Li Qian, Chang Bei, Dong He, Liu Xiaohua
Department of Biomedical Sciences, School of Dentistry, Texas A&M University, Dallas, TX, 75246, USA.
Department of Chemistry and Biochemistry, The University of Texas at Arlington, Arlington, TX, 76019, USA.
Bioact Mater. 2022 Aug 9;25:485-499. doi: 10.1016/j.bioactmat.2022.07.025. eCollection 2023 Jul.
As a new type of injectable biomaterials, functional microspheres have attracted increasing attention in tissue regeneration because they possess some advantageous properties compared to other biomaterials, including hydrogels. A variety of bio-inspired microspheres with unique structures and properties have been developed as cellular carriers and drug delivery vehicles in recent years. In this review, we provide a comprehensive summary of the progress of functional and biodegradable microspheres that have been used for tissue regeneration over the last two decades. First, we briefly introduce the biomaterials and general methods for microsphere fabrication. Next, we focus on the newly developed technologies for preparing functional microspheres, including macroporous microspheres, nanofibrous microspheres, hollow microspheres, core-shell structured microspheres, and surface-modified functional microspheres. After that, we discuss the application of functional microspheres for tissue regeneration, specifically for bone, cartilage, dental, neural, cardiac, and skin tissue regeneration. Last, we present our perspectives and future directions of functional microspheres as injectable carriers for the future advancement of tissue regeneration.
作为一种新型的可注射生物材料,功能性微球在组织再生领域受到了越来越多的关注,因为与包括水凝胶在内的其他生物材料相比,它们具有一些优势特性。近年来,已经开发出了多种具有独特结构和性能的仿生微球,作为细胞载体和药物递送载体。在这篇综述中,我们全面总结了过去二十年来用于组织再生的功能性和可生物降解微球的进展。首先,我们简要介绍了生物材料和微球制备的一般方法。接下来,我们重点介绍新开发的制备功能性微球的技术,包括大孔微球、纳米纤维微球、中空微球、核壳结构微球和表面改性功能性微球。之后,我们讨论功能性微球在组织再生中的应用,特别是在骨、软骨、牙科、神经、心脏和皮肤组织再生方面的应用。最后,我们阐述了功能性微球作为可注射载体在组织再生未来发展中的前景和未来方向。