首页> 美国卫生研究院文献>The Journal of Physiology >Electrophysiological properties of three types of granulocytes in circulating blood of the newt.
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Electrophysiological properties of three types of granulocytes in circulating blood of the newt.

机译:circulating循环血液中三种类型的粒细胞的电生理特性。

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摘要

1. The electrophysiological properties of three subtypes of granulocytes obtained from the circulating blood of the newt, Triturus pyrrhogaster, were studied using the whole-cell variation of the patch-electrode voltage-clamp technique. 2. Neutrophils were identified by their multilobulated nucleus in the cytoplasm. Basophils and eosinophils, having characteristic granular structures in their cells, could definitely be distinguished from other leucocytes. The reliability of cellular identification using phase-contrast microscopy was confirmed by fixing and staining the granulocytes with Wright's solution. 3. In neutrophils under current-clamp conditions, a hyperpolarization-induced conductance increase was observed. With depolarization, however, no changes in regenerative potential were detected. When voltage clamped in standard saline (containing 96 mM-NaCl), hyperpolarizing voltage pulses to a potential more negative than -90 mV evoked slowly decaying inward currents. 4. The hyperpolarization-evoked membrane currents in neutrophils were identified as anomalous rectifying K+ currents, since (1) externally applied Cs+ (0.1 or 1 mM) or Ba2+ (1 mM) produced suppressive effects on the currents, (2) replacement of external Na+ with choline ions eliminated the decay of macroscopically observed currents, and (3) both the amplitude and kinetic properties of the currents were strongly dependent on membrane potential as well as on external K+ concentration; the activation of the conductance depended on the electrochemical force for K+ rather than on membrane potential alone. The magnitude of steady-state conductance was roughly proportional to the square root of the external K+ concentration. 5. In basophils and eosinophils, no major time- or voltage-dependent increase in conductance was detected at voltages between +20 and -130 mV. However, under current-clamp conditions, spontaneous fluctuation of zero-current potentials was clearly apparent, presumably due to the activities of some ion channels generating a small amount of current flux through the membranes of these cells. 6. It was concluded that the three subtypes of granulocytes in the newt differ considerably not only in appearance and structure but also in the electrical properties of their membranes. The anomalous rectifying K+ channels in neutrophils may serve to determine the resting potential of the cell at K+ equilibrium potential. The closure of the channels at depolarization might facilitate the maintenance of depolarization triggered by stimuli accompanying current influx.
机译:1.使用膜片电极电压钳技术的全细胞变异研究了从the的循环血液中获得的三种亚型粒细胞的电生理特性。 2.中性粒细胞通过其在细胞质中的多叶核得以鉴定。嗜碱性粒细胞和嗜酸性粒细胞在其细胞中具有特征性的颗粒结构,可以肯定地与其他白细胞区分开。通过用赖特氏溶液固定并染色粒细胞,可以证实使用相差显微镜进行细胞鉴定的可靠性。 3.在电流钳条件下的中性粒细胞中,观察到超极化诱导的电导增加。然而,通过去极化,未检测到再生电位的变化。当将电压钳制在标准盐水(含96 mM-NaCl)中时,超极化电压脉冲的电位比-90 mV负,会引起缓慢衰减的内向电流。 4.中性粒细胞中超极化诱发的膜电流被识别为异常整流K +电流,因为(1)外部施加的Cs +(0.1或1 mM)或Ba2 +(1 mM)会对电流产生抑制作用,(2)外部置换带有胆碱离子的Na +消除了宏观观察到的电流的衰减,并且(3)电流的幅度和动力学性质都强烈依赖于膜电位以及外部K +浓度;电导的激活取决于K +的电化学力,而不是仅取决于膜电位。稳态电导的大小大致与外部K +浓度的平方根成正比。 5.在嗜碱性粒细胞和嗜酸性粒细胞中,在+20至-130 mV的电压下,未检测到电导率随时间或电压的主要增加。然而,在电流钳制条件下,零电流电位的自发波动是显而易见的,这可能是由于某些离子通道的活动,这些离子通道通过这些电池的膜产生了少量的电流。 6.结论是,the中的粒细胞的三种亚型不仅在外观和结构上而且在其膜的电特性上也有很大差异。中性粒细胞中的异常整流K +通道可用于确定细胞在K +平衡电位下的静息电位。在去极化时关闭通道可能有助于维持由伴随电流涌入的刺激触发的去极化。

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