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拉伸的幅度和持续时间调节成纤维细胞重塑。

Magnitude and duration of stretch modulate fibroblast remodeling.

作者信息

Balestrini Jenna L, Billiar Kristen L

机构信息

Departments of Biomedical Engineering and Mechanical Engineering, Worcester Polytechnic University, Worcester, MA 01609-2280, USA.

出版信息

J Biomech Eng. 2009 May;131(5):051005. doi: 10.1115/1.3049527.

Abstract

Mechanical cues modulate fibroblast tractional forces and remodeling of extracellular matrix in healthy tissue, healing wounds, and engineered matrices. The goal of the present study is to establish dose-response relationships between stretch parameters (magnitude and duration per day) and matrix remodeling metrics (compaction, strength, extensibility, collagen content, contraction, and cellularity). Cyclic equibiaxial stretch of 2-16% was applied to fibroblast-populated fibrin gels for either 6 h or 24 h/day for 8 days. Trends in matrix remodeling metrics as a function of stretch magnitude and duration were analyzed using regression analysis. The compaction and ultimate tensile strength of the tissues increased in a dose-dependent manner with increasing stretch magnitude, yet remained unaffected by the duration in which they were cycled (6 h/day versus 24 h/day). Collagen density increased exponentially as a function of both the magnitude and duration of stretch, with samples stretched for the reduced duration per day having the highest levels of collagen accumulation. Cell number and failure tension were also dependent on both the magnitude and duration of stretch, although stretch-induced increases in these metrics were only present in the samples loaded for 6 h/day. Our results indicate that both the magnitude and the duration per day of stretch are critical parameters in modulating fibroblast remodeling of the extracellular matrix, and that these two factors regulate different aspects of this remodeling. These findings move us one step closer to fully characterizing culture conditions for tissue equivalents, developing improved wound healing treatments and understanding tissue responses to changes in mechanical environments during growth, repair, and disease states.

摘要

机械信号调节健康组织、愈合伤口和工程化基质中,成纤维细胞的牵引力以及细胞外基质的重塑。本研究的目的是建立拉伸参数(每天的幅度和持续时间)与基质重塑指标(压实度、强度、延展性、胶原蛋白含量、收缩和细胞密度)之间的剂量反应关系。对接种有成纤维细胞的纤维蛋白凝胶施加2%-16%的循环双轴拉伸,每天拉伸6小时或24小时,持续8天。使用回归分析来分析基质重塑指标随拉伸幅度和持续时间的变化趋势。组织的压实度和极限拉伸强度随拉伸幅度增加呈剂量依赖性增加,但不受循环拉伸持续时间(每天6小时与24小时)的影响。胶原蛋白密度随拉伸幅度和持续时间呈指数增加,每天拉伸持续时间较短的样本胶原蛋白积累水平最高。细胞数量和破坏张力也取决于拉伸幅度和持续时间,不过拉伸引起的这些指标增加仅在每天加载6小时的样本中出现。我们的结果表明,拉伸幅度和每天的持续时间都是调节成纤维细胞对细胞外基质重塑的关键参数,且这两个因素调节这种重塑的不同方面。这些发现使我们在全面表征组织等效物的培养条件、开发改进的伤口愈合治疗方法以及理解组织在生长、修复和疾病状态下对机械环境变化的反应方面又迈进了一步。

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