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线粒体细胞病中脑内细胞内游离镁含量低。

Low brain intracellular free magnesium in mitochondrial cytopathies.

作者信息

Barbiroli B, Iotti S, Cortelli P, Martinelli P, Lodi R, Carelli V, Montagna P

机构信息

Biochimica Clinica, Dipartimento di Medicina Clinica e Biotecnologia Applicata D. Campanacci, Bologna, Italy.

出版信息

J Cereb Blood Flow Metab. 1999 May;19(5):528-32. doi: 10.1097/00004647-199905000-00007.

Abstract

The authors studied, by in vivo phosphorus magnetic resonance spectroscopy (31P-MRS), the occipital lobes of 19 patients with mitochondrial cytopathies to clarify the functional relation between energy metabolism and concentration of cytosolic free magnesium. All patients displayed defective mitochondrial respiration with low phosphocreatine concentration [PCr] and high inorganic phosphate concentration [Pi] and [ADP]. Cytosolic free [Mg2+] and the readily available free energy (defined as the actual free energy released by the exoergonic reaction of ATP hydrolysis, i.e., deltaG(ATPhyd)) were abnormally low in all patients. Nine patients were treated with coenzyme Q10 (CoQ), which improved the efficiency of the respiratory chain, as shown by an increased [PCr], decreased [Pi] and [ADP], and increased availability of free energy (more negative value of deltaG(ATPhyd)). Treatment with CoQ also increased cytosolic free [Mg2+] in all treated patients. The authors findings demonstrate low brain free [Mg2+] in our patients and indicate that it resulted from failure of the respiratory chain. Free Mg2+ contributes to the absolute value of deltaG(ATPhyd). The results also are consistent with the view that cytosolic [Mg2+] is regulated in the intact brain cell to equilibrate, at least in part, any changes in rapidly available free energy.

摘要

作者通过体内磷磁共振波谱法(31P-MRS)研究了19例线粒体细胞病患者的枕叶,以阐明能量代谢与胞质游离镁浓度之间的功能关系。所有患者均表现出线粒体呼吸功能缺陷,磷酸肌酸浓度[PCr]低,无机磷酸盐浓度[Pi]和[ADP]高。所有患者的胞质游离[Mg2+]和易于利用的自由能(定义为ATP水解的放能反应释放的实际自由能,即deltaG(ATPhyd))均异常低。9例患者接受了辅酶Q10(CoQ)治疗,这提高了呼吸链的效率,表现为[PCr]增加、[Pi]和[ADP]降低以及自由能可用性增加(deltaG(ATPhyd)的负值更大)。CoQ治疗还使所有接受治疗的患者的胞质游离[Mg2+]增加。作者的研究结果表明我们的患者脑游离[Mg2+]低,并表明这是由呼吸链功能衰竭导致的。游离Mg2+有助于deltaG(ATPhyd)的绝对值。结果也与以下观点一致,即完整脑细胞中的胞质[Mg2+]受到调节,以至少部分平衡快速可用自由能的任何变化。

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