Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity
10.1038/ncomms13998
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sg-nus-scholar.10635-1797412023-09-20T08:43:02Z Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity Salomon, J Gaston, C Magescas, J Duvauchelle, B Canioni, D Sengmanivong, L Mayeux, A Michaux, G Campeotto, F Lemale, J Viala, J Poirier, F Minc, N Schmitz, J Brousse, N Ladoux, B Goulet, O Delacour, D BIOLOGY (NU) epithelial cell adhesion molecule myosin adenosine triphosphatase myosin II short hairpin RNA EPCAM protein, human epithelial cell adhesion molecule myosin adenosine triphosphatase adhesion cells and cell components inhibitor morphogenesis pathology polarization translocation adolescent Article Caco-2 cell line cell contractility cell expansion cell function cell maturation cell membrane permeability cell structure child congenital tufting enteropathy controlled study enteropathy epithelium cell gene silencing human human tissue infant intestine biopsy intestine brush border intestine epithelium pathogenesis biomechanics cell polarity chemistry cytology epithelium epithelium cell female genetics infantile diarrhea intestine cell malabsorption male metabolism preschool child tight junction Animalia Actomyosin Adolescent Biomechanical Phenomena Caco-2 Cells Cell Polarity Child Child, Preschool Diarrhea, Infantile Enterocytes Epithelial Cell Adhesion Molecule Epithelial Cells Epithelium Female Humans Infant Malabsorption Syndromes Male Tight Junctions 10.1038/ncomms13998 Nature Communications 8 13998 2020-10-26T02:52:22Z 2020-10-26T02:52:22Z 2017 Article Salomon, J, Gaston, C, Magescas, J, Duvauchelle, B, Canioni, D, Sengmanivong, L, Mayeux, A, Michaux, G, Campeotto, F, Lemale, J, Viala, J, Poirier, F, Minc, N, Schmitz, J, Brousse, N, Ladoux, B, Goulet, O, Delacour, D (2017). Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity. Nature Communications 8 : 13998. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms13998 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/179741 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031 |
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epithelial cell adhesion molecule myosin adenosine triphosphatase myosin II short hairpin RNA EPCAM protein, human epithelial cell adhesion molecule myosin adenosine triphosphatase adhesion cells and cell components inhibitor morphogenesis pathology polarization translocation adolescent Article Caco-2 cell line cell contractility cell expansion cell function cell maturation cell membrane permeability cell structure child congenital tufting enteropathy controlled study enteropathy epithelium cell gene silencing human human tissue infant intestine biopsy intestine brush border intestine epithelium pathogenesis biomechanics cell polarity chemistry cytology epithelium epithelium cell female genetics infantile diarrhea intestine cell malabsorption male metabolism preschool child tight junction Animalia Actomyosin Adolescent Biomechanical Phenomena Caco-2 Cells Cell Polarity Child Child, Preschool Diarrhea, Infantile Enterocytes Epithelial Cell Adhesion Molecule Epithelial Cells Epithelium Female Humans Infant Malabsorption Syndromes Male Tight Junctions |
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epithelial cell adhesion molecule myosin adenosine triphosphatase myosin II short hairpin RNA EPCAM protein, human epithelial cell adhesion molecule myosin adenosine triphosphatase adhesion cells and cell components inhibitor morphogenesis pathology polarization translocation adolescent Article Caco-2 cell line cell contractility cell expansion cell function cell maturation cell membrane permeability cell structure child congenital tufting enteropathy controlled study enteropathy epithelium cell gene silencing human human tissue infant intestine biopsy intestine brush border intestine epithelium pathogenesis biomechanics cell polarity chemistry cytology epithelium epithelium cell female genetics infantile diarrhea intestine cell malabsorption male metabolism preschool child tight junction Animalia Actomyosin Adolescent Biomechanical Phenomena Caco-2 Cells Cell Polarity Child Child, Preschool Diarrhea, Infantile Enterocytes Epithelial Cell Adhesion Molecule Epithelial Cells Epithelium Female Humans Infant Malabsorption Syndromes Male Tight Junctions Salomon, J Gaston, C Magescas, J Duvauchelle, B Canioni, D Sengmanivong, L Mayeux, A Michaux, G Campeotto, F Lemale, J Viala, J Poirier, F Minc, N Schmitz, J Brousse, N Ladoux, B Goulet, O Delacour, D Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
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10.1038/ncomms13998 |
author2 |
BIOLOGY (NU) |
author_facet |
BIOLOGY (NU) Salomon, J Gaston, C Magescas, J Duvauchelle, B Canioni, D Sengmanivong, L Mayeux, A Michaux, G Campeotto, F Lemale, J Viala, J Poirier, F Minc, N Schmitz, J Brousse, N Ladoux, B Goulet, O Delacour, D |
format |
Article |
author |
Salomon, J Gaston, C Magescas, J Duvauchelle, B Canioni, D Sengmanivong, L Mayeux, A Michaux, G Campeotto, F Lemale, J Viala, J Poirier, F Minc, N Schmitz, J Brousse, N Ladoux, B Goulet, O Delacour, D |
author_sort |
Salomon, J |
title |
Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
title_short |
Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
title_full |
Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
title_fullStr |
Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
title_full_unstemmed |
Contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
title_sort |
contractile forces at tricellular contacts modulate epithelial organization and monolayer integrity |
publisher |
Nature Publishing Group |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/179741 |
_version_ |
1779152553249865728 |