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[含对苯二胺染发剂对大鼠化学去表皮骨骼肌中钙离子动员的影响]

[The effect of a p-phenylenediamine containing hair dye on the Ca2+ mobilization in the chemically skinned skeletal muscle of the rat].

作者信息

Yabe K

机构信息

Department of Legal Medicine, Saitama Medical School, Japan.

出版信息

Nihon Hoigaku Zasshi. 1992 Apr;46(2):132-40.

PMID:1619810
Abstract

In order to clarify the mechanism of a p-phenylenediamine (PPD)-related occurrence of rhabdomyolysis, the pharmacological effects of PPD, a main component of hair dyes, on the function of the contractile proteins and the sarcoplasmic reticulum (SR) have been investigated in single skeletal muscle fibers of the rat by using the skinned fiber method. The results of our findings are enumerated below 1) A positive contraction of the skinned fibers by the PPD, and a complete suppression of the contraction by Mg2+, and a negative contraction by caffeine while under conditions with 50 mM of PPD were noted, suggesting that the contraction of the muscle by PPD is caused by the release of Ca2+ from the SR. 2) PPD inhibited the Ca2+ uptake by the SR in a concentration-dependent manner. 3) PPD greatly accelerated Ca2+ leakage from the SR, and the number of Ca2+ remnants 3 minutes after the administration of 50 mM of PPD amounted to only 3%. 4) The calcium-induced calcium release (CICR) was accelerated in areas with a low Ca2+ concentration, and the amount of Ca2+ released at a pCa of 7.5 showed an increase of up to 63% on PPD administration of 50 mM. 5) PPD did not influence the Ca2+ sensitivity of the contractile system. It thus has been speculated that PPD can bring about rhabdomyolysis by promoting the CICR and leakage of Ca2+ from the SR, this being followed by an increase in the Ca2+ concentration and by consequent changes that develop in the muscle, such as continuous contraction, an irreversible change in the muscle's structure and/or a hypermetabolic change.

摘要

为阐明对苯二胺(PPD)相关横纹肌溶解的发生机制,采用透皮纤维法,在大鼠单根骨骼肌纤维中研究了染发剂主要成分PPD对收缩蛋白和肌浆网(SR)功能的药理作用。我们的研究结果如下:1)在50 mM PPD条件下,PPD使透皮纤维产生正向收缩,Mg2+可完全抑制该收缩,咖啡因则产生负向收缩,提示PPD引起的肌肉收缩是由SR释放Ca2+所致。2)PPD以浓度依赖方式抑制SR对Ca2+的摄取。3)PPD极大地加速了SR的Ca2+泄漏,给予50 mM PPD 3分钟后,Ca2+残留量仅为3%。4)在低Ca2+浓度区域,钙诱导钙释放(CICR)加速,给予50 mM PPD后,在pCa为7.5时释放的Ca2+量增加高达63%。5)PPD不影响收缩系统对Ca2+的敏感性。因此推测,PPD可通过促进CICR和SR的Ca2+泄漏导致横纹肌溶解,继而Ca2+浓度升高,并引发肌肉的后续变化,如持续收缩、肌肉结构的不可逆改变和/或高代谢变化。

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