大鼠急性低氧运动对心肌细胞瞬时外向钾电流的影响
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(1. 承德医学院研究生院,河北 承德 067000;2. 解放军陆军第八十二集团军医院心肾内科,河北 保定 071000;3. 河北大学中医学院,河北 保定 071000;4. 解放军总医院第六医学中心心血管病医学部研究所,北京100048)

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G804.2

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国家自然科学基金(82070328);军队健康专项(17BJZ41);河北省自然科学基金(H2019104017);2015年青年孵化计划(15QNP008)


Effects of acute hypoxic exercise on transient outward potassium current of cardiomyocytes in rats
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(1. Graduate School, Chengde Medical University, Chengde 067000, Hebei Province, China;2. Department of Cardiorenal Internal Medicine, Hospital of Army Group 8;2.of Chinese PLA, Baoding 071000, Hebei Province, China;3. College of Traditional Chinese Medicine, Hebei University, Baoding 071000, Hebei Province, China;4. Institute of Cardiovascualr Diseases, Sixth Medical Center, Chinese PLA General Hospital, Beijing 100048, China)

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    摘要:

    目的 通过建立大鼠急性低氧运动模型,观察大鼠单个心室肌细胞瞬时外向钾电流(Ito)的改变,在细胞水平探究模拟高原低氧条件下力竭运动对心脏电生理的影响。 方法 将40只健康雄性清洁级SD大鼠随机分为低氧运动组、低氧安静组、常氧运动组和常氧安静组,每组10只。利用小动物低压氧舱和常氧状态下进行力竭运动试验。取出各组大鼠心脏,利用灌流酶解法分离大鼠单个心室肌细胞,采用全细胞膜片钳技术记录大鼠单个心室肌细胞的瞬时外向钾电流。采用SPSS 20.0统计软件进行数据处理,多组间比较采用ANOVA方差分析,组间两两比较采用SNK-q检验。 结果 与常氧安静组比较,+40mV时,低氧运动组的Ito电流密度显著降低,且低于低氧安静组及常氧运动组,此效应呈现电压依赖性。门控机制研究显示,低氧运动时大鼠心肌细胞Ito稳态激活曲线失活向超极化方向移动, 而稳态失活曲线则向去极化方向移动,二者综合效应使Ito电流显著降低。 结论 急性低氧运动可通过改变钾通道稳态激活与稳态失活过程,降低大鼠心室肌细胞Ito,这可能是急性低氧运动导致心律失常的主要原因之一。

    Abstract:

    Objective To observe the changes of transient outward potassium currents (Ito) in single ventricular myocytes after establishment of an acute hypoxic exercise model in rats, and explore the effects of exhaustive exercise on cardiac electrophysiology under simulated altitude hypoxia conditions at the cellular level. Methods Forty healthy male clean SD rats were randomly divided into hypoxic exercise group, hypoxic resting group, normoxic exercise group and normoxic resting group, with 10 rats in each group. Small animal hypobaric oxygen chamber was used to simulate the hypoxia or normal oxygen condition for exhaustive exercise test. The heart of each group of rats was taken out, and the single rat ventricular myocytes were separated by perfusion enzymatic hydrolysis. The whole cell patch clamp technique was used to record Ito current of the rat single ventricular myocytes. SPSS statistics 20.0 was used for data processing, ANOVA analysis of variance was applied for comparison among multiple groups, and SNK-q test was adopted for pairwise comparison between groups. Results Compared with the normoxic resting group, at +40 mV, the Ito current density of the hypoxic exercise group was significantly lower, and was lower than that of the hypoxic resting group and normoxia exercise group. This effect was in a voltage-dependent manner. Studies on the gating mechanism showed that the Ito steady-state activation curve of rat cardiomyocytes shifted to the hyperpolarization direction during hypoxic exercise, while the steady-state inactivation curve shifted to the depolarization direction. The combination of above 2 effects made the Ito current significantly reduced significantly. Conclusion Acute hypoxic exercise can reduce the Ito current of rat ventricular myocytes by changing the steady-state activation and steady-state inactivation of potassium channels, which may be one of the main reasons for acute hypoxic exercise to cause arrhythmia.

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马山山,李佳鑫,陈雅婷,蔡钟奇,白婧,刘传斌,李泱,曹雪滨.大鼠急性低氧运动对心肌细胞瞬时外向钾电流的影响[J].中华老年多器官疾病杂志,2021,20(5):373~379

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  • 收稿日期:2020-09-15
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  • 在线发布日期: 2021-05-28
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