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Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy

Over the last decades, several techniques have been developed to study cell adhesion; however, they present significant shortcomings. Such techniques mostly focus on strong adhesion related to specific protein-protein associations, such as ligand-receptor binding in focal adhesions. Therefore, weak...

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Autores principales: El Arawi, Dalia, Vézy, Cyrille, Déturche, Régis, Lehmann, Maxime, Kessler, Horst, Dontenwill, Monique, Jaffiol, Rodolphe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9680782/
https://www.ncbi.nlm.nih.gov/pubmed/36425460
http://dx.doi.org/10.1016/j.bpr.2021.100021
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author El Arawi, Dalia
Vézy, Cyrille
Déturche, Régis
Lehmann, Maxime
Kessler, Horst
Dontenwill, Monique
Jaffiol, Rodolphe
author_facet El Arawi, Dalia
Vézy, Cyrille
Déturche, Régis
Lehmann, Maxime
Kessler, Horst
Dontenwill, Monique
Jaffiol, Rodolphe
author_sort El Arawi, Dalia
collection PubMed
description Over the last decades, several techniques have been developed to study cell adhesion; however, they present significant shortcomings. Such techniques mostly focus on strong adhesion related to specific protein-protein associations, such as ligand-receptor binding in focal adhesions. Therefore, weak adhesion, related to less specific or nonspecific cell-substrate interactions, are rarely addressed. Hence, we propose in this work a complete investigation of cell adhesion, from highly specific to nonspecific adhesiveness, using variable-angle total internal reflection fluorescence (vaTIRF) nanoscopy. This technique allows us to map in real time cell topography with a nanometric axial resolution, along with cell cortex refractive index. These two key parameters allow us to distinguish high and low adhesive cell-substrate contacts. Furthermore, vaTIRF provides cell-substrate binding energy, thus revealing a correlation between cell contractility and cell-substrate binding energy. Here, we highlight the quantitative measurements achieved by vaTIRF on U87MG glioma cells expressing different amounts of α(5) integrins and distinct motility on fibronectin. Regarding integrin expression level, data extracted from vaTIRF measurements, such as the number and size of high adhesive contacts per cell, corroborate the adhesiveness of U87MG cells as intended. Interestingly enough, we found that cells overexpressing α(5) integrins present a higher contractility and lower adhesion energy.
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spelling pubmed-96807822022-11-23 Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy El Arawi, Dalia Vézy, Cyrille Déturche, Régis Lehmann, Maxime Kessler, Horst Dontenwill, Monique Jaffiol, Rodolphe Biophys Rep (N Y) Article Over the last decades, several techniques have been developed to study cell adhesion; however, they present significant shortcomings. Such techniques mostly focus on strong adhesion related to specific protein-protein associations, such as ligand-receptor binding in focal adhesions. Therefore, weak adhesion, related to less specific or nonspecific cell-substrate interactions, are rarely addressed. Hence, we propose in this work a complete investigation of cell adhesion, from highly specific to nonspecific adhesiveness, using variable-angle total internal reflection fluorescence (vaTIRF) nanoscopy. This technique allows us to map in real time cell topography with a nanometric axial resolution, along with cell cortex refractive index. These two key parameters allow us to distinguish high and low adhesive cell-substrate contacts. Furthermore, vaTIRF provides cell-substrate binding energy, thus revealing a correlation between cell contractility and cell-substrate binding energy. Here, we highlight the quantitative measurements achieved by vaTIRF on U87MG glioma cells expressing different amounts of α(5) integrins and distinct motility on fibronectin. Regarding integrin expression level, data extracted from vaTIRF measurements, such as the number and size of high adhesive contacts per cell, corroborate the adhesiveness of U87MG cells as intended. Interestingly enough, we found that cells overexpressing α(5) integrins present a higher contractility and lower adhesion energy. Elsevier 2021-09-10 /pmc/articles/PMC9680782/ /pubmed/36425460 http://dx.doi.org/10.1016/j.bpr.2021.100021 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
El Arawi, Dalia
Vézy, Cyrille
Déturche, Régis
Lehmann, Maxime
Kessler, Horst
Dontenwill, Monique
Jaffiol, Rodolphe
Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy
title Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy
title_full Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy
title_fullStr Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy
title_full_unstemmed Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy
title_short Advanced quantification for single-cell adhesion by variable-angle TIRF nanoscopy
title_sort advanced quantification for single-cell adhesion by variable-angle tirf nanoscopy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9680782/
https://www.ncbi.nlm.nih.gov/pubmed/36425460
http://dx.doi.org/10.1016/j.bpr.2021.100021
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