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Electrospun Collagen Nanofibers and Their Applications in Skin Tissue Engineering

机译:电纺胶原纳米纤维及其在皮肤组织工程中的应用

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摘要

Electrospinning is a simple and versatile technique to fabricate continuous fibers with diameter ranging from micrometers to a few nanometers. To date, the number of polymers that have been electrospun has exceeded 200. In recent years, electrospinning has become one of the most popular scaffold fabrication techniques to prepare nanofiber mesh for tissue engineering applications. Collagen, the most abundant extracellular matrix protein in the human body, has been electrospun to fabricate biomimetic scaffolds that imitate the architecture of native human tissues. As collagen nanofibers are mechanically weak in nature, it is commonly cross-linked or blended with synthetic polymers to improve the mechanical strength without compromising the biological activity. Electrospun collagen nanofiber mesh has high surface area to volume ratio, tunable diameter and porosity, and excellent biological activity to regulate cell function and tissue formation. Due to these advantages, collagen nanofibers have been tested for the regeneration of a myriad of tissues and organs. In this review, we gave an overview of electrospinning, encompassing the history, the instrument settings, the spinning process and the parameters that affect fiber formation, with emphasis given to collagen nanofibers’ fabrication and application, especially the use of collagen nanofibers in skin tissue engineering. Electronic supplementary materialThe online version of this article (doi:10.1007/s13770-017-0075-9) contains supplementary material, which is available to authorized users.
机译:电纺丝是一种简单而通用的技术,用于制造直径范围从微米到几纳米的连续纤维。迄今为止,静电纺丝的聚合物数量已超过200种。近年来,静电纺丝已成为制备用于组织工程应用的纳米纤维网的最受欢迎的支架制造技术之一。胶原蛋白是人体中最丰富的细胞外基质蛋白,已经进行了静电纺丝,以制造模仿天然人体组织结构的仿生支架。由于胶原蛋白纳米纤维的机械性质较弱,因此通常将其交联或与合成聚合物共混以提高机械强度而不损害生物活性。电纺胶原蛋白纳米纤维网具有高的表面积与体积之比,可调节的直径和孔隙率以及出色的生物活性,可调节细胞功能和组织形成。由于这些优点,已经测试了胶原纳米纤维对多种组织和器官的再生。在这篇综述中,我们对静电纺丝进行了概述,涵盖了历史,仪器设置,纺丝过程和影响纤维形成的参数,重点是胶原纳米纤维的制造和应用,尤其是胶原纳米纤维在皮肤组织中的使用。工程。电子补充材料本文的在线版本(doi:10.1007 / s13770-017-0075-9)包含补充材料,授权用户可以使用。

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