首页> 美国卫生研究院文献>The Journal of Physiology >Electrical properties associated with wide intercellular clefts in rabbit Purkinje fibres.
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Electrical properties associated with wide intercellular clefts in rabbit Purkinje fibres.

机译:与兔浦肯野纤维中宽细胞间裂有关的电学性质。

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摘要

1. Rabbit Purkinje fibres were studied using micro-electrode recordings of electrical activity or a two-micro-electrode voltage clamp. Previous morphological work had suggested that these preparations offer structural advantages for the analysis of ionic permeability mechanisms. 2. Viable preparations could be obtained consistently by exposure to a K glutamate Tyrode solution during excision and recovery. In NaCl Tyrode solution, the action potential showed a large overshoot and fully developed plateau, but no pacemaker depolarization at negative potentials. 3. The passive electrical properties were consistent with morphological evidence for the accessibility of cleft membranes within the cell bundle. Electrotonic responses to intracellular current steps showed the behaviour expected for a simple leaky capacitative cable. Capacitative current transients under voltage clamp were changed very little by an eightfold reduction in the external solution conductivity. 4. Slow current changes attributable to K depletion were small compared to those found in other cardiac preparations. The amount of depletion was close to that predicted by a cleft model which assumed free K diffusion in 1 micron clefts. 5. Step depolarizations over the plateau range of potentials evoked a slow inward current which was resistant to tetrodotoxin but blocked by D600. 6. Strong depolarizations to potentials near 0 mV elicited a transient outward current and a slowly activating late outward current. Both components resembled currents found in sheep or calf Purkinje fibres. 7. These experiments support previous interpretations of slow plateau currents in terms of genuine permeability changes. The rabbit Purkinje fibre may allow various ionic channels to be studied with relatively little interference from radial non-uniformities in membrane potential or ion concentration.
机译:1.使用电活动的微电极记录或两微电极电压钳研究兔浦肯