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细胞外基质作为原位组织再生的生物活性材料

Extracellular Matrices as Bioactive Materials for In Situ Tissue Regeneration.

作者信息

Zhao Peng, Yang Fengbo, Jia Xiaoli, Xiao Yuqin, Hua Chao, Xing Malcolm, Lyu Guozhong

机构信息

Burn & Trauma Treatment Center, Affiliated Hospital of Jiangnan University, Wuxi 214122, China.

Engineering Research Center of the Ministry of Education for Wound Repair Technology, Jiangnan University, Affiliated Hospital of Jiangnan University, Wuxi 214000, China.

出版信息

Pharmaceutics. 2023 Dec 13;15(12):2771. doi: 10.3390/pharmaceutics15122771.

Abstract

Bioactive materials based on a nature-derived extracellular matrix (NECM) represent a category of biomedical devices with versatile therapeutic applications in the realms of tissue repair and engineering. With advancements in decellularization technique, the inherent bioactive molecules and the innate nano-structural and mechanical properties are preserved in three-dimensional scaffolds mainly composed of collagens. Techniques such as electrospinning, three-dimensional printing, and the intricate fabrication of hydrogels are developed to mimic the physical structures, biosignalling and mechanical cues of ECM. Until now, there has been no approach that can fully account for the multifaceted properties and diverse applications of NECM. In this review, we introduce the main proteins composing NECMs and explicate the importance of them when used as therapeutic devices in tissue repair. Nano-structural features of NECM and their applications regarding tissue repair are summarized. The origins, degradability, and mechanical property of and immune responses to NECM are also introduced. Furthermore, we review their applications, and clinical features thereof, in the repair of acute and chronic wounds, abdominal hernia, breast deformity, etc. Some typical marketed devices based on NECM, their indications, and clinical relevance are summarized.

摘要

基于天然衍生细胞外基质(NECM)的生物活性材料是一类生物医学装置,在组织修复和工程领域具有广泛的治疗应用。随着去细胞技术的进步,固有生物活性分子以及固有的纳米结构和机械性能被保留在主要由胶原蛋白组成的三维支架中。静电纺丝、三维打印和水凝胶的精细制造等技术被开发出来,以模拟细胞外基质的物理结构、生物信号传导和机械信号。到目前为止,还没有一种方法能够充分解释NECM的多方面特性和多样应用。在这篇综述中,我们介绍了构成NECM的主要蛋白质,并阐述了它们在用作组织修复治疗装置时的重要性。总结了NECM的纳米结构特征及其在组织修复方面的应用。还介绍了NECM的起源、可降解性、机械性能以及对其的免疫反应。此外,我们综述了它们在急性和慢性伤口修复、腹壁疝、乳房畸形等方面的应用及其临床特征。总结了一些基于NECM的典型上市装置、它们的适应症和临床相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9143/10747903/3cc4b300f5ac/pharmaceutics-15-02771-g001.jpg

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