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通过自主神经节移植绕过血脑屏障

Circumventing the blood-brain barrier with autonomic ganglion transplants.

作者信息

Rosenstein J M, Brightman M W

出版信息

Science. 1983 Aug 26;221(4613):879-81. doi: 10.1126/science.6879186.

Abstract

Superior cervical ganglia, whose vessels are fenestrated and permeable to protein tracers such as horseradish peroxidase, were transplanted to undamaged surfaces in the fourth ventricle of rat pup brains. Horseradish peroxidase, infused systemically into the host, was exuded from the graft's vessels into the graft's extracellular stroma within 1 minute. At later times the glycoprotein reached the extracellular clefts of adjacent brain tissue, the vessels of which appeared to retain their impermeability. The blood-brain barrier to horseradish peroxide was thus bypassed where the extracellular compartments of graft and brain became confluent. The graft of autonomic ganglia can serve as a portal through which peptides, hormones, and immunoglobulins may likewise enter the brain.

摘要

颈上神经节的血管有窗孔,对诸如辣根过氧化物酶等蛋白质示踪剂具有通透性,将其移植到幼鼠脑第四脑室的未受损表面。向宿主全身注入辣根过氧化物酶后,1分钟内它就从移植体的血管渗出到移植体的细胞外基质中。在随后的时间里,这种糖蛋白到达相邻脑组织的细胞外间隙,而相邻脑组织的血管似乎仍保持其不透性。因此,在移植体和脑的细胞外间隙汇合处,绕过了对辣根过氧化物的血脑屏障。自主神经节的移植体可作为一个门户,肽、激素和免疫球蛋白同样可以通过这个门户进入脑内。

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