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首页> 外文期刊>American Journal of Physiology >Cardiovascular, endocrine, and body fluid-electrolyte responses to salt loading in mRen-2 transgenic rats.
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Cardiovascular, endocrine, and body fluid-electrolyte responses to salt loading in mRen-2 transgenic rats.

机译:在mRen-2转基因大鼠中,心血管,内分泌和体液电解质对盐负荷的反应。

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摘要

We previously demonstrated that mRen-2 transgenic [Tg(+)] rats are sensitive to chronic high NaCl intake, showing increased arterial pressure and vasopressin (VP) secretion. In this study, we determined the effect of a chronic osmotic challenge, 4 days of drinking 2% NaCl, on direct arterial blood pressure, heart rate, fluid-electrolyte balance, circadian rhythm of mean arterial pressure (MAP), and changes in plasma VP and catecholamines. Under baseline conditions, male Tg(+) rats showed a significant shift in the peak in circadian MAP into the light portion of the day-night cycle. Substitution of 2% NaCl for drinking water caused a rapid increase in MAP, 20 +/- 5 mmHg in Tg(+) rats within 6 h. Whereas the amplitude of circadian MAP fluctuations increased in salt-loaded Tg(+) rats, there was no significant change in the circadian timing of peak MAP with salt loading. Tg(+) rats showed exaggerated osmotic-induced increases in plasma VP, norepinephrine (NE), and epinephrine (Epi) compared with Tg(-) rats. Plasma NE and Epi were increased two- and fourfold, respectively, in the hypertensive rats with no significant change in the Tg(-) rats. Intravenous administration of a VP antagonist did not alter arterial pressure in either Tg(+) or Tg(-) rats. Tg(+) and Tg(-) rats showed a positive sodium balance with no significant difference observed between the groups. Tg(+) rats showed a significant increase in salt consumption, plasma sodium, osmolality, and hematocrit, accompanied by a negative water balance. We conclude that Tg(+) rats are sensitive to acute and chronic osmotic stimuli in terms of blood pressure, fluid-electrolyte balance, and plasma VP and catecholamines. Whereas elevated plasma VP does not contribute to the hypertensive response, increased sympathetic drive may mediate the salt-induced blood pressure changes in this model.
机译:我们以前证明了mRen-2转基因[Tg(+)]大鼠对慢性高NaCl摄入敏感,显示动脉压和加压素(VP)分泌增加。在这项研究中,我们确定了慢性渗透挑战,饮用2%NaCl 4天对直接动脉血压,心率,液体电解质平衡,平均动脉血压的昼夜节律和血浆变化的影响副总裁和儿茶酚胺。在基线条件下,雄性Tg(+)大鼠在昼夜节律中昼夜节律MAP的峰值显着转移。用2%NaCl代替饮用水导致Tg(+)大鼠在6小时内MAP快速升高,升高20 +/- 5 mmHg。盐负荷的Tg(+)大鼠的昼夜节律MAP波动幅度增加,而峰值MAP的昼夜节律计时随盐负荷没有明显变化。与Tg(-)大鼠相比,Tg(+)大鼠显示血浆VP,去甲肾上腺素(NE)和肾上腺素(Epi)的渗透性增加。在高血压大鼠中,血浆NE和Epi分别增加了两倍和四倍,而在Tg(-)大鼠中没有显着变化。静脉注射VP拮抗剂不会改变Tg(+)或Tg(-)大鼠的动脉压。 Tg(+)和Tg(-)大鼠显示出正的钠平衡,各组之间未观察到显着差异。 Tg(+)大鼠显示出盐消耗,血浆钠,重量克分子渗透压浓度和血细胞比容显着增加,并伴有负水平衡。我们得出的结论是,Tg(+)大鼠在血压,体液电解质平衡以及血浆VP和儿茶酚胺方面对急性和慢性渗透刺激敏感。血浆VP升高对高血压反应无贡献,而交感神经驱动力增加可能会介导盐诱导的该模型中血压的变化。

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