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鸡心脏细胞中的机械激活电流。

Mechanically activated currents in chick heart cells.

作者信息

Hu H, Sachs F

机构信息

Biophysical Sciences, 120 Cary Hall, SUNY at Buffalo, Buffalo, NY 14214, USA.

出版信息

J Membr Biol. 1996 Dec;154(3):205-16. doi: 10.1007/s002329900145.

Abstract

As predicted from stretch-induced changes of rate and rhythm in the heart, acutely isolated embryonic chick heart cells exhibit whole-cell mechanosensitive currents. These currents were evoked by pressing on cells with a fire polished micropipette and measured through a perforated patch using a second pipette. The currents were carried by Na+ and K+ but not Cl-, and were independent of external Ca2+. The currents had linear I/V curves reversing at -16 mV and were completely blocked by Gd3+ >/= 30 microM and Grammostola spatulata venom at a dilution of 1:1000. Approximately 20% of cells showed time dependent inactivation. In contrast to direct mechanical stimulation, hypotonic volume stress produced an increase in conductance for anions rather than cations-the two stimuli are not equivalent. The cells had two types of stretch-activated ion channels (SACs): a 21 pS nonspecific cation-selective reversing at -2 mV and a 90 pS K+ selective reversing at -70 mV in normal saline. The activity of SACs was strongly correlated with the presence of whole-cell currents. Both the whole-cell currents and SACs were blocked by Gd3+ and by Grammostola spatulata spider venom. Mechanical stimulation of spontaneously active cells increased the beating rate and this effect was blocked by Gd3+. We conclude that physiologically active mechanosensitive currents arise from stretch activated ion channels.

摘要

正如从心脏拉伸诱导的速率和节律变化所预测的那样,急性分离的胚胎鸡心脏细胞表现出全细胞膜机械敏感电流。这些电流通过用火焰抛光的微吸管按压细胞来诱发,并使用第二个吸管通过穿孔膜片钳进行测量。这些电流由Na⁺和K⁺携带而不是Cl⁻,并且与细胞外Ca²⁺无关。这些电流具有在-16 mV处反转的线性I/V曲线,并且在浓度≥30 μM的Gd³⁺和稀释度为1:1000的Grammostola spatulata毒液作用下被完全阻断。大约20%的细胞表现出时间依赖性失活。与直接机械刺激相反,低渗体积应激导致阴离子而非阳离子的电导增加——这两种刺激并不等效。这些细胞有两种类型的拉伸激活离子通道(SACs):在生理盐水中,一种21 pS的非特异性阳离子选择性通道在-2 mV处反转,一种90 pS的K⁺选择性通道在-70 mV处反转。SACs的活性与全细胞电流的存在密切相关。全细胞电流和SACs都被Gd³⁺和Grammostola spatulata蜘蛛毒液阻断。对自发活动细胞的机械刺激增加了搏动速率,并且这种效应被Gd³⁺阻断。我们得出结论,生理活性的机械敏感电流源自拉伸激活离子通道。

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