Xia Qing, Zhang Yongtai, Li Zhe, Hou Xuefeng, Feng Nianping
Department of Pharmaceutical Sciences, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.
Acta Pharm Sin B. 2019 Jul;9(4):675-689. doi: 10.1016/j.apsb.2019.01.011. Epub 2019 Jan 24.
Erythrocytes (red blood cells, RBCs) are the most abundant circulating cells in the blood and have been widely used in drug delivery systems (DDS) because of their features of biocompatibility, biodegradability, and long circulating half-life. Accordingly, a "camouflage" comprised of erythrocyte membranes renders nanoparticles as a platform that combines the advantages of native erythrocyte membranes with those of nanomaterials. Following injection into the blood of animal models, the coated nanoparticles imitate RBCs and interact with the surroundings to achieve long-term circulation. In this review, the biomimetic platform of erythrocyte membrane-coated nano-cores is described with regard to various aspects, with particular focus placed on the coating mechanism, preparation methods, verification methods, and the latest anti-tumor applications. Finally, further functional modifications of the erythrocyte membranes and attempts to fuse the surface properties of multiple cell membranes are discussed, providing a foundation to stimulate extensive research into multifunctional nano-biomimetic systems.
红细胞(红血球,RBCs)是血液中最丰富的循环细胞,由于其具有生物相容性、可生物降解性和较长的循环半衰期等特性,已被广泛应用于药物递送系统(DDS)。因此,由红细胞膜组成的“伪装”使纳米颗粒成为一个结合了天然红细胞膜和纳米材料优势的平台。将包覆后的纳米颗粒注射到动物模型的血液中后,它们会模仿红细胞并与周围环境相互作用,以实现长期循环。在这篇综述中,从各个方面描述了红细胞膜包覆纳米核的仿生平台,特别关注了包覆机制、制备方法、验证方法以及最新的抗肿瘤应用。最后,讨论了红细胞膜的进一步功能修饰以及融合多种细胞膜表面特性的尝试,为推动对多功能纳米仿生系统的广泛研究奠定了基础。