Shape memory polymers in osteochondral tissue engineering

S. Saghati, R. Rahbarghazi, Sonia Fathi Karkan, Sajed Nazifkerdar, A. Khoshfetrat, Hamid Tayefi Nasrabadi
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引用次数: 0

Abstract

Bone and cartilage injuries are significantly increasing with population aging. Tissue engineering is considered an alternative and promising approach for alleviating osteochondral tissue injuries along with available therapeutic modalities. 3D- and 4D-printing fabrication protocols have been used to facilitate the production of bone/cartilage scaffolds that are similar to bone and cartilage microenvironments. In this regard, advanced biomaterials, including smart polymers and stimuli-responsive polymers are the first essential elements for improved bone/cartilage regeneration. Shape-memory polymers, are stimuli-responsive materials and are available in permanent and temporary structures. The application of shape-memory scaffolds can lead to providing in vivo-like conditions and improve cell bioactivity and phenotype acquisition. In this review article, we tried to highlight stimuli-responsive polymers and their application in osteochondral tissue engineering.
形状记忆聚合物在骨软骨组织工程中的应用
随着人口老龄化,骨和软骨损伤显著增加。组织工程被认为是一种替代的和有前途的方法来减轻骨软骨组织损伤和现有的治疗方式。3D和4d打印制造协议已被用于促进类似于骨和软骨微环境的骨/软骨支架的生产。在这方面,先进的生物材料,包括智能聚合物和刺激响应聚合物是改善骨/软骨再生的首要要素。形状记忆聚合物是一种刺激响应材料,可用于永久性和临时结构。形状记忆支架的应用可以提供体内样条件,提高细胞的生物活性和表型获取。本文就刺激反应聚合物及其在骨软骨组织工程中的应用作一综述。
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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