Li Xuebing, Li Luohuizi, Wang Dehui, Zhang Jun, Yi Kangfeng, Su Yucai, Luo Jing, Deng Xu, Deng Fei
Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, 611731, P. R. China.
State Key Laboratory of Military Stomatology & National Clinical Research Center for Oral Diseases, Department of Oral and Maxillofacial Surgery, School of Stomatology, The Fourth Military Medical University, Xi'an, 710032, P. R. China.
Mater Horiz. 2024 Jun 17;11(12):2820-2855. doi: 10.1039/d3mh01641b.
Polymeric microspheres (PMs) have attracted great attention in the field of biomedicine in the last several decades due to their small particle size, special functionalities shown on the surface and high surface-to-volume ratio. However, how to fabricate PMs which can meet the clinical needs and transform laboratory achievements to industrial scale-up still remains a challenge. Therefore, advanced fabrication technologies are pursued. In this review, we summarize the technologies used to fabricate PMs, including emulsion-based methods, microfluidics, spray drying, coacervation, supercritical fluid and superhydrophobic surface-mediated method and their advantages and disadvantages. We also review the different structures, properties and functions of the PMs and their applications in the fields of drug delivery, cell encapsulation and expansion, scaffolds in tissue engineering, transcatheter arterial embolization and artificial cells. Moreover, we discuss existing challenges and future perspectives for advancing fabrication technologies and biomedical applications of PMs.
在过去几十年中,聚合物微球(PMs)因其粒径小、表面呈现的特殊功能以及高比表面积而在生物医学领域备受关注。然而,如何制造出能够满足临床需求并将实验室成果转化为工业规模化生产的聚合物微球仍然是一项挑战。因此,人们一直在探索先进的制造技术。在这篇综述中,我们总结了用于制造聚合物微球的技术,包括基于乳液的方法、微流控技术、喷雾干燥、凝聚法、超临界流体和超疏水表面介导法及其优缺点。我们还综述了聚合物微球的不同结构、性质和功能及其在药物递送、细胞封装与扩增、组织工程支架、经导管动脉栓塞和人工细胞等领域的应用。此外,我们讨论了推进聚合物微球制造技术和生物医学应用方面存在的挑战和未来前景。