Suppr超能文献

血管紧张素转换酶抑制的脑血管方面 II:血脑屏障通透性及脑室内给予卡托普利的作用

Cerebrovascular aspects of converting-enzyme inhibition II: Blood-brain barrier permeability and effect of intracerebroventricular administration of captopril.

作者信息

Jarden J O, Barry D I, Juhler M, Graham D I, Strandgaard S, Paulson O B

出版信息

J Hypertens. 1984 Dec;2(6):599-604. doi: 10.1097/00004872-198412000-00004.

Abstract

The blood-brain barrier permeability to captopril, and the cerebrovascular effects of intracerebroventricular administration of captopril, were studied in normotensive Wistar rats. The blood-brain barrier permeability-surface area product (PS), determined by an integral-uptake method, was about 1 X 10(-5) cm3/g/s in all brain regions studied. This was three to four times lower than the simultaneously determined PS of Na+ and Cl-, both of which are known to have very low blood-brain barrier permeability. Cerebral blood flow, determined by the intra-arterial 133xenon injection method, was unaffected by intracerebroventricular administration of 100 micrograms captopril. Furthermore the lower limit of cerebral blood flow autoregulation during haemorrhagic hypotension was also unaffected, being in the mean arterial pressure range (50-69 mmHg) in both controls and captopril-treated rats. It was concluded that the blood-brain barrier permeability of captopril was negligible and that inhibition of the brain renin-angiotensin system has no effect on global cerebral blood flow. The cerebrovascular effects of intravenously administered captopril (a resetting to lower pressure of the limits and range of cerebral blood flow autoregulation) are probably exerted via converting enzyme on the luminal surface of cerebral vessels.

摘要

在正常血压的Wistar大鼠中,研究了卡托普利的血脑屏障通透性以及脑室内注射卡托普利的脑血管效应。采用整体摄取法测定的血脑屏障通透表面积乘积(PS),在所研究的所有脑区中约为1×10⁻⁵ cm³/g/s。这比同时测定的已知血脑屏障通透性极低的Na⁺和Cl⁻的PS低三到四倍。采用动脉内注射¹³³氙的方法测定脑血流量,脑室内注射100微克卡托普利对其没有影响。此外,出血性低血压期间脑血流量自身调节的下限也未受影响,对照组和卡托普利治疗组大鼠的平均动脉压范围均为(50 - 69 mmHg)。得出的结论是,卡托普利的血脑屏障通透性可忽略不计,并且抑制脑肾素 - 血管紧张素系统对全脑血流量没有影响。静脉注射卡托普利的脑血管效应(脑血流量自身调节的限度和范围向较低压力重置)可能是通过脑血管腔表面的转换酶发挥作用的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验