组织再生的细胞外囊泡输送系统:分子水平上的材料设计

A. Chen, Heng-Song Tian, Nana Yang, Zhi-jun Zhang, Guo-Yuan Yang, W. Cui, Yaohui Tang
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引用次数: 2

摘要

组织工程中细胞外囊泡的发现和发展为组织再生治疗显示了巨大的潜力。然而,它们的囊泡性质需要剂量依赖的给药和与受体细胞的有效相互作用。研究人员已经利用生物材料将细胞外囊泡定位和持续地递送到目标细胞,但材料的设计却没有得到太多的重视,这深刻影响了它们与负载的细胞外囊泡的分子相互作用和随后的递送。因此,我们在这篇综述中从分子水平材料设计的角度对细胞外囊泡传递系统进行了全面的综述。我们从材料的一般要求开始,深入研究不同设计导致的输送系统的不同特性,从材料选择到加工策略。基于这些差异,我们在有代表性的研究中分析了细胞外囊泡传递和组织再生的性能。鉴于目前材料结构、物理化学性质和递送性能之间关系的缺失环节,我们提供了材料与细胞外囊泡相互作用以及材料可能扩展的观点。本综述旨在为细胞外囊泡传递系统的未来设计提供战略启示,以促进其从基础科学到临床应用的转化。
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Towards extracellular vesicle delivery systems for tissue regeneration: material design at the molecular level
The discovery and development of extracellular vesicles in tissue engineering have shown great potential for tissue regenerative therapies. However, their vesicle nature requires dosage-dependent administration and efficient interactions with recipient cells. Researchers have resorted to biomaterials for localized and sustained delivery of extracellular vesicles to the targeted cells, but not much emphasis has been paid on the design of the materials, which deeply impacts their molecular interactions with the loaded extracellular vesicles and subsequent delivery. Therefore, we present in this review a comprehensive survey of extracellular vesicle delivery systems from the viewpoint of material design at the molecular level. We start with general requirements of the materials and delve into different properties of delivery systems as a result of different designs, from material selections to processing strategies. Based on these differences, we analyzed the performance of extracellular vesicle delivery and tissue regeneration in representative studies. In light of the current missing links within the relationship of material structures, physicochemical properties and delivery performances, we provide perspectives on the interactions of materials and extracellular vesicles and the possible extension of materials. This review aims to be a strategic enlightenment for the future design of extracellular vesicle delivery systems to facilitate their translation from basic science to clinical applications.
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