透明质酸水凝胶用于声带伤口愈合。

Biomatter Pub Date : 2013-01-01 DOI:10.4161/biom.23799
Joel Gaston, Susan L Thibeault
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引用次数: 55

摘要

人类声带固有的独特振动特性对伤口愈合和疤痕形成有显著的不利影响。水凝胶作为一种组织工程策略,在细胞含量低的情况下恢复正常的声带结构和功能。频繁的振动和剪切力作用于这种结缔组织,并且存在于这种结缔组织中,使得这种水凝胶的机械性能成为这一活跃研究领域的重点。透明质酸已通过多种方式进行化学修饰,以解决细胞功能问题,同时保持理想的组织力学性能。当注射到体内时,这些不同的修饰有不同的结果,通常会产生更好的生物力学功能,但不一定伴随组织纤维化的减少。最近的研究重点是在交联水凝胶的三维结构中播种间充质祖细胞。这些研究的数据表明,这种方法对早期和晚期伤口愈合的细胞都有积极的影响,但关于这些治疗的生物力学效应的工作很少。本文综述了各种透明质酸衍生物及其交联剂,以及它们在植入各种动物声带中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hyaluronic acid hydrogels for vocal fold wound healing.

Hyaluronic acid hydrogels for vocal fold wound healing.

Hyaluronic acid hydrogels for vocal fold wound healing.

Hyaluronic acid hydrogels for vocal fold wound healing.

The unique vibrational properties inherent to the human vocal fold have a significant detrimental impact on wound healing and scar formation. Hydrogels have taken prominence as a tissue engineered strategy to restore normal vocal structure and function as cellularity is low. The frequent vibrational and shear forces applied to, and present in this connective tissue make mechanical properties of such hydrogels a priority in this active area of research. Hyaluronic acid has been chemically modified in a variety of ways to address cell function while maintaining desirable tissue mechanical properties. These various modifications have had mixed results when injected in vivo typically resulting in better biomechanical function but not necessarily with a concomitant decrease in tissue fibrosis. Recent work has focused on seeding mesenchymal progenitor cells within 3D architecture of crosslinked hydrogels. The data from these studies demonstrate that this approach has a positive effect on cells in both early and late wound healing, but little work has been done regarding the biomechanical effects of these treatments. This paper provides an overview of the various hyaluronic acid derivatives, their crosslinking agents, and their effect when implanted into the vocal folds of various animal models.

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