Literature DB >> 23587631

Integrin αv mediates contractility whereas integrin α4 regulates proliferation of human bladder smooth muscle cells via FAK pathway under physiological stretch.

De-Yi Luo1, Romel Wazir, Ye Tian, Xuan Yue, Tang-Qiang Wei, Kun-Jie Wang.   

Abstract

PURPOSE: The requirement of integrins for mechanotransduction has been recognized for some time. We investigated the role of integrin subunits and their pathway in the physiological stretch induced contractility and proliferation of human bladder smooth muscle cells.
MATERIALS AND METHODS: Human bladder smooth muscle cells were seeded on silicone membrane and subjected to stretch, simulating bladder cycles of various stretches and times, as controlled by customized software on a modified BioDynamic bioreactor. Cell proliferation, viability and cycle were determined by BrdU incorporation assay, the Cell Counting Kit-8 (Beyotime Institute of Biotechnology, Haimen, People's Republic of China) and flow cytometry, respectively. Cell contractility was determined using a collagen gel contraction assay.
RESULTS: Physiological stretch increased cell contractility, proliferation and viability. Knockdown of integrin αv but not α4 in the cells disrupted the enhanced contractility induced by stretch. Under physiological stretch conditions, the integrin αv level and phospho-FAK/FAK ratio correlated positively with cell stretch induced enhanced contractility. Further examination revealed that contractile marker expression was associated with integrin αv activation through the FAK pathway. At the same time integrin α4 but not integrin αv mediated stretch induced cell proliferation and viability.
CONCLUSIONS: These data revealed that different integrins have different roles in the contractility and proliferation of human bladder smooth muscle cells under physiological stretch. This suggests that different integrins may become specific therapeutic targets in patients with voiding dysfunction. They may also be used to design a specific microenvironment for optimal bladder tissue regeneration.
Copyright © 2013 American Urological Association Education and Research, Inc. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  5-bromo-2′-deoxyuridine; BSMC; BrdU; DMEM; Dulbecco's modified Eagle's medium; FAK; GAPDH; HBSMC; PBS; PCR; RNA interference; RNAi; SM; bladder SM cell; cellular; focal adhesion kinase; glyceraldehyde-3-dehydrogenase; human BSMC; integrins; mechanotransduction; muscle; muscle contraction; p-FAK; phosphate buffered saline; phospho-FAK; polymerase chain reaction; siRNA; small interfering RNA; smooth; smooth muscle; urinary bladder

Mesh:

Substances:

Year:  2013        PMID: 23587631     DOI: 10.1016/j.juro.2013.04.027

Source DB:  PubMed          Journal:  J Urol        ISSN: 0022-5347            Impact factor:   7.450


  11 in total

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Journal:  Inflammation       Date:  2018-10       Impact factor: 4.092

2.  Identification of key genes and construction of microRNA-mRNA regulatory networks in bladder smooth muscle cell response to mechanical stimuli using microarray expression profiles and bioinformatics analysis.

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3.  A role for focal adhesion kinase in facilitating the contractile responses of murine gastric fundus smooth muscles.

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4.  Simulated physiological stretch increases expression of extracellular matrix proteins in human bladder smooth muscle cells via integrin α4/αv-FAK-ERK1/2 signaling pathway.

Authors:  Shulian Chen; Chuandu Peng; Xin Wei; Deyi Luo; Yifei Lin; Tongxin Yang; Xi Jin; Lina Gong; Hong Li; Kunjie Wang
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5.  MicroRNA 4323 induces human bladder smooth muscle cell proliferation under cyclic hydrodynamic pressure by activation of erk1/2 signaling pathway.

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Review 8.  Research advances on structure and biological functions of integrins.

Authors:  Li Pan; Yuan Zhao; Zhijie Yuan; Guixin Qin
Journal:  Springerplus       Date:  2016-07-15

9.  MiR 3180-5p promotes proliferation in human bladder smooth muscle cell by targeting PODN under hydrodynamic pressure.

Authors:  Yi Sun; De-Yi Luo; Yu-Chun Zhu; Liang Zhou; Tong-Xin Yang; Cai Tang; Hong Shen; Kun-Jie Wang
Journal:  Sci Rep       Date:  2016-09-09       Impact factor: 4.379

10.  Hydrostatic Compress Force Enhances the Viability and Decreases the Apoptosis of Condylar Chondrocytes through Integrin-FAK-ERK/PI3K Pathway.

Authors:  Dandan Ma; Xiaoxing Kou; Jing Jin; Taotao Xu; Mengjie Wu; Liquan Deng; Lusi Fu; Yi Liu; Gang Wu; Haiping Lu
Journal:  Int J Mol Sci       Date:  2016-11-07       Impact factor: 5.923

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