微循环
脑血流
体外循环
灌注
生物
脉动流
离体
神经科学
体内
病理
医学
麻醉
心脏病学
内科学
内分泌学
生物技术
作者
Zvonimir Vrselja,Stefano G. Daniele,John Silbereis,Francesca Talpo,Yury M. Morozov,André M. M. Sousa,Brian S. Tanaka,Mario Škarica,Mihovil Pletikos,Navjot Kaur,Zhen W. Zhuang,Zhao Liu,Rafeed Alkawadri,Albert J. Sinusas,Stephen R. Latham,Stephen G. Waxman,Nenad Šestan
出处
期刊:Nature
[Nature Portfolio]
日期:2019-04-17
卷期号:568 (7752): 336-343
被引量:307
标识
DOI:10.1038/s41586-019-1099-1
摘要
The brains of humans and other mammals are highly vulnerable to interruptions in blood flow and decreases in oxygen levels. Here we describe the restoration and maintenance of microcirculation and molecular and cellular functions of the intact pig brain under ex vivo normothermic conditions up to four hours post-mortem. We have developed an extracorporeal pulsatile-perfusion system and a haemoglobin-based, acellular, non-coagulative, echogenic, and cytoprotective perfusate that promotes recovery from anoxia, reduces reperfusion injury, prevents oedema, and metabolically supports the energy requirements of the brain. With this system, we observed preservation of cytoarchitecture; attenuation of cell death; and restoration of vascular dilatory and glial inflammatory responses, spontaneous synaptic activity, and active cerebral metabolism in the absence of global electrocorticographic activity. These findings demonstrate that under appropriate conditions the isolated, intact large mammalian brain possesses an underappreciated capacity for restoration of microcirculation and molecular and cellular activity after a prolonged post-mortem interval.
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