfc

We're your source for papers on various #EpithelialMechanics topics📚

you like to write a thread or share your research? DM us!

💬@onenimesa @JuliaEckert10

ID: 1682688126118969344

linkhttps://my.owndrive.com/apps/forms/s/wcdAGfDryk9FqmQp88LPw3Hs calendar_today22-07-2023 09:45:18

1,1K Tweet

2,2K Followers

322 Following

epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Gradeci, D., Bove, A., Vallardi, G., Lowe, A. R., Banerjee, S., & Charras, G. (2021). Cell-scale biophysical determinants of cell competition in epithelia. eLife, 10, e61011. #EpithelialMechanics elifesciences.org/articles/61011

Gradeci, D., Bove, A., Vallardi, G., Lowe, A. R., Banerjee, S., & Charras, G. (2021). Cell-scale biophysical determinants of cell competition in epithelia. eLife, 10, e61011. #EpithelialMechanics
elifesciences.org/articles/61011
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Bohere, J., Eldridge-Thomas, B. L., & Kolahgar, G. (2022). Vinculin recruitment to α-catenin halts the differentiation and maturation of enterocyte progenitors to maintain homeostasis of the Drosophila intestine. eLife, 11, e72836. #EpithelialMechanics elifesciences.org/articles/72836

Bohere, J., Eldridge-Thomas, B. L., & Kolahgar, G. (2022). Vinculin recruitment to α-catenin halts the differentiation and maturation of enterocyte progenitors to maintain homeostasis of the Drosophila intestine. eLife, 11, e72836. #EpithelialMechanics
elifesciences.org/articles/72836
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Stapornwongkul, K. S., Hahn, E., Palau, L. S., ..., Eibisuya, M., & Trivedi, V. (2023). Metabolic control of germ layer proportions through regulation of Nodal and Wnt signalling #EpithelialMechanics bioRxiv. doi.org/10.1101/2023.1…

Stapornwongkul, K. S., Hahn, E., Palau, L. S., ..., Eibisuya, M., & Trivedi, V. (2023). Metabolic control of germ layer proportions through regulation of Nodal and Wnt signalling #EpithelialMechanics bioRxiv. doi.org/10.1101/2023.1…
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Mangeol, P., ..., & Lenne, P. F. (2024). The zonula adherens matura redefines the apical junction of intestinal epithelia. Proceedings of the National Academy of Sciences of the United States of America, 121(9), e2316722121. #EpithelialMechanics pnas.org/doi/10.1073/pn…

Mangeol, P., ..., & Lenne, P. F. (2024). The zonula adherens matura redefines the apical junction of intestinal epithelia. Proceedings of the National Academy of Sciences of the United States of America, 121(9), e2316722121. #EpithelialMechanics
pnas.org/doi/10.1073/pn…
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Hertaeg, M. J., Fielding, S. M., & Bi, D. (2024). Discontinuous Shear Thickening in Biological Tissue Rheology. Physical review. X, 14(1), 011027. #EpithelialMechanics journals.aps.org/prx/abstract/1…

Hertaeg, M. J., Fielding, S. M., & Bi, D. (2024). Discontinuous Shear Thickening in Biological Tissue Rheology. Physical review. X, 14(1), 011027. #EpithelialMechanics
journals.aps.org/prx/abstract/1…
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Roffay, C., Chan, C. J., Guirao, B., Hiiragi, T., & Graner, F. (2021). Inferring cell junction tension and pressure from cell geometry. Development (Cambridge, England), 148(18), dev192773. #EpithelialMechanicsReview journals.biologists.com/dev/article/14…

Roffay, C., Chan, C. J., Guirao, B., Hiiragi, T., & Graner, F. (2021). Inferring cell junction tension and pressure from cell geometry. Development (Cambridge, England), 148(18), dev192773. #EpithelialMechanicsReview
journals.biologists.com/dev/article/14…
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Tambe, D. T., Hardin, C. C., Angelini, T. E., Rajendran, K., Park, C. Y., Serra-Picamal, X., ..., Fredberg, J. J., & Trepat, X. (2011). Collective cell guidance by cooperative intercellular forces. Nature materials, 10(6), 469–475. #EpithelialMechanics nature.com/articles/nmat3…

Tambe, D. T., Hardin, C. C., Angelini, T. E., Rajendran, K., Park, C. Y., Serra-Picamal, X., ..., Fredberg, J. J., & Trepat, X. (2011). Collective cell guidance by cooperative intercellular forces. Nature materials, 10(6), 469–475. #EpithelialMechanics
nature.com/articles/nmat3…
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Acharya, B. R., Nestor-Bergmann, A., Liang, X., Gupta, S., Duszyc, K., ..., Bryant, Z., & Yap, A. S. (2018). A Mechanosensitive RhoA Pathway that Protects Epithelia against Acute Tensile Stress. Developmental cell, 47(4), 439–452.e6. #EpithelialMechanics buff.ly/nVqfI1F

