颅面
自愈水凝胶
微泡
再生(生物学)
外体
组织工程
生物相容性
材料科学
生物医学工程
颅面外科
骨愈合
骨组织
骨移植
纳米技术
医学
细胞生物学
牙科
生物
外科
小RNA
生物化学
精神科
高分子化学
基因
冶金
作者
Xiaojie Liu,Бо Лю,Qingquan Lin,Ting Shi,Guanying Liu
标识
DOI:10.1088/1748-605x/ad525c
摘要
It is common for maladies and trauma to cause significant bone deterioration in the craniofacial bone, which can cause patients to experience complications with their appearance and their ability to function. Regarding grafting procedures' complications and disadvantages, the newly emerging field of tissue regeneration has shown promise. Tissue -engineered technologies and their applications in the craniofacial region are increasingly gaining prominence with limited postoperative risk and cost. MSCs-derived exosomes are widely applied in bone tissue engineering to provide cell-free therapies since they not only do not cause immunological rejection in the same way that cells do, but they can also perform a cell-like role. Additionally, the hydrogel system is a family of multipurpose platforms made of cross-linked polymers with considerable water content, outstanding biocompatibility, and tunable physiochemical properties for the efficient delivery of commodities. Therefore, the promising exosome-loaded hydrogels can be designed for craniofacial bone regeneration. This review lists the packaging techniques for exosomes and hydrogel and discusses the development of a biocompatible hydrogel system and its potential for exosome continuous delivery for craniofacial bone healing.
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