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冷适应诱导的大鼠收缩压升高与血容量扩张有关。

Cold acclimation-induced increase of systolic blood pressure in rats is associated with volume expansion.

作者信息

Roukoyatkina N I, Chefer S I, Rifkind J, Ajmani R, Talan M I

机构信息

Laboratory of Cardiovascular Sciences, Gerontology Research Center, National Institute on Aging, National Institutes of Health, Baltimore, Maryland 21224-6825, USA.

出版信息

Am J Hypertens. 1999 Jan;12(1 Pt 1):54-62. doi: 10.1016/s0895-7061(98)00213-1.

Abstract

To investigate the mechanisms of cold-induced hypertension, the systolic blood pressure (SBP) and average daily water consumption were measured weekly in 6-month-old male Wistar rats; they were subsequently acclimated to thermoneutrality (26 degrees C for 7 weeks), to cold temperature (6 degrees C for 9 weeks), and then again reacclimated to 26 degrees C for 5 weeks. Circulating plasma volume and whole blood viscosity were measured in subgroups of rats at the end of acclimation to 26 degrees C after 2 days, after 1, 6, and 8 weeks of cold, and after 2 and 5 weeks of rewarming. The control values obtained at the end of thermoneutral period were: SBP = 130.8 +/- 18.6 mm Hg, plasma volume = 41.9 +/- 4.64 mL/kg, whole body viscosity at shear rate of 22.5 per sec = 6.7 +/- 0.48 cps, and daily water consumption = 42.25 +/- 16.81 mL. After 48 h of cold exposure there was almost a 50% increase in plasma volume that persisted to a lesser degree throughout the whole period of cold exposure (P < .05). After 2 weeks of cold exposure the daily water consumption increased and SBP began to increase. After 6 weeks of cold exposure the SBP was 30 mm Hg above that of the control level (P < .001) and was accompanied by a 25% increase in whole blood viscosity (P < .05). At the end of 8 weeks of cold exposure the plasma volume was 56.8 +/- 9.51 mL/ kg and the whole blood viscosity was 8.0 +/- 1.79 cps at the 22.5 per sec shear rate. During the 5 weeks of rewarming the elevation of SBP and increased whole blood viscosity persisted, whereas the increased daily water consumption and expanded plasma volume returned to normal. Therefore, the acclimation to cold is accompanied by the development of a volume-associated hypertension, which is sustained after rewarming without volume expansion.

摘要

为研究冷诱导高血压的机制,每周测量6月龄雄性Wistar大鼠的收缩压(SBP)和日均饮水量;随后将它们分别置于中性温度环境(26℃,持续7周)、低温环境(6℃,持续9周),然后再次置于26℃环境5周。在适应26℃环境2天后、冷暴露1周、6周和8周后以及复温2周和5周后,分别对大鼠亚组测量循环血浆容量和全血黏度。中性温度期结束时获得的对照值为:SBP = 130.8±18.6 mmHg,血浆容量 = 41.9±4.64 mL/kg,剪切速率为每秒22.5时的全身体液黏度 = 6.7±0.48 cps,日均饮水量 = 42.25±16.81 mL。冷暴露48小时后,血浆容量几乎增加了50%,并且在整个冷暴露期间一直维持在较低水平(P <.05)。冷暴露2周后,日均饮水量增加,SBP开始升高。冷暴露6周后,SBP比对照水平高30 mmHg(P <.001),同时全血黏度增加了25%(P <.05)。冷暴露8周结束时,血浆容量为56.8±9.51 mL/kg,在每秒22.5的剪切速率下全血黏度为8.0±1.79 cps。在复温的5周内,SBP升高和全血黏度增加持续存在,而日均饮水量增加和血浆容量扩大恢复正常。因此,适应寒冷伴随着与容量相关的高血压的发展,复温后高血压持续存在且无容量扩张。

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