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人绒毛膜胎盘血管细胞中的元素图谱:2. 氯化镁和硫酸镁的作用。

Elemental maps in human allantochorial placental vessels cells: 2. MgCl2 and MgSO4 effects.

作者信息

Michelet-Habchi Claire, Barberet Philippe, Dutta Raj Kumar, Moretto Philippe, Guiet-Bara Andrée, Bara Michel

机构信息

Centre d'Etudes Nucléaires de Bordeaux-Gradignan, Interface Physique-Biologie, Le Haut-Vigneau, BP 120, 331 75 Gradignan Cedex, France.

出版信息

Magnes Res. 2003 Sep;16(3):171-5.

Abstract

Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. The membrane potential, a regulator of vascular tone, is a function of the physiological activities of ionic channels (particularly, K+ and Ca2+ channels in these cells). These channels regulate the ionic distribution into these cells. Micro-Particule Induced X-ray Emission (PIXE) analysis was applied to determine the ionic composition of vascular smooth muscle cells (VSMC) and of vascular endothelial cells (VEC) in the placental human allantochorial vessels in a physiological medium (Hanks' solution) modified by the addition of 2 mM MgCl2 or 2 mM MgSO4 which block the calcium-sensitive K+ channels (K(Ca)), the ATP-sensitive K+ channels (K(ATP)) and the voltage-sensitive K+ (K(df)) and Ca2+ channels. In VSMC (media layer), the addition of MgCl2 induced no modification of the K, Cl, P, S and Ca concentrations but increased the Na and Mg concentrations and the addition of MgSO4 only significantly increased the Mg concentration, the other ion concentrations remaining constant. In endothelium (VEC), MgCl2 or MgSO4 addition implicated the same observations as in VSMC. These results confirmed the blockage of K(df), K(Ca), K(ATP) and Ca channels in VSMC and VEC by magnesium salts, the relationship between Mg2+ ions and internal Na and demonstrated the possible intervention of a Na+/Mg2+ exchanger.

摘要

已知细胞外镁盐会干扰细胞膜中的离子通道。膜电位是血管张力的调节因子,它是离子通道(特别是这些细胞中的K+和Ca2+通道)生理活动的函数。这些通道调节离子向这些细胞内的分布。应用微粒子诱导X射线发射(PIXE)分析来确定胎盘人绒毛膜血管中血管平滑肌细胞(VSMC)和血管内皮细胞(VEC)在添加了2 mM MgCl2或2 mM MgSO4的生理介质(汉克斯溶液)中的离子组成,这些物质会阻断钙敏感性K+通道(K(Ca))、ATP敏感性K+通道(K(ATP))以及电压敏感性K+(K(df))和Ca2+通道。在VSMC(中层)中,添加MgCl2不会改变K、Cl、P、S和Ca的浓度,但会增加Na和Mg的浓度,而添加MgSO4仅显著增加Mg的浓度,其他离子浓度保持不变。在内皮(VEC)中,添加MgCl2或MgSO4得到的观察结果与VSMC中的相同。这些结果证实了镁盐对VSMC和VEC中K(df)、K(Ca)、K(ATP)和Ca通道的阻断作用,Mg2+离子与细胞内Na之间的关系,并证明了Na+/Mg2+交换体可能的干预作用。

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