Precise control of embolic stroke with magnetized red blood cells in mice

Author:

Jin YuxiaoORCID,Shi Peijun,Wang Yu,Li JinghangORCID,Zhang Jiachen,Zhao Xinxin,Ge Yaping,Huang Yanjie,Guo Mengzhun,Wang Feidi,Ci Bo,Xiao Xian,Gao Xiaofei,Xu Jianrong,Dang BoboORCID,Ji BotaoORCID,Ge Woo-pingORCID,Jia Jie-MinORCID

Abstract

AbstractPrecise embolism control in immature brains can facilitate mechanistic studies of brain damage and repair after perinatal arterial ischemic stroke (PAIS), but it remains a technical challenge. Microhemorrhagic transformation is observed in one-third of infant patients who have suffered PAIS, but the underlying mechanism remains elusive. Building on an established approach that uses magnetic nanoparticles to induce PAIS, we develop a more advanced approach that utilizes magnetized erythrocytes to precisely manipulate de novo and in situ embolus formation and reperfusion in perinatal rodent brains. This approach grants spatiotemporal control of embolic stroke without any transarterial delivery of pre-formed emboli. Transmission electron microscopy revealed that erythrocytes rather than nanoparticles are the main material obstructing the vessels. Both approaches can induce microbleeds as an age-dependent complication; this complication can be prevented by microglia and macrophage depletion. Thus, this study provides an animal model mimicking perinatal embolic stroke and implies a potential therapeutic strategy for the treatment of perinatal stroke.

Funder

Natural Science Foundation of Zhejiang Province

National Natural Science Foundation of China

1. Startup funding from Westlake University in Hangzhou, China 2. Fundings from Westlake Education Foundation 2. MRIC (Multidisciplinary Research Initiative Center) of Westlake University

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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