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小鼠巨噬细胞中的内向整流:负电阻区域的证据。

Inward rectification in mouse macrophages: evidence for a negative resistance region.

作者信息

Gallin E K, Livengood D R

出版信息

Am J Physiol. 1981 Jul;241(1):C9-17. doi: 10.1152/ajpcell.1981.241.1.C9.

Abstract

The electrical properties of cultured mouse thioglycollate-induced peritoneal macrophages were investigated using intracellular recording techniques. Thirty-five percent of the cells studied had membrane potentials ranging from -65 to -95 mV and exhibited S-shaped, steady-state current-voltage (I-V) relationships containing a transitional region. Analysis of currents in the transitional region from the rate of rise and fall of the voltage responses to current pulses indicated the presence of a negative resistance region in this area. Tetrodotoxin (3 X 10(-5) M), cobalt chloride (3 mM), 4-aminopyridine (4 mM), and tetraethylammonium chloride (8 mM) did not eliminate the transitional region of the I-V curves, whereas addition of barium chloride (4 mM) and rubidium chloride (3 mM) did. Increasing the external concentration of potassium shifted the I-V relationship horizontally along the current axis but did not eliminate the transitional region. These data indicate that the inward rectification and the negative resistance region probably result from a voltage-dependent potassium conductance.

摘要

利用细胞内记录技术研究了培养的小鼠巯基乙酸诱导的腹腔巨噬细胞的电特性。所研究的细胞中有35%的细胞膜电位在-65至-95mV之间,并呈现出包含过渡区域的S形稳态电流-电压(I-V)关系。通过对电流脉冲电压响应的上升和下降速率分析过渡区域的电流,表明该区域存在负电阻区域。河豚毒素(3×10⁻⁵M)、氯化钴(3mM)、4-氨基吡啶(4mM)和氯化四乙铵(8mM)并未消除I-V曲线的过渡区域,而添加氯化钡(4mM)和氯化铷(3mM)则消除了该区域。增加细胞外钾离子浓度会使I-V关系沿电流轴水平移动,但并未消除过渡区域。这些数据表明内向整流和负电阻区域可能是由电压依赖性钾电导引起的。

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