Liu Lubin, Liu Wei, Han Zeyu, Shan Yansheng, Xie Yutong, Wang Jialu, Qi Hongzhao, Xu Quanchen
Department of Stomatology, The Affiliated Hospital of Qingdao University, Qingdao, 266003, China.
School of Stomatology, Qingdao University, Qingdao, 266023, China.
Bioact Mater. 2024 Oct 23;44:283-318. doi: 10.1016/j.bioactmat.2024.10.017. eCollection 2025 Feb.
Regenerative medicine endeavors to restore damaged tissues and organs utilizing biological approaches. Utilizing biomaterials to target and regulate the pathophysiological processes of injured tissues stands as a crucial method in propelling this field forward. The Extracellular Vesicles-in-Hydrogel (EViH) system amalgamates the advantages of extracellular vesicles (EVs) and hydrogels, rendering it a prominent biomaterial in regenerative medicine with substantial potential for clinical translation. This review elucidates the development and benefits of the EViH system in tissue regeneration, emphasizing the interaction and impact of EVs and hydrogels. Furthermore, it succinctly outlines the pathophysiological characteristics of various types of tissue injuries such as wounds, bone and cartilage injuries, cardiovascular diseases, nerve injuries, as well as liver and kidney injuries, underscoring how EViH systems target these processes to address related tissue damage. Lastly, it explores the challenges and prospects in further advancing EViH-based tissue regeneration, aiming to impart a comprehensive understanding of EViH. The objective is to furnish a thorough overview of EViH in enhancing regenerative medicine applications and to inspire researchers to devise innovative tissue engineering materials for regenerative medicine.
再生医学致力于利用生物学方法修复受损组织和器官。利用生物材料靶向和调节受损组织的病理生理过程是推动该领域发展的关键方法。水凝胶包裹细胞外囊泡(EViH)系统融合了细胞外囊泡(EVs)和水凝胶的优点,使其成为再生医学中一种具有显著临床转化潜力的重要生物材料。本综述阐述了EViH系统在组织再生中的发展和优势,强调了EVs与水凝胶的相互作用和影响。此外,还简要概述了各种类型组织损伤的病理生理特征,如伤口、骨和软骨损伤、心血管疾病、神经损伤以及肝和肾损伤,强调了EViH系统如何针对这些过程来解决相关组织损伤。最后,探讨了进一步推进基于EViH的组织再生所面临的挑战和前景,旨在全面了解EViH。目的是全面概述EViH在增强再生医学应用方面的情况,并激励研究人员为再生医学设计创新的组织工程材料。