Acharya, B. R., Nestor-Bergmann, A., Liang, X., Gupta, S., Duszyc, K., ..., Bryant, Z., & Yap, A. S. (2018). A Mechanosensitive RhoA Pathway that Protects Epithelia against Acute Tensile Stress. Developmental cell, 47(4), 439–452.e6. #EpithelialMechanics
buff.ly/nVqfI1F
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Huebner, R. J., ...., Thirumalai, D., & Wallingford, J. B. (2021). Mechanical heterogeneity along single cell-cell junctions is driven by lateral clustering of cadherins during vertebrate axis elongation. eLife, 10, e65390. #EpithelialMechanics buff.ly/dWm9scx

Huebner, R. J., ...., Thirumalai, D., & Wallingford, J. B. (2021). Mechanical heterogeneity along single cell-cell junctions is driven by lateral clustering of cadherins during vertebrate axis elongation. eLife, 10, e65390. #EpithelialMechanics
buff.ly/dWm9scx
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

van den Goor, L., ..., Koning, K. M., & Miller, A. L. (2024). Mechanosensitive recruitment of Vinculin maintains junction integrity and barrier function at epithelial tricellular junctions. Current biology : CB, 34(20), 4677–4691.e5. #EpithelialMechanics buff.ly/021gVuB

van den Goor, L., ..., Koning, K. M., & Miller, A. L. (2024). Mechanosensitive recruitment of Vinculin maintains junction integrity and barrier function at epithelial tricellular junctions. Current biology : CB, 34(20), 4677–4691.e5. #EpithelialMechanics
buff.ly/021gVuB
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Vanderleest, T. E., Smits, C. M., Xie, Y., ..., Blankenship, J. T., & Loerke, D. (2018). Vertex sliding drives intercalation by radial coupling of adhesion and actomyosin networks during Drosophila germband extension. eLife, 7, e34586. #EpithelialMechanics buff.ly/aTg1SKL

Vanderleest, T. E., Smits, C. M., Xie, Y., ..., Blankenship, J. T., & Loerke, D. (2018). Vertex sliding drives intercalation by radial coupling of adhesion and actomyosin networks during Drosophila germband extension. eLife, 7, e34586. #EpithelialMechanics
buff.ly/aTg1SKL
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Isasti-Sanchez, J., ..., Lancino, M.,& Luschnig, S. (2021). Transient opening of tricellular vertices controls paracellular transport through the follicle epithelium during Drosophila oogenesis. Developmental cell, 56(8), 1083–1099.e5. #EpithelialMechanics buff.ly/3EoLb20

Isasti-Sanchez, J., ..., Lancino, M.,& Luschnig, S. (2021). Transient opening of tricellular vertices controls paracellular transport through the follicle epithelium during Drosophila oogenesis. Developmental cell, 56(8), 1083–1099.e5. #EpithelialMechanics
buff.ly/3EoLb20
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Cavanaugh, K. E., Staddon, M. F., ...., Banerjee, S., & Gardel, M. L. (2022). Force-dependent intercellular adhesion strengthening underlies asymmetric adherens junction contraction. Current biology : CB, 32(9), 1986–2000.e5. #EpithelialMechanics buff.ly/wxBQOER

Cavanaugh, K. E., Staddon, M. F., ...., Banerjee, S., & Gardel, M. L. (2022). Force-dependent intercellular adhesion strengthening underlies asymmetric adherens junction contraction. Current biology : CB, 32(9), 1986–2000.e5. #EpithelialMechanics
buff.ly/wxBQOER
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Sugimura, K., & Otani, T. (2024). Vertex remodeling during epithelial morphogenesis. Current opinion in cell biology, 91, 102427. #EpithelialMechanicsReview buff.ly/6tsggqm

Sugimura, K., & Otani, T. (2024). Vertex remodeling during epithelial morphogenesis. Current opinion in cell biology, 91, 102427. #EpithelialMechanicsReview
buff.ly/6tsggqm
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Higashi, T., & Miller, A. L. (2017). Tricellular junctions: how to build junctions at the TRICkiest points of epithelial cells. Molecular biology of the cell, 28(15), 2023–2034. #EpithelialMechanicsReview buff.ly/6YN1Yb3

Higashi, T., & Miller, A. L. (2017). Tricellular junctions: how to build junctions at the TRICkiest points of epithelial cells. Molecular biology of the cell, 28(15), 2023–2034. #EpithelialMechanicsReview
buff.ly/6YN1Yb3
epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

Taneja, N., Moubarak, M. F., McGovern, M. J., Yeoh, K., Zallen, J. A. (2025). Actin crosslinking is required for force sensing at tricellular junctions. bioRxiv 2025.02.21.639590. #EpithelialMechanics buff.ly/qsXV3jr

Taneja, N., Moubarak, M. F., McGovern, M. J., Yeoh, K.,  Zallen, J. A. (2025). Actin crosslinking is required for force sensing at tricellular junctions. bioRxiv 2025.02.21.639590. #EpithelialMechanics 
buff.ly/qsXV3jr