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慢性应激导致年轻高血压前期大鼠血浆皮质酮持续升高、脑和心脏一氧化氮生成减少以及内皮功能延迟改变。

Chronic Stress Produces Persistent Increases in Plasma Corticosterone, Reductions in Brain and Cardiac Nitric Oxide Production, and Delayed Alterations in Endothelial Function in Young Prehypertensive Rats.

作者信息

Bernatova Iveta, Puzserova Angelika, Balis Peter, Sestakova Natalia, Horvathova Martina, Kralovicova Zuzana, Zitnanova Ingrid

机构信息

Institute of Normal and Pathological Physiology, Centre of Experimental Medicine, Slovak Academy of Sciences, Bratislava, Slovakia.

Institute of Medical Chemistry, Biochemistry and Clinical Biochemistry, Faculty of Medicine, Comenius University, Bratislava, Slovakia.

出版信息

Front Physiol. 2018 Aug 29;9:1179. doi: 10.3389/fphys.2018.01179. eCollection 2018.

Abstract

This study was designed to investigate whether oxidative stress, nitric oxide (NO) deficiency and/or endothelial dysfunction (ED) are present in young borderline hypertensive rats (BHR) and whether these pathologies can be causally involved in the initiation of blood pressure (BP) increases. Additionally, we tested the hypothesis that crowding stress, experienced during the peripubertal period, may produce persistent or delayed disorders in corticosterone release, NO synthesis, oxidative status and/or endothelial function that could accelerate BP increases. To test these hypotheses, 5-week-old male BHR and normotensive Wistar-Kyoto rats (WKY) were either kept in control conditions (for 2 and 4 weeks, respectively) or exposed to social stress produced by crowding for 2 weeks (stress). After cessation of crowding, a group of rats of each phenotype was kept in control conditions for the next 2 weeks (post-stress). Systolic BP of 5-week-old BHR was significantly increased vs. age-matched WKY (127 ± 3 vs. 104 ± 3 mmHg, < 0.01) and remained significantly higher throughout the course of the experiment. Despite elevated BP, no signs of oxidative damage to plasma lipids, NO deficiency or ED were observed in control BHR vs. age-matched WKY. Crowding stress elevated plasma corticosterone and accelerated BP increases only in BHR; these effects persisted 2 weeks post-stress. Crowding failed to induce oxidative damage to plasma lipids in either phenotype, but it produced persistent decreases in NO production in the hypothalamus and brainstem of both strains of rats, as well as in the hearts of BHR. In contrast, crowding failed to reduce NO production in the aortae or acetylcholine-induced relaxations of the femoral arteries in both strains investigated. However, significantly reduced aortic NO production was observed in BHR 2 weeks post-stress vs. age-matched controls, which was in agreement with reduced NO-dependent components of vasorelaxation. In conclusion, this study's data showed that oxidative stress, NO deficiency and ED are not causally involved in initiation of blood pressure increase in BHR. However, exposure to stressful environments produced persistent increases in plasma corticosterone and reductions of brain and cardiac NO production followed by a delayed decrease in the NO-dependent component of endothelium-dependent relaxation-changes that collectively accelerated BP increases only in BHR.

摘要

本研究旨在调查年轻的临界高血压大鼠(BHR)是否存在氧化应激、一氧化氮(NO)缺乏和/或内皮功能障碍(ED),以及这些病理状态是否可能与血压(BP)升高的起始存在因果关系。此外,我们检验了这样一个假设:青春期前后经历的拥挤应激可能会导致皮质酮释放、NO合成、氧化状态和/或内皮功能出现持续性或延迟性紊乱,从而加速血压升高。为了验证这些假设,将5周龄的雄性BHR和正常血压的Wistar-Kyoto大鼠(WKY)分别置于对照条件下(分别持续2周和4周),或暴露于拥挤引起的社会应激中2周(应激)。拥挤结束后,每组各表型的一组大鼠在接下来的2周内置于对照条件下(应激后)。5周龄BHR的收缩压显著高于年龄匹配的WKY(127±3 vs. 104±3 mmHg,P<0.01),且在整个实验过程中一直显著更高。尽管血压升高,但对照BHR与年龄匹配的WKY相比,未观察到血浆脂质氧化损伤、NO缺乏或ED的迹象。拥挤应激仅在BHR中升高了血浆皮质酮并加速了血压升高;这些效应在应激后持续2周。拥挤未能在任一表型中诱导血浆脂质氧化损伤,但在两种品系大鼠的下丘脑和脑干以及BHR的心脏中,它使NO生成持续减少。相反,在研究的两种品系中,拥挤未能降低主动脉中的NO生成或乙酰胆碱诱导的股动脉舒张。然而,与年龄匹配的对照相比,应激后2周的BHR中观察到主动脉NO生成显著降低,这与血管舒张的NO依赖性成分降低一致。总之,本研究数据表明,氧化应激、NO缺乏和ED与BHR血压升高的起始不存在因果关系。然而,暴露于应激环境会使血浆皮质酮持续升高,大脑和心脏中NO生成减少,随后内皮依赖性舒张的NO依赖性成分延迟降低——这些变化共同仅在BHR中加速了血压升高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dce6/6123386/dab8f8892414/fphys-09-01179-g001.jpg

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