降毒增效:乌头碱与甘草次酸联合调控大鼠心肌细胞钙调节蛋白。

Yuyan Zhang, Li Yu, Weifeng Jin, Hongjing Fan, Min Li, Tianmei Zhou, Haitong Wan, Jiehong Yang
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引用次数: 12

摘要

背景:乌头与甘草配伍治疗心衰、心律失常等心脏疾病。本工作回答了乌头和甘草的活性成分乌头碱、甘草素和甘草次酸是否能调节细胞内钙稳态和钙循环的问题,从而验证了其治疗的物质基础。材料与方法:将心肌细胞随机分为12组,分别为对照组、乌头碱组、乌头碱、甘草次酸正交联合9个不同剂量组、维拉帕米组。观察心肌细胞存活率及形态学变化。Western-blotting检测心肌细胞中钙调节蛋白RyR2、NCX1、DHPR-a1的表达。结果:结果显示,乌头碱(120 μ m)对心肌细胞有明显损伤,降低了Na+/Ca2+交换物(NCX1)和二氢蝶啶还原-α1 (DHPR-a1)的存活率和表达,明显增加了ryanodine受体2型(RyR2)的表达。配伍组(乌头碱、甘草素和甘草次酸)均能不同程度地抵抗乌头碱对心肌细胞的损伤。结论:乌头碱与甘草次酸联用可调节心肌细胞钙调节蛋白的表达,保护心肌细胞免受损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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REDUCING TOXICITY AND INCREASING EFFICIENCY: ACONITINE WITH LIQUIRITIN AND GLYCYRRHETINIC ACID REGULATE CALCIUM REGULATORY PROTEINS IN RAT MYOCARDIAL CELL.

Background: Compatibility of Radix Aconiti Carmichaeli and Liquorice is known to treat heart diseases such as heart failure and cardiac arrhythmias. This work answers the question that whether the active components (Aconitine, Liquiritin and Glycyrrhetinic Acid) of Radix Aconiti Carmichaeli and Liquorice could result in regulating intracellular calcium homeostasis and calcium cycling, and thereby verifies the therapeutic material basis.

Materials and methods: The myocardial cells were divided into twelve groups randomly as control group, Aconitine group, nine different dose groups that orthogonal combined with Aconitine, Liquiritin and Glycyrrhetinic Acid, and Verapamil group. The myocardial cellular survival rate and morphology were assessed. The expression of calcium regulation protein(RyR2, NCX1, DHPR-a1) in the myocardial cell by Western-blotting.

Results: The results exhibited that Aconitine (120 uM) significantly damaged on myocardial cell, decreased the survival rate and expression of Na+/Ca2+ exchangers (NCX1) and dihydropteridine reducta-α1 (DHPR-a1), and increased the expression of ryanodine receptor type2 (RyR2) obviously. The compatibility groups (Aconitine, Liquiritin and Glycyrrhetinic Acid) all could against the damage on the myocardial cell by Aconitine at different levels.

Conclusion: Aconitine with Liquiritin and Glycyrrhetinic Acid may regulate the expression of calcium-regulated proteins to protect myocardial cells from damage.

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