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Fiber-reinforced scaffolds in soft tissue engineering

机译:软组织工程中的纤维增强支架

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摘要

Soft tissue engineering has been developed as a new strategy for repairing damaged or diseased soft tissues and organs to overcome the limitations of current therapies. Since most of soft tissues in the human body are usually supported by collagen fibers to form a three-dimensional microstructure, fiber-reinforced scaffolds have the advantage to mimic the structure, mechanical and biological environment of natural soft tissues, which benefits for their regeneration and remodeling. This article reviews and discusses the latest research advances on design and manufacture of novel fiber-reinforced scaffolds for soft tissue repair and how fiber addition affects their structural characteristics, mechanical strength and biological activities in vitro and in vivo. In general, the concept of fiber-reinforced scaffolds with adjustable microstructures, mechanical properties and degradation rates can provide an effective platform and promising method for developing satisfactory biomechanically functional implantations for soft tissue engineering or regenerative medicine.
机译:软组织工程学已被开发为修复受损或患病的软组织和器官以克服当前疗法的局限性的新策略。由于人体大多数软组织通常由胶原纤维支撑以形成三维微观结构,因此纤维增强支架具有模仿天然软组织的结构,机械和生物学环境的优势,这有利于它们的再生和再生。重塑。本文回顾并讨论了设计和制造用于软组织修复的新型纤维增强支架的最新研究进展,以及纤维的添加如何在体外和体内影响其结构特征,机械强度和生物学活性。通常,具有可调节的微结构,机械性能和降解速率的纤维增强支架的概念可以为开发令人满意的用于软组织工程或再生医学的生物力学功能植入物提供有效的平台和有希望的方法。

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