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原发性高血压中精氨酸血管加压素释放的反射性控制。

The reflex control of arginine-vasopressin release in essential hypertension.

作者信息

Ricciardelli B, Volpe M, Trimarco B, Chiariello M, Rengo F, Condorelli M

出版信息

Clin Sci (Lond). 1981 Dec;61 Suppl 7:145s-147s. doi: 10.1042/cs061145s.

Abstract
  1. The reflex control of arginine-vasopressin release was studied in 12 essential established hypertensive patients and in 12 age-matched normal subjects by comparing the effects of head-up tilt and a variable-pressure neck-chamber. 2. After 45 min 85 degrees head-up tilt, normal subjects showed an increase in plasma arginine-vasopressin and in plasma renin activity, while plasma volume decreased. In hypertensive patients, plasma arginine-vasopressin showed changes after tilt opposite to those of controls, while the changes in plasma renin activity and plasma volume were similar to those observed in the normal group. In both groups the changes in systolic and diastolic blood pressure were not statistically significant. A reduction in carotid sinus transmural pressure obtained by increasing neck-tissue pressure (+50 mmHg) by means of a neck-chamber, evoked different responses in mean blood pressure in the two groups, but failed to induce any significant change in plasma arginine-vasopressin concentration both in the normal and in the hypertensive subjects. 3. These results seem to suggest that carotid sinus baroreceptors, though active in blood pressure control, do not play a direct role in arginine-vasopressin release and, therefore, the opposite response of arginine-vasopressin observed after tilt in the two groups of subjects should be ascribed to more complex mechanisms.
摘要
  1. 通过比较头高位倾斜和可变压力颈部腔室的作用,对12例确诊的原发性高血压患者和12例年龄匹配的正常受试者的精氨酸血管加压素释放的反射控制进行了研究。2. 在头高位倾斜85度45分钟后,正常受试者血浆精氨酸血管加压素和血浆肾素活性增加,而血浆容量减少。高血压患者倾斜后血浆精氨酸血管加压素的变化与对照组相反,而血浆肾素活性和血浆容量的变化与正常组相似。两组的收缩压和舒张压变化均无统计学意义。通过颈部腔室增加颈部组织压力(+50 mmHg)使颈动脉窦跨壁压力降低,在两组中引起了不同的平均血压反应,但在正常和高血压受试者中均未引起血浆精氨酸血管加压素浓度的任何显著变化。3. 这些结果似乎表明,颈动脉窦压力感受器虽然在血压控制中起作用,但在精氨酸血管加压素释放中不发挥直接作用,因此,两组受试者倾斜后观察到的精氨酸血管加压素的相反反应应归因于更复杂的机制。

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