Department of Oral Biology, College of Dentistry, University of Illinois Chicago, Chicago, IL 60612, USA.
School of Dentistry, Virginia Commonwealth University, Richmond, VA 23298, USA.
Cells. 2022 Sep 13;11(18):2851. doi: 10.3390/cells11182851.
In this review, we will discuss the current status of extracellular vesicle (EV) delivery via biopolymeric scaffolds for therapeutic applications and the challenges associated with the development of these functionalized scaffolds. EVs are cell-derived membranous structures and are involved in many physiological processes. Naïve and engineered EVs have much therapeutic potential, but proper delivery systems are required to prevent non-specific and off-target effects. Targeted and site-specific delivery using polymeric scaffolds can address these limitations. EV delivery with scaffolds has shown improvements in tissue remodeling, wound healing, bone healing, immunomodulation, and vascular performance. Thus, EV delivery via biopolymeric scaffolds is becoming an increasingly popular approach to tissue engineering. Although there are many types of natural and synthetic biopolymers, the overarching goal for many tissue engineers is to utilize biopolymers to restore defects and function as well as support host regeneration. Functionalizing biopolymers by incorporating EVs works toward this goal. Throughout this review, we will characterize extracellular vesicles, examine various biopolymers as a vehicle for EV delivery for therapeutic purposes, potential mechanisms by which EVs exert their effects, EV delivery for tissue repair and immunomodulation, and the challenges associated with the use of EVs in scaffolds.
在这篇综述中,我们将讨论通过生物聚合物支架传递细胞外囊泡 (EV) 用于治疗应用的现状,以及开发这些功能化支架所面临的挑战。EV 是细胞来源的膜状结构,参与许多生理过程。天然和工程化的 EV 具有很大的治疗潜力,但需要适当的传递系统来防止非特异性和脱靶效应。使用聚合物支架进行靶向和定点传递可以解决这些限制。支架介导的 EV 传递已显示出在组织重塑、伤口愈合、骨愈合、免疫调节和血管功能方面的改善。因此,通过生物聚合物支架传递 EV 正成为组织工程中越来越受欢迎的方法。尽管有许多类型的天然和合成生物聚合物,但许多组织工程师的总体目标是利用生物聚合物来修复缺陷和功能,并支持宿主再生。通过将 EV 掺入生物聚合物中来实现功能化。在整篇综述中,我们将描述细胞外囊泡,研究各种生物聚合物作为 EV 传递载体用于治疗目的,EV 发挥作用的潜在机制,EV 传递用于组织修复和免疫调节,以及与使用 EV 相关的挑战在支架中。