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钙离子通过暴露于磁场中的膜片钳细胞的转运。

Ca2+ ion transport through patch-clamped cells exposed to magnetic fields.

作者信息

Höjevik P, Sandblom J, Galt S, Hamnerius Y

机构信息

Department of Microwave Technology, Chalmers University of Technology, Göteborg, Sweden.

出版信息

Bioelectromagnetics. 1995;16(1):33-40. doi: 10.1002/bem.2250160109.

DOI:10.1002/bem.2250160109
PMID:7748201
Abstract

The total current of Ca2+ ions through patch-clamped cell membranes was measured while exposing clonal insulin-producing beta-cells (RINm5F) to a combination of DC and AC magnetic fields at so-called cyclotron resonance conditions. Previous experimental evidence supports the theory that a resonant interaction between magnetic fields and organisms can exist. This experiment was designed to test one possible site of interaction: channels in the cell membrane. The transport of Ca2+ ions through the protein channels of the plasma membrane did not show any resonant behavior in the frequency range studied.

摘要

在所谓的回旋共振条件下,将克隆的胰岛素分泌β细胞(RINm5F)暴露于直流和交流磁场组合中,同时测量通过膜片钳细胞膜的Ca2+离子总电流。先前的实验证据支持磁场与生物体之间可能存在共振相互作用的理论。本实验旨在测试一个可能的相互作用位点:细胞膜中的通道。在研究的频率范围内,Ca2+离子通过质膜蛋白通道的转运未显示出任何共振行为。

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