Biodegradable and biocompatible synthetic polymers for applications in bone and muscle tissue engineering

Pratik Tawade, Nimisha Tondapurkar, A. Jangale
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引用次数: 1

Abstract

In medicine, tissue engineering has made significant advances. Using tissue engineering techniques, transplant treatments result in less donor site morbidity and need fewer surgeries overall. It is now possible to create cell-supporting scaffolds that degrade as new tissue grows on them, replacing them until complete body function is restored. Synthetic polymers have been a significant area of study for biodegradable scaffolds due to their ability to provide customizable biodegradable and mechanical features as well as a low immunogenic effect due to biocompatibility. The food and drug administration has given the biodegradable polymers widespread approval after they showed their reliability. In the context of tissue engineering, this paper aims to deliver an overview of the area of biodegradable and biocompatible synthetic polymers. Frequently used synthetic biodegradable polymers utilized in tissue scaffolding, scaffold specifications, polymer synthesis, degradation factors, as well as fabrication methods are discussed. In order to emphasize the many desired properties and corresponding needs for skeletal muscle and bone, particular examples of synthetic polymer scaffolds are investigated. Increased biocompatibility, functionality and clinical applications will be made possible by further studies into novel polymer and scaffold fabrication approaches.  
用于骨和肌肉组织工程的可生物降解和生物相容性合成聚合物
在医学上,组织工程已经取得了重大进展。使用组织工程技术,移植治疗导致更少的供体部位发病率和需要更少的手术。现在有可能制造出支持细胞的支架,当新组织在其上生长时,支架会降解,并替换它们,直到身体功能完全恢复。合成聚合物已成为生物可降解支架研究的重要领域,因为它们能够提供可定制的生物可降解和机械特性,以及由于生物相容性而产生的低免疫原性效应。在生物可降解聚合物表现出其可靠性后,食品和药物管理局已经给予了广泛的认可。在组织工程的背景下,本文旨在提供生物可降解和生物相容性合成聚合物领域的概述。讨论了组织支架中常用的合成生物可降解聚合物、支架规格、聚合物合成、降解因素以及制备方法。为了强调骨骼肌和骨骼的许多期望性能和相应的需求,研究了合成聚合物支架的具体实例。通过对新型聚合物和支架制造方法的进一步研究,提高生物相容性、功能性和临床应用将成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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