Exosome-loaded hydrogels for craniofacial bone tissue regeneration.

Xiaojie Liu, Chang Liu, Qingquan Lin, Ting Shi, Guanying Liu
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Abstract

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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用于颅面骨组织再生的外泌体负载水凝胶。
恶性肿瘤和外伤导致颅颌面骨质严重退化的情况很常见,这会使患者的外观和功能出现并发症。针对移植手术的并发症和弊端,新兴的组织再生领域已显示出良好的前景。组织工程技术及其在颅面区域的应用正日益受到重视,而且术后风险和成本有限。间充质干细胞衍生的外泌体被广泛应用于骨组织工程(BTE),提供无细胞疗法,因为它们不仅不会像细胞那样引起免疫排斥反应,还能发挥类似细胞的作用。此外,水凝胶系统是一系列多用途平台,由交联聚合物制成,具有相当高的含水量、出色的生物相容性和可调的理化特性,能有效地输送商品。因此,有前景的外泌体负载水凝胶可设计用于颅颌面骨再生。本综述列举了外泌体和水凝胶的包装技术,并讨论了生物相容性水凝胶系统的开发及其用于颅面骨愈合的外泌体连续输送的潜力。
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