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用于声带固有层的组织工程疗法。

Tissue engineering therapies for the vocal fold lamina propria.

作者信息

Kutty Jaishankar K, Webb Ken

机构信息

MicroEnvironmental Engineering Laboratory, Department of Bioengineering, Clemson University, Clemson, South Carolina 29634, USA.

出版信息

Tissue Eng Part B Rev. 2009 Sep;15(3):249-62. doi: 10.1089/ten.TEB.2008.0588.

Abstract

The vocal folds are laryngeal connective tissues with complex matrix composition/organization that provide the viscoelastic mechanical properties required for voice production. Vocal fold injury results in alterations in tissue structure and corresponding changes in tissue biomechanics that reduce vocal quality. Recent work has begun to elucidate the biochemical changes underlying injury-induced pathology and to apply tissue engineering principles to the prevention and reversal of vocal fold scarring. Based on the extensive history of injectable biomaterials in laryngeal surgery, a major focus of regenerative therapies has been the development of novel scaffolds with controlled in vivo residence time and viscoelastic properties approximating the native tissue. Additional strategies have included cell transplantation and delivery of the antifibrotic cytokine hepatocyte growth factor, as well as investigation of the effects of the unique vocal fold vibratory microenvironment using in vitro dynamic culture systems. Recent achievements of significant reductions in fibrosis and improved recovery of native tissue viscoelasticity and vibratory/functional performance in animal models are rapidly moving vocal fold tissue engineering toward clinical application.

摘要

声带是具有复杂基质组成/结构的喉结缔组织,可提供发声所需的粘弹性力学特性。声带损伤会导致组织结构改变以及组织生物力学的相应变化,从而降低嗓音质量。最近的研究已开始阐明损伤诱导病理背后的生化变化,并将组织工程原理应用于声带瘢痕形成的预防和逆转。基于可注射生物材料在喉手术中的悠久历史,再生疗法的一个主要重点是开发具有可控体内停留时间和接近天然组织粘弹性特性的新型支架。其他策略包括细胞移植和抗纤维化细胞因子肝细胞生长因子的递送,以及使用体外动态培养系统研究独特的声带振动微环境的影响。动物模型中纤维化显著减少以及天然组织粘弹性和振动/功能性能恢复改善的最新成果正在迅速推动声带组织工程走向临床应用。

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