首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Elemental maps in human allantochorial placental vessels cells: 1. High K~+ and acetylcholine effects
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Elemental maps in human allantochorial placental vessels cells: 1. High K~+ and acetylcholine effects

机译:人腹膜胎盘血管细胞中的元素图:1.高钾离子和乙酰胆碱作用

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Regulation of vascular tone in the fetal extracorporeal circulation most likely depends on circulating hormones, local paracrine mechanisms and changes in membrane potential of vascular smooth muscle cells (VSMCs) and of vascular endothelial cells (VECs). The membrane potential is a function of the physiological activities of ionic channels (particularly, K~+ and Ca~(2+) channels in these cells). These channels regulate the ionic distribution into these cells. Micro-particle induced X-ray emission (PIXE) analysis was applied to determine the ionic composition of VSMC and of VEC in the placental human allantochorial vessels in a physiological survival medium (Hanks' solution) modified by the addition of acetylcholine (ACh: which opens the calcium-sensitive K~+ channels, K_(Ca)) and of high concentration of K~+ (which blocks the voltage-sensitive K~+ channels, K_(df)). In VSMC (media layer), the addition of ACh induced no modification of the Na, K, Cl, P, S, Mg and Ca concentrations and high K~+ medium increased significantly the Cl and K concentrations, the other ion concentrations remaining constant. In endothelium (VEC), ACh addition implicated a significant increase of Na and K concentration, and high K~+ medium, a significant increase in Cl and K concentration. These results indicated the importance of K_(df), K_(Ca) and K_(ATP) channels in the regulation of K~+ intracellular distribution in VSMC and VEC and the possible intervention of a Na―K―2Cl cotransport and corroborated the previous elec-trophysiological data.
机译:胎儿体外循环中血管张力的调节很可能取决于循环激素,局部旁分泌机制以及血管平滑肌细胞(VSMC)和血管内皮细胞(VEC)的膜电位变化。膜电位是离子通道(特别是这些细胞中的K〜+和Ca〜(2+)通道)的生理活性的函数。这些通道调节进入这些细胞的离子分布。微粒诱导X射线发射(PIXE)分析用于确定在通过添加乙酰胆碱(ACh:修饰)的生理学存活培养基(汉克斯溶液)中的胎盘人腹膜血管中VSMC和VEC的离子组成。会打开钙敏感的K〜+通道K_(Ca))和高浓度的K〜+(这会阻塞电压敏感的K〜+通道K_(df))。在VSMC(介质层)中,添加ACh不会引起Na,K,Cl,P,S,Mg和Ca浓度的改变,而高K +介质会显着增加Cl和K的浓度,其他离子浓度保持恒定。在内皮细胞(VEC)中,添加ACh意味着Na和K浓度显着增加,而高K +介质则表明Cl和K浓度显着增加。这些结果表明K_(df),K_(Ca)和K_(ATP)通道在调节VSMC和VEC中K〜+细胞内分布中的重要性以及Na〜K‐2Cl共转运的可能干预并证实了电生理数据。

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