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首页> 外文期刊>Frontiers in Endocrinology >Role of the Vasopressin/Apelin Balance and Potential Use of Metabolically Stable Apelin Analogs in Water Metabolism Disorders
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Role of the Vasopressin/Apelin Balance and Potential Use of Metabolically Stable Apelin Analogs in Water Metabolism Disorders

机译:血管加压素/ Apelin平衡的作用和代谢稳定的Apelin类似物在水代谢紊乱中的潜在用途

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摘要

Apelin, a (neuro)vasoactive peptide, plays a prominent role in controlling body fluid homeostasis and cardiovascular functions. In animal models, experimental data demonstrate that intracerebroventricular injection of apelin into lactating rats inhibits the phasic electrical activity of arginine vasopressin (AVP) neurons, reduces plasma AVP levels, and increases aqueous diuresis. In the kidney, apelin increases diuresis by increasing the renal microcirculation and by counteracting the antidiuretic effect of AVP at the tubular level. Moreover, after water deprivation or salt loading, in humans and in rodents, AVP and apelin are conversely regulated to facilitate systemic AVP release and to avoid additional water loss from the kidney. Furthermore, apelin and vasopressin secretion are significantly altered in various water metabolism disorders including hyponatremia and polyuria-polydipsia syndrome. Since the in vivo half-life of apelin is in the minute range, metabolically stable apelin analogs were developed. The efficacy of these lead compounds for decreasing AVP release and increasing both renal blood flow and diuresis, make them promising candidates for the treatment of water retention and/or hyponatremic disorders.
机译:Apelin是一种(神经)血管活性肽,在控制体液稳态和心血管功能中起着重要作用。在动物模型中,实验数据表明向哺乳期大鼠的脑室内注射apelin会抑制精氨酸加压素(AVP)神经元的相电活动,降低血浆AVP水平,并增加水利尿作用。在肾脏中,apelin通过增加肾脏微循环并抵消肾小管水平的AVP的抗利尿作用来增加利尿作用。此外,在缺水或加盐后,在人类和啮齿动物中,反过来调节AVP和apelin以促进全身性AVP释放并避免肾脏中额外的水分流失。此外,在包括低钠血症和多尿多饮综合征在内的各种水代谢紊乱中,apelin和加压素的分泌都发生了显着变化。由于apelin的体内半衰期在微小范围内,因此开发了代谢稳定的apelin类似物。这些先导化合物减少AVP释放,增加肾血流量和利尿的功效,使其成为有望治疗水retention留和/或低钠血症的候选药物。

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