Suppr超能文献

pH对大鼠和兔心肌离子交换及功能的影响。

Effect of pH on ionic exchange and function in rat and rabbit myocardium.

作者信息

Poole-Wilson P A, Langer G A

出版信息

Am J Physiol. 1975 Sep;229(3):570-81. doi: 10.1152/ajplegacy.1975.229.3.570.

Abstract

The effects of pH variation on ionic exchange and mechanical function were studied in the arterially perfused rat and rabbit septa. The pH and PCO2 of the control perfusate were 7.40 and 39 mmHg, respectively. In the rabbit septum a metabolic acidosis (pH equals 6.82, PCO2 equals 39 mmHg) caused a loss of 16% of control tension in 12 min. Na+ and K+ exchange were unaltered. A comparable respiratory acidosis (pH equals 6.81, PCO2 equals 159 mmHg) caused a 51% loss of tension in 2 min. Na+ exchange was unaltered but K+ efflux fell from 8.9 +/- 0.6 (mean +/- SE) to 4.9 +/- 0.3 mmol/kg dry wt per min (P less than 0.001, n equals 10). A net gain of K+ of 16.9 +/- 1.7 (n equals 14) mmol/kg dry wt occurred and was attributable to a delayed fall in K+ influx relative to efflux over 15 min. The net gain could not be mimicked by epinephrine administration or blocked by propranolol and was absent in the beating rat septum and the quiescent rabbit septum. These results suggest that the net uptake of K+, which appears to be dependent on a period of depolarization, and the changes of contractility are controlled by the H+ ion concentration at a cellular site whose exchange with the extracellular space is characterized by a considerable restriction of diffusion. Changes of contractility are not related to the net uptake of K+.

摘要

在动脉灌注的大鼠和兔心脏间隔中研究了pH变化对离子交换和机械功能的影响。对照灌注液的pH值和PCO₂分别为7.40和39 mmHg。在兔心脏间隔中,代谢性酸中毒(pH值等于6.82,PCO₂等于39 mmHg)在12分钟内导致对照张力丧失16%。Na⁺和K⁺交换未改变。类似的呼吸性酸中毒(pH值等于6.81,PCO₂等于159 mmHg)在2分钟内导致张力丧失51%。Na⁺交换未改变,但K⁺外流从8.9±0.6(平均值±标准误)降至4.9±0.3 mmol/kg干重每分钟(P<0.001,n = 10)。发生了16.9±1.7(n = 14)mmol/kg干重的K⁺净增加,这归因于15分钟内K⁺内流相对于外流的延迟下降。肾上腺素给药不能模拟这种净增加,普萘洛尔也不能阻断,并且在跳动的大鼠心脏间隔和静止的兔心脏间隔中不存在这种情况。这些结果表明,K⁺的净摄取似乎依赖于一段时间的去极化,并且收缩性的变化由细胞部位的H⁺离子浓度控制,该部位与细胞外空间的交换具有相当大的扩散限制。收缩性的变化与K⁺的净摄取无关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验