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基于3D电纺纳米纤维的支架:从制备、性能到组织再生应用

3D Electrospun Nanofiber-Based Scaffolds: From Preparations and Properties to Tissue Regeneration Applications.

作者信息

Han Shanshan, Nie Kexin, Li Jingchao, Sun Qingqing, Wang Xiaofeng, Li Xiaomeng, Li Qian

机构信息

School of Mechanics and Safety Engineering, Zhengzhou University, Zhengzhou 450001, China.

National Center for International Joint Research of Micro-nano Moulding Technology, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Stem Cells Int. 2021 Jun 17;2021:8790143. doi: 10.1155/2021/8790143. eCollection 2021.

Abstract

Electrospun nanofibers have been frequently used for tissue engineering due to their morphological similarities with the extracellular matrix (ECM) and tunable chemical and physical properties for regulating cell behaviors and functions. However, most of the existing electrospun nanofibers have a closely packed two-dimensional (2D) membrane with the intrinsic shortcomings of limited cellular infiltration, restricted nutrition diffusion, and unsatisfied thickness. Three-dimensional (3D) electrospun nanofiber-based scaffolds can provide stem cells with 3D microenvironments and biomimetic fibrous structures. Thus, they have been demonstrated to be good candidates for repair of different tissues. This review summarizes the recent developments in 3D electrospun nanofiber-based scaffolds (ENF-S) for tissue engineering. Three types of 3D ENF-S fabricated using different approaches classified into electrospun nanofiber 3D scaffolds, electrospun nanofiber/hydrogel composite 3D scaffolds, and electrospun nanofiber/porous matrix composite 3D scaffolds are discussed. New functions for these 3D ENF-S and properties, such as facilitated cell infiltration, 3D fibrous architecture, enhanced mechanical properties, and tunable degradability, meeting the requirements of tissue engineering scaffolds were discovered. The applications of 3D ENF-S in cartilage, bone, tendon, ligament, skeletal muscle, nerve, and cardiac tissue regeneration are then presented with a discussion of current challenges and future directions. Finally, we give summaries and future perspectives of 3D ENF-S in tissue engineering and clinical transformation.

摘要

由于静电纺纳米纤维在形态上与细胞外基质(ECM)相似,且其化学和物理性质可调节以调控细胞行为和功能,因此在组织工程中得到了广泛应用。然而,现有的大多数静电纺纳米纤维都具有紧密堆积的二维(2D)膜结构,存在细胞浸润受限、营养物质扩散受阻以及厚度不理想等固有缺点。基于三维(3D)静电纺纳米纤维的支架可为干细胞提供三维微环境和仿生纤维结构。因此,它们已被证明是修复不同组织的理想候选材料。本文综述了基于三维静电纺纳米纤维的组织工程支架(ENF-S)的最新研究进展。讨论了通过不同方法制备的三种类型的三维ENF-S,分别为静电纺纳米纤维三维支架、静电纺纳米纤维/水凝胶复合三维支架以及静电纺纳米纤维/多孔基质复合三维支架。发现了这些三维ENF-S具有促进细胞浸润、三维纤维结构、增强的机械性能以及可调节的降解性等新功能和特性,满足了组织工程支架的要求。随后介绍了三维ENF-S在软骨、骨、肌腱、韧带、骨骼肌、神经和心脏组织再生中的应用,并讨论了当前面临的挑战和未来的发展方向。最后,我们对三维ENF-S在组织工程和临床转化方面进行了总结和展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5184/8225450/4bf2d2b45b40/SCI2021-8790143.001.jpg

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