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Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery

Cells are continuously sensing their microenvironment and subsequently respond to different physicochemical cues by the activation or inhibition of different signaling pathways. To study a very complex cellular response, it is necessary to diminish background environmental influences and highlight t...

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Autores principales: Víšová, Ivana, Smolková, Barbora, Uzhytchak, Mariia, Vrabcová, Markéta, Chafai, Djamel Eddine, Houska, Milan, Pastucha, Matěj, Skládal, Petr, Farka, Zdeněk, Dejneka, Alexandr, Vaisocherová-Lísalová, Hana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464033/
https://www.ncbi.nlm.nih.gov/pubmed/32764330
http://dx.doi.org/10.3390/biom10081146
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author Víšová, Ivana
Smolková, Barbora
Uzhytchak, Mariia
Vrabcová, Markéta
Chafai, Djamel Eddine
Houska, Milan
Pastucha, Matěj
Skládal, Petr
Farka, Zdeněk
Dejneka, Alexandr
Vaisocherová-Lísalová, Hana
author_facet Víšová, Ivana
Smolková, Barbora
Uzhytchak, Mariia
Vrabcová, Markéta
Chafai, Djamel Eddine
Houska, Milan
Pastucha, Matěj
Skládal, Petr
Farka, Zdeněk
Dejneka, Alexandr
Vaisocherová-Lísalová, Hana
author_sort Víšová, Ivana
collection PubMed
description Cells are continuously sensing their microenvironment and subsequently respond to different physicochemical cues by the activation or inhibition of different signaling pathways. To study a very complex cellular response, it is necessary to diminish background environmental influences and highlight the particular event. However, surface-driven nonspecific interactions of the abundant biomolecules from the environment influence the targeted cell response significantly. Yes-associated protein (YAP) translocation may serve as a marker of human hepatocellular carcinoma (Huh7) cell responses to the extracellular matrix and surface-mediated stresses. Here, we propose a platform of tunable functionable antifouling poly(carboxybetain) (pCB)-based brushes to achieve a molecularly clean background for studying arginine, glycine, and aspartic acid (RGD)-induced YAP-connected mechanotransduction. Using two different sets of RGD-functionalized zwitterionic antifouling coatings with varying compositions of the antifouling layer, a clear correlation of YAP distribution with RGD functionalization concentrations was observed. On the other hand, commonly used surface passivation by the oligo(ethylene glycol)-based self-assembled monolayer (SAM) shows no potential to induce dependency of the YAP distribution on RGD concentrations. The results indicate that the antifouling background is a crucial component of surface-based cellular response studies, and pCB-based zwitterionic antifouling brush architectures may serve as a potential next-generation easily functionable surface platform for the monitoring and quantification of cellular processes.
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spelling pubmed-74640332020-09-04 Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery Víšová, Ivana Smolková, Barbora Uzhytchak, Mariia Vrabcová, Markéta Chafai, Djamel Eddine Houska, Milan Pastucha, Matěj Skládal, Petr Farka, Zdeněk Dejneka, Alexandr Vaisocherová-Lísalová, Hana Biomolecules Article Cells are continuously sensing their microenvironment and subsequently respond to different physicochemical cues by the activation or inhibition of different signaling pathways. To study a very complex cellular response, it is necessary to diminish background environmental influences and highlight the particular event. However, surface-driven nonspecific interactions of the abundant biomolecules from the environment influence the targeted cell response significantly. Yes-associated protein (YAP) translocation may serve as a marker of human hepatocellular carcinoma (Huh7) cell responses to the extracellular matrix and surface-mediated stresses. Here, we propose a platform of tunable functionable antifouling poly(carboxybetain) (pCB)-based brushes to achieve a molecularly clean background for studying arginine, glycine, and aspartic acid (RGD)-induced YAP-connected mechanotransduction. Using two different sets of RGD-functionalized zwitterionic antifouling coatings with varying compositions of the antifouling layer, a clear correlation of YAP distribution with RGD functionalization concentrations was observed. On the other hand, commonly used surface passivation by the oligo(ethylene glycol)-based self-assembled monolayer (SAM) shows no potential to induce dependency of the YAP distribution on RGD concentrations. The results indicate that the antifouling background is a crucial component of surface-based cellular response studies, and pCB-based zwitterionic antifouling brush architectures may serve as a potential next-generation easily functionable surface platform for the monitoring and quantification of cellular processes. MDPI 2020-08-05 /pmc/articles/PMC7464033/ /pubmed/32764330 http://dx.doi.org/10.3390/biom10081146 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Víšová, Ivana
Smolková, Barbora
Uzhytchak, Mariia
Vrabcová, Markéta
Chafai, Djamel Eddine
Houska, Milan
Pastucha, Matěj
Skládal, Petr
Farka, Zdeněk
Dejneka, Alexandr
Vaisocherová-Lísalová, Hana
Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery
title Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery
title_full Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery
title_fullStr Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery
title_full_unstemmed Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery
title_short Functionalizable Antifouling Coatings as Tunable Platforms for the Stress-Driven Manipulation of Living Cell Machinery
title_sort functionalizable antifouling coatings as tunable platforms for the stress-driven manipulation of living cell machinery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464033/
https://www.ncbi.nlm.nih.gov/pubmed/32764330
http://dx.doi.org/10.3390/biom10081146
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