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Recent Advances in Endothelin Research on Cardiovascular and Endocrine Systems

机译:心血管和内分泌系统内皮素研究的最新进展

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References(132) Cited-By(16) Recent advances in ET research on the cardiovascular and endocrine systems were reviewed. Considering the potent vasculotropic actions, strategically advantageous localization, and recent findings with the specific receptor antagonist, ET is Table 2. Effects of dehydration for 2 days on hematocrit, serum osmolarity, plasma levels of it-VP, plasma and neurohypophyseal levels of it-ET-1, density of NSG, and density of it-ET-1 in NSG potentially involved in the regulation of hemodynamic homeostasis and in the pathogenesis of essential and secondary hypertension. The mitogenic action on the vascular smooth muscle cells suggests its more chronic effect on the vascular structure. In addition to the hypertensinogenic aspects, the role of ET in maintaining blood pressure in a hypotensive condition should not be overlooked. The development of specific antagonists which block the action of locally operating ET in vivo will be a powerful tool in elucidating the pathophysiological significance of ET and will provide a new therapeutic approach for hypertension. The roles of ET in the endocrine system are also fascinating. Accumulating evidence supports the notion that ET modulates the secretion of pituitary and adrenal hormones. The mode of action is likely to be paracrine/autocrine rather than endocrine, although a possible role of circulating ET cannot be ruled out. The pathophysiological role of ET in the endocrine tissues remains to be clarified. The diversity of the action of ET on the blood pressure and endocrine functions provides further evidence of the complexity of the homeostatic mechanisms, leaving us an intriguing subject for future study.
机译:参考文献(132)被引用者(16)综述了心血管和内分泌系统的ET研究的最新进展。考虑到强血管作用,策略上有利的定位以及特定受体拮抗剂的最新发现,ET见表2。脱水2天对血细胞比容,血清渗透压,it-VP的血浆水平,血浆和it的神经垂体的影响- ET-1,NSG的密度以及NSG中的IT-ET-1的密度可能涉及血液动力学稳态的调节以及原发性和继发性高血压的发病机制。对血管平滑肌细胞的促有丝分裂作用表明其对血管结构的更长期的影响。除高血压的方面外,ET在维持血压低血压状态中的作用也不容忽视。在体内阻断局部操作ET的作用的特异性拮抗剂的开发将是阐明ET的病理生理学意义的有力工具,并将为高血压提供一种新的治疗方法。 ET在内分泌系统中的作用也令人着迷。越来越多的证据支持ET调节垂体和肾上腺激素分泌的观点。尽管不能排除循环ET的可能作用,但作用方式可能是旁分泌/自分泌而非内分泌。 ET在内分泌组织中的病理生理作用尚待阐明。 ET对血压和内分泌功能的作用的多样性为稳态机制的复杂性提供了进一步的证据,这使我们成为未来研究的一个有趣的主题。

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