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在长期肾血管性高血压的 2 肾-1 夹 Goldblatt 模型中肾素、内皮型一氧化氮合酶和内皮素基因表达。

Renin, endothelial NO synthase and endothelin gene expression in the 2kidney-1clip Goldblatt model of long-term renovascular hypertension.

机构信息

Klinik und Poliklinik für Innere Medizin II, University of Regensburg, Regensburg, Germany.

出版信息

Eur J Med Res. 2009;14(12):520-5. doi: 10.1186/2047-783x-14-12-520.

Abstract

OBJECTIVE

Numerous reports have shown the influence of renin, nitric oxide (NO) and the endothelin (ET) systems for regulation of blood pressure and renal function. Furthermore, interactions between these peptides have been reported. Aim of our study was to investigate the relative contribution of these compounds in long-term renovascular hypertension / renal ischemia.

METHODS

Hypertension / left-sided renal ischemia was induced using the 2K1C-Goldblatt rat model. Renal renin, ET-1, ET-3 and endothelial NO synthase (eNOS) gene expression was measured by means of RNAse protection assay at different timepoints up to 10 weeks after induction of renal artery stenosis.

RESULTS

Plasma renin activity and renal renin gene expression in the left kidney were increased in the clipped animals while eNOS expression was unchanged. Furthermore, an increase in ET-1 expression and a decrease of ET-3 expression was detected in early stenosis.

CONCLUSIONS

While renin is obviously involved in regulation of blood pressure and renal function in unilateral renal artery stenosis, ET-1, ET-3 and endothelium derived NO do not appear to play an important role in renal adaptation processes in long-term renal artery stenosis, although ET-1 and ET-3 might be involved in short-term adaptation processes.

摘要

目的

大量报道表明肾素、一氧化氮(NO)和内皮素(ET)系统对血压和肾功能的调节有影响。此外,这些肽类之间存在相互作用。我们的研究目的是探讨这些化合物在长期肾血管性高血压/肾缺血中的相对作用。

方法

采用 2K1C-Goldblatt 大鼠模型诱导高血压/左侧肾缺血。在诱导肾动脉狭窄后不同时间点,通过 RNA 酶保护分析测定肾组织 renin、ET-1、ET-3 和内皮型一氧化氮合酶(eNOS)基因表达。

结果

夹闭侧动物的血浆肾素活性和左肾 renin 基因表达增加,而 eNOS 表达不变。此外,早期狭窄时检测到 ET-1 表达增加和 ET-3 表达减少。

结论

虽然肾素在单侧肾动脉狭窄时明显参与血压和肾功能的调节,但 ET-1、ET-3 和内皮源性 NO 在长期肾动脉狭窄中的肾适应过程中似乎不起重要作用,尽管 ET-1 和 ET-3 可能参与短期适应过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b05d/3351937/9b335fb208be/2047-783X-14-12-520-1.jpg

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