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去甲异波尔定对从骨骼肌分离的小鼠膈肌及肌浆网囊泡的作用。

Effects of boldine on mouse diaphragm and sarcoplasmic reticulum vesicles isolated from skeletal muscle.

作者信息

Kang J J, Cheng Y W

机构信息

Institute of Toxicology, College of Medicine, National Taiwan University, Taipei, R.O.C.

出版信息

Planta Med. 1998 Feb;64(1):18-21. doi: 10.1055/s-2006-957358.

Abstract

The effects of boldine [(S)-2,9-dihydroxy-1,10-dimethoxyaporphine], a major alkaloid in the leaves and bark of boldo (Peumus boldus Mol.), on skeletal muscle were studied using mouse diaphragm and isolated sarcoplasmic reticulum membrane vesicles. Boldine, at 10-200 microM, has little effect on the muscle-evoked twitches; however, the ryanodine-induced contracture was potentiated dose-dependently. At higher concentrations of 300 microM, boldine by itself induced muscle contracture of two phases, which were caused by the influx of extracellular Ca2+ and induction of Ca2+ release from the internal Ca2+ storage site, the sarcoplasmic reticulum, respectively. When tested with isolated sarcoplasmic reticulum membrane vesicles, boldine dose-dependently induced Ca2+ release from actively loaded sarcoplasmic reticulum vesicles isolated from skeletal muscle of rabbit or rat which was inhibited by ruthenium red, suggesting that the release was through the Ca2+ release channel, also known as the ryanodine receptor. Boldine also dose-dependently increased apparent [3H]-ryanodine binding with the EC50 value of 50 microM. In conclusion, we have shown that boldine could sensitize the ryanodine receptor and induce Ca2+ release from the internal Ca2+ storage site of skeletal muscle.

摘要

使用小鼠膈肌和分离的肌浆网膜囊泡研究了波尔多(Peumus boldus Mol.)叶和树皮中的主要生物碱波弟灵[(S)-2,9-二羟基-1,10-二甲氧基阿朴啡]对骨骼肌的影响。10-200微摩尔浓度的波弟灵对肌肉诱发的抽搐影响很小;然而,对ryanodine诱导的挛缩有剂量依赖性增强作用。在300微摩尔的较高浓度下,波弟灵本身可诱导肌肉出现两个阶段的挛缩,分别是由细胞外Ca2+内流和肌浆网(内部Ca2+储存部位)Ca2+释放诱导引起的。在用分离的肌浆网膜囊泡进行测试时,波弟灵能剂量依赖性地诱导从兔或大鼠骨骼肌分离的主动加载的肌浆网囊泡释放Ca2+,这一释放被钌红抑制,表明该释放是通过Ca2+释放通道(也称为ryanodine受体)进行的。波弟灵还能剂量依赖性地增加表观[3H]-ryanodine结合,其EC50值为50微摩尔。总之,我们已表明波弟灵可使ryanodine受体敏感化,并诱导骨骼肌内部Ca2+储存部位释放Ca2+。

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