Suppr超能文献

终纹床核腹侧被盖区损伤对去氧皮质酮盐性高血压发展及血管钠泵活性的影响。

Effect of AV3V lesions on development of DOCA-salt hypertension and vascular Na+-pump activity.

作者信息

Songu-Mize E, Bealer S L, Caldwell R W

出版信息

Hypertension. 1982 Sep-Oct;4(5):575-80. doi: 10.1161/01.hyp.4.5.575.

Abstract

We studied the effects of anteroventral third ventricle (AV3V) lesions on the vascular Na+-pump activity of deoxycorticosterone acetate-salt (DOCA-salt) treated rats. Blood pressures and Na+-pump activity of the isolated tail arteries, measured as ouabain-sensitive 86Rb-uptake, were determined in untreated control rats, DOCA-salt treated rats, rats with AV3V lesions, and rats with AV3V lesions which were treated with DOCA-salt. Control rats receiving DOCA treatment developed higher blood pressures than rats receiving no DOCA treatment. Placement of AV3V lesions prior to administration of DOCA prevented the increase in blood pressure. Vascular Na+-pump activity in the DOCA-treated group was reduced by 20% compared to all other groups. The AV3V lesions prevented the suppression of Na+-pump activity caused by DOCA treatment. Suppression of vascular Na+-pump activity was due to a humoral substance since Na+-pump activity of tail arteries from control rats incubated in plasma from DOCA-salt treated rats was suppressed by 25% when compared to those incubated in control plasma. Our findings support the hypothesis that a circulating pressor substance is at least partially responsible for the development of DOCA-salt hypertension and that the mechanism by which AV3V lesions prevent DOCA hypertension may be through the interruption of secretion, transport, or synthesis of this factor.

摘要

我们研究了前腹侧第三脑室(AV3V)损伤对醋酸脱氧皮质酮-盐(DOCA-盐)处理大鼠血管钠泵活性的影响。通过哇巴因敏感的⁸⁶Rb摄取来测定未处理的对照大鼠、DOCA-盐处理大鼠、有AV3V损伤的大鼠以及接受DOCA-盐处理的有AV3V损伤的大鼠的血压和离体尾动脉的钠泵活性。接受DOCA处理的对照大鼠比未接受DOCA处理的大鼠血压更高。在给予DOCA之前进行AV3V损伤可防止血压升高。与所有其他组相比,DOCA处理组的血管钠泵活性降低了20%。AV3V损伤可防止DOCA处理引起的钠泵活性抑制。血管钠泵活性的抑制是由于一种体液物质,因为与在对照血浆中孵育的相比,在DOCA-盐处理大鼠血浆中孵育的对照大鼠尾动脉的钠泵活性被抑制了25%。我们的研究结果支持这样的假设,即一种循环升压物质至少部分地导致了DOCA-盐性高血压的发展,并且AV3V损伤预防DOCA高血压的机制可能是通过中断该因子的分泌、运输或合成。

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