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再生医学中的可生物降解聚氨酯支架:临床转化综述。

Biodegradable polyurethane scaffolds in regenerative medicine: Clinical translation review.

机构信息

McGowan Institute for Regenerative Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Department of Bioengineering, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

J Biomed Mater Res A. 2022 Aug;110(8):1460-1487. doi: 10.1002/jbm.a.37394. Epub 2022 Apr 28.

Abstract

Early explorations of tissue engineering and regenerative medicine concepts commonly utilized simple polyesters such as polyglycolide, polylactide, and their copolymers as scaffolds. These biomaterials were deemed clinically acceptable, readily accessible, and provided processability and a generally known biological response. With experience and refinement of approaches, greater control of material properties and integrated bioactivity has received emphasis and a broadened palette of synthetic biomaterials has been employed. Biodegradable polyurethanes (PUs) have emerged as an attractive option for synthetic scaffolds in a variety of tissue applications because of their flexibility in molecular design and ability to fulfill mechanical property objectives, particularly in soft tissue applications. Biodegradable PUs are highly customizable based on their composition and processability to impart tailored mechanical and degradation behavior. Additionally, bioactive agents can be readily incorporated into these scaffolds to drive a desired biological response. Enthusiasm for biodegradable PU scaffolds has soared in recent years, leading to rapid growth in the literature documenting novel PU chemistries, scaffold designs, mechanical properties, and aspects of biocompatibility. Despite the enthusiasm in the field, there are still few examples of biodegradable PU scaffolds that have achieved regulatory approval and routine clinical use. However, there is a growing literature where biodegradable PU scaffolds are being specifically developed for a wide range of pathologies and where relevant pre-clinical models are being employed. The purpose of this review is first to highlight examples of clinically used biodegradable PU scaffolds, and then to summarize the growing body of reports on pre-clinical applications of biodegradable PU scaffolds.

摘要

早期的组织工程和再生医学概念的探索通常使用简单的聚酯,如聚乙醇酸、聚乳酸及其共聚物作为支架。这些生物材料被认为是临床可接受的、易于获得的,并提供了可加工性和通常已知的生物学反应。随着经验的积累和方法的改进,人们更加重视对材料性能的更精确控制,并采用了更广泛的合成生物材料。可生物降解的聚氨酯(PU)因其在分子设计上的灵活性和满足机械性能目标的能力,特别是在软组织应用中,已成为各种组织应用中合成支架的一种有吸引力的选择。可生物降解的 PU 可根据其组成和可加工性进行高度定制,以赋予其所需的机械和降解性能。此外,生物活性剂可以很容易地掺入这些支架中,以引发所需的生物学反应。近年来,人们对可生物降解的 PU 支架的热情高涨,导致有关新型 PU 化学、支架设计、机械性能和生物相容性方面的文献迅速增加。尽管该领域的热情很高,但仍有少数可生物降解的 PU 支架获得监管批准并常规用于临床。然而,越来越多的文献表明,可生物降解的 PU 支架正在为广泛的病理情况专门开发,并且正在使用相关的临床前模型。本文的目的首先是强调临床应用的可生物降解的 PU 支架的实例,然后总结关于可生物降解的 PU 支架临床前应用的不断增长的报告。

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