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组织工程应用中的生物材料及该领域的最新进展:全面综述。

Biomaterials for Tissue Engineering Applications and Current Updates in the Field: A Comprehensive Review.

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Kasr El-Aini Street, Cairo, 11562, Egypt.

出版信息

AAPS PharmSciTech. 2022 Sep 26;23(7):267. doi: 10.1208/s12249-022-02419-1.

Abstract

Tissue engineering has emerged as an interesting field nowadays; it focuses on accelerating the auto-healing mechanism of tissues rather than organ transplantation. It involves implanting an In Vitro cultured initiative tissue or a scaffold loaded with tissue regenerating ingredients at the damaged area. Both techniques are based on the use of biodegradable, biocompatible polymers as scaffolding materials which are either derived from natural (e.g. alginates, celluloses, and zein) or synthetic sources (e.g. PLGA, PCL, and PLA). This review discusses in detail the recent applications of different biomaterials in tissue engineering highlighting the targeted tissues besides the in vitro and in vivo key findings. As well, smart biomaterials (e.g. chitosan) are fascinating candidates in the field as they are capable of elucidating a chemical or physical transformation as response to external stimuli (e.g. temperature, pH, magnetic or electric fields). Recent trends in tissue engineering are summarized in this review highlighting the use of stem cells, 3D printing techniques, and the most recent 4D printing approach which relies on the use of smart biomaterials to produce a dynamic scaffold resembling the natural tissue. Furthermore, the application of advanced tissue engineering techniques provides hope for the researchers to recognize COVID-19/host interaction, also, it presents a promising solution to rejuvenate the destroyed lung tissues.

摘要

组织工程学目前已成为一个热门领域,主要专注于加速组织的自动修复机制,而非器官移植。该领域涉及在受损部位植入体外培养的主动组织或负载组织再生成分的支架。这两种技术都基于使用可生物降解、生物相容的聚合物作为支架材料,这些材料要么来自天然(如藻酸盐、纤维素和玉米醇溶蛋白),要么来自合成来源(如 PLGA、PCL 和 PLA)。本综述详细讨论了不同生物材料在组织工程中的最新应用,突出了针对特定组织的应用,同时还介绍了体外和体内的关键发现。此外,智能生物材料(如壳聚糖)作为该领域的热门候选材料,能够对外部刺激(如温度、pH 值、磁场或电场)做出化学或物理转化。本综述总结了组织工程学的最新趋势,强调了干细胞的应用、3D 打印技术以及最新的 4D 打印方法,该方法依赖于智能生物材料来制造类似于天然组织的动态支架。此外,先进的组织工程技术的应用为研究人员提供了认识新冠病毒/宿主相互作用的希望,同时也为修复受损的肺部组织提供了一个有前景的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2fe/9512992/68e1dddc5b9e/12249_2022_2419_Fig1_HTML.jpg

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