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本文引用的文献

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FUNCTIONAL COUPLING OF VALVULAR INTERSTITIAL CELLS AND COLLAGEN VIA αβ INTEGRINS IN THE MITRAL LEAFLET.二尖瓣叶中瓣膜间质细胞与胶原蛋白通过αβ整合素的功能偶联
Cell Mol Bioeng. 2010 Dec;3(4):428-437. doi: 10.1007/s12195-010-0139-6. Epub 2010 Aug 25.
2
Network Modeling Approach to Predict Myofibroblast Differentiation.预测肌成纤维细胞分化的网络建模方法
Cell Mol Bioeng. 2014 Sep;7(3):446-459. doi: 10.1007/s12195-014-0344-9. Epub 2014 Jul 6.
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Mechanosensitive Ion Channels in Cardiovascular Physiology.心血管生理学中的机械敏感离子通道
Exp Clin Cardiol. 2014;20(10):6550-6560. Epub 2014 Oct 29.
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[Expression of cadherin-11 in rheumatoid arthritis synovium and its correlation with inflammation].[钙黏蛋白-11在类风湿性关节炎滑膜中的表达及其与炎症的相关性]
Xi Bao Yu Fen Zi Mian Yi Xue Za Zhi. 2014 Dec;30(12):1295-9.
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Beta 1 integrin binding plays a role in the constant traction force generation in response to varying stiffness for cells grown on mature cardiac extracellular matrix.β1整合素结合在成熟心脏细胞外基质上生长的细胞响应不同硬度产生恒定牵引力的过程中发挥作用。
Exp Cell Res. 2015 Jan 15;330(2):311-324. doi: 10.1016/j.yexcr.2014.09.007. Epub 2014 Sep 16.
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Disentangling the multifactorial contributions of fibronectin, collagen and cyclic strain on MMP expression and extracellular matrix remodeling by fibroblasts.解析纤连蛋白、胶原蛋白和周期性应变对成纤维细胞基质金属蛋白酶表达及细胞外基质重塑的多因素作用。
Matrix Biol. 2014 Nov;40:62-72. doi: 10.1016/j.matbio.2014.09.001. Epub 2014 Sep 11.
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Meshless deformable models for 3D cardiac motion and strain analysis from tagged MRI.用于基于标记磁共振成像的三维心脏运动和应变分析的无网格可变形模型
Magn Reson Imaging. 2015 Jan;33(1):146-60. doi: 10.1016/j.mri.2014.08.007. Epub 2014 Aug 23.
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Force-dependent conformational switch of α-catenin controls vinculin binding.力依赖性α-连环蛋白构象开关控制着与纽蛋白的结合。
Nat Commun. 2014 Jul 31;5:4525. doi: 10.1038/ncomms5525.
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Cadherin adhesion and mechanotransduction.钙黏蛋白黏附和机械转导。
Annu Rev Cell Dev Biol. 2014;30:291-315. doi: 10.1146/annurev-cellbio-100913-013212. Epub 2014 Jul 9.
10
Roles of transforming growth factor-β1 and OB-cadherin in porcine cardiac valve myofibroblast differentiation.转化生长因子-β1 和 OB-钙黏蛋白在猪心脏瓣膜成纤维细胞分化中的作用。
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纤维化性心脏病中肌成纤维细胞黏附的力学生物学

Mechanobiology of myofibroblast adhesion in fibrotic cardiac disease.

作者信息

Schroer Alison K, Merryman W David

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville, TN 37212, USA.

Department of Biomedical Engineering, Vanderbilt University, Nashville, TN 37212, USA

出版信息

J Cell Sci. 2015 May 15;128(10):1865-75. doi: 10.1242/jcs.162891. Epub 2015 Apr 27.

DOI:10.1242/jcs.162891
PMID:25918124
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4457157/
Abstract

Fibrotic cardiac disease, a leading cause of death worldwide, manifests as substantial loss of function following maladaptive tissue remodeling. Fibrosis can affect both the heart valves and the myocardium and is characterized by the activation of fibroblasts and accumulation of extracellular matrix. Valvular interstitial cells and cardiac fibroblasts, the cell types responsible for maintenance of cardiac extracellular matrix, are sensitive to changing mechanical environments, and their ability to sense and respond to mechanical forces determines both normal development and the progression of disease. Recent studies have uncovered specific adhesion proteins and mechano-sensitive signaling pathways that contribute to the progression of fibrosis. Integrins form adhesions with the extracellular matrix, and respond to changes in substrate stiffness and extracellular matrix composition. Cadherins mechanically link neighboring cells and are likely to contribute to fibrotic disease propagation. Finally, transition to the active myofibroblast phenotype leads to maladaptive tissue remodeling and enhanced mechanotransductive signaling, forming a positive feedback loop that contributes to heart failure. This Commentary summarizes recent findings on the role of mechanotransduction through integrins and cadherins to perpetuate mechanically induced differentiation and fibrosis in the context of cardiac disease.

摘要

纤维化性心脏病是全球主要死因之一,表现为适应性不良的组织重塑后功能大幅丧失。纤维化可影响心脏瓣膜和心肌,其特征是成纤维细胞激活和细胞外基质积聚。负责维持心脏细胞外基质的瓣膜间质细胞和心脏成纤维细胞对不断变化的机械环境敏感,它们感知和响应机械力的能力决定了正常发育和疾病进展。最近的研究发现了导致纤维化进展的特定粘附蛋白和机械敏感信号通路。整合素与细胞外基质形成粘附,并对底物硬度和细胞外基质组成的变化做出反应。钙粘蛋白在机械上连接相邻细胞,可能促进纤维化疾病的传播。最后,向活跃的肌成纤维细胞表型转变会导致适应性不良的组织重塑和增强的机械转导信号,形成一个促进心力衰竭的正反馈回路。本评论总结了最近关于在心脏病背景下通过整合素和钙粘蛋白进行机械转导以维持机械诱导的分化和纤维化作用的研究发现。