School of Pharmacy Shanghai Jiao Tong University 800, Dongchuan Road, 200240, Shanghai, China.
School of Pharmacy Shanghai Jiao Tong University 800, Dongchuan Road, 200240, Shanghai, China.
Biomaterials. 2021 Dec;279:121202. doi: 10.1016/j.biomaterials.2021.121202. Epub 2021 Oct 22.
Red blood cells (RBCs) are biocompatible carriers that can be employed to deliver different bioactive substances. In the past few decades, many strategies have been developed to encapsulate or attach drugs to RBCs. Osmotic-based encapsulation methods have been industrialized recently, and some encapsulated RBC formulations have reached the clinical stage for treating tumors and neurological diseases. Inspired by the intrinsic properties of intact RBCs, some advanced delivery strategies have also been proposed. These delivery systems combine RBCs with other novel systems to further exploit and expand the application of RBCs. This review summarizes the clinical progress of drugs encapsulated into intact RBCs, focusing on the loading and clinical trials. It also introduces the latest advanced research based on developing prospects and limitations of intact RBCs drug delivery system (DDS), hoping to provide a reference for related research fields and further application potential of intact RBCs based drug delivery system.
红细胞(RBCs)是生物相容性载体,可用于递送不同的生物活性物质。在过去的几十年中,已经开发出许多将药物包封或附着到 RBCs 的策略。基于渗透的包封方法最近已经产业化,一些包封的 RBC 制剂已经进入治疗肿瘤和神经疾病的临床阶段。受完整 RBC 固有特性的启发,也提出了一些先进的递送策略。这些递送系统将 RBCs 与其他新型系统相结合,以进一步开发和扩大 RBCs 的应用。本综述总结了包封到完整 RBCs 中的药物的临床进展,重点介绍了装载和临床试验。它还介绍了基于完整 RBCs 药物递送系统(DDS)的发展前景和局限性的最新先进研究,希望为相关研究领域和完整 RBCs 基于药物递送系统的进一步应用潜力提供参考。