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对生长型心脏细胞钾外流的区室分析。

Compartmental analysis of potassium efflux from growth-oriented heart cells.

作者信息

Horres C R, Lieberman M

出版信息

J Membr Biol. 1977 Jun 15;34(4):331-50. doi: 10.1007/BF01870307.

Abstract

Radioisotopic flux studies were initiated with a new preparation of growth-oriented heart cells to determine the contribution of heterogeneous cell types and the limitations of extracellular diffusion in quantitating the passive movement of potassium ions. The efflux of potassium-42 from contractile preparations, which contain two populations of cells, cardiac muscle and fibroblastlike, could be resolved into two components similar to that described for naturally occurring preparations of cardiac muscle. Compartmental analysis of the efflux data, using analog and digital computational methods, resolved the tracer kinetics into a slow compartment (k=0.015 min-1) associated with fibroblastlike cells and a fast compartment (k=0.067 min-1) associated with the cardiac muscle cells. The rate constants derived from compartmental analysis were independent of tracer equilibration and preparation dry weight. Analytical measurements of the preparations provided a quantitative basis for determing the transmembrane potassium fluxes from the tracer kinetics. Cardiac muscle cells stimulated at a rate of 150 min-1 in the presence of 5.4 mM external potassium were found to have a potassium efflux of 15.7 pmoles cm-2sec-1 whereas the value obtained for the fibroblastlike cells was 1.88 pmoles cm-2sec-1. Diffusional limitations of 42K efflux were analyzed for several important variables which can affect isotopic reflux, namely, transmembrane flux, cell volume-to-surface area and cell packing fraction.

摘要

利用新制备的生长取向型心脏细胞开展放射性同位素通量研究,以确定异质细胞类型的贡献以及细胞外扩散在定量钾离子被动转运方面的局限性。来自收缩性制剂(其中包含心肌细胞和成纤维样细胞这两种细胞群体)的42K外流可分解为两个成分,这与天然存在的心肌制剂中所描述的情况相似。使用模拟和数字计算方法对流出数据进行房室分析,将示踪动力学解析为与成纤维样细胞相关的慢房室(k = 0.015分钟-1)和与心肌细胞相关的快房室(k = 0.067分钟-1)。从房室分析得出的速率常数与示踪剂平衡和制剂干重无关。制剂的分析测量为根据示踪动力学确定跨膜钾通量提供了定量基础。发现在5.4 mM外部钾存在的情况下,以150分钟-1的速率刺激的心肌细胞的钾外流为15.7皮摩尔·厘米-2·秒-1,而成纤维样细胞的该值为1.88皮摩尔·厘米-2·秒-1。针对几个可能影响同位素回流的重要变量,即跨膜通量、细胞体积与表面积之比以及细胞堆积分数,分析了42K外流的扩散限制。

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