Red blood cell membrane-camouflaged nanoparticles: a novel drug delivery system for antitumor application

Наночастицы, замаскированные мембранами эритроцитов: новая система доставки лекарственных средств для противоопухолевого применения
Yongtai Zhang, Nianping Feng, Qing Xia, Zhe Li, Xuefeng Hou
2019-01-27

antitumor drug deliverybiomimetic drug deliveryerythrocyte membrane-coated nanoparticleslong-circulating nanoparticlesnano-biomimetic systems
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.
1
Erythrocyte membrane coatings combine native RBC biocompatibility, biodegradability, and long circulation with the functional advantages of nanoparticles.
2
Erythrocyte membrane-camouflaged nanoparticles show promise as antitumor drug delivery platforms.
3
Further membrane functionalization and fusion of multiple cell-membrane properties may enable multifunctional biomimetic nanocarriers.
4
Membrane-camouflaged nanoparticles imitate red blood cells after bloodstream injection, enabling prolonged circulation and interactions with the biological environment.
5
The review summarizes coating mechanisms, preparation techniques, and verification methods for erythrocyte membrane-coated nanocarriers.

erythrocyte membrane-coated nanoparticles as biomimetic drug delivery systems

the coating mechanism, preparation and verification methods, circulation behavior, and antitumor applications of erythrocyte membrane-coated nanoparticles

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2019-01-27
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Yongtai Zhang
Nianping Feng
Qing Xia
Zhe Li
Xuefeng Hou
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