Smith F G, Abu-Amarah I
Departments of Physiology and Biophysics/Medicine, University of Calgary, Calgary, Alberta, Canada T2N 4N1.
Am J Physiol. 1998 Jul;275(1):H285-91. doi: 10.1152/ajpheart.1998.275.1.H285.
To investigate the role of renal sympathetic nerves in modulating cardiovascular and endocrine responses to hemorrhage early in life, we carried out three experiments in conscious, chronically instrumented lambs with intact renal nerves (intact; n = 8) and with bilateral renal denervation (denervated; n = 5). Measurements were made 1 h before and 1 h after 0, 10, and 20% hemorrhage. Blood pressure decreased transiently after 20% hemorrhage in intact lambs and returned to control levels. In denervated lambs, however, blood pressure remained decreased after 60 min. After 20% hemorrhage, heart rate increased from 170 +/- 16 to 207 +/- 18 beats/min in intact lambs but not in denervated lambs, in which basal heart rates were already elevated to 202 +/- 21 beats/min. Despite an elevated plasma renin activity (PRA) measured in denervated (12.0 +/- 6.4 ng ANG I . ml-1 . h-1) compared with intact lambs (4.0 +/- 1.1 ng ANG I . ml-1 . h-1), the increase in PRA in response to 20% hemorrhage was similar in both groups. Plasma levels of arginine vasopressin increased from 11 +/- 8 to 197 +/- 246 pg/ml after 20% hemorrhage in intact lambs but remained unaltered in denervated lambs from baseline levels of 15 +/- 10 pg/ml. These observations provide evidence that in the newborn, renal sympathetic nerves modulate cardiovascular and endocrine responses to hemorrhage.
为了研究肾交感神经在调节生命早期对出血的心血管和内分泌反应中的作用,我们对有意识的、长期植入仪器且肾神经完整的羔羊(完整组;n = 8)和双侧肾去神经的羔羊(去神经组;n = 5)进行了三项实验。在0%、10%和20%出血前1小时和出血后1小时进行测量。完整组羔羊在20%出血后血压短暂下降,然后恢复到对照水平。然而,去神经组羔羊在60分钟后血压仍持续下降。20%出血后,完整组羔羊的心率从170±16次/分钟增加到207±18次/分钟,而去神经组羔羊的心率未增加,其基础心率已升高至202±21次/分钟。尽管去神经组羔羊(12.0±6.4 ng ANG I·ml-1·h-1)的血浆肾素活性(PRA)高于完整组羔羊(4.0±1.1 ng ANG I·ml-1·h-1),但两组对20%出血的PRA增加相似。完整组羔羊在20%出血后精氨酸加压素的血浆水平从11±8 pg/ml增加到197±246 pg/ml,而去神经组羔羊从基线水平15±10 pg/ml保持不变。这些观察结果提供了证据,表明在新生儿中,肾交感神经调节对出血的心血管和内分泌反应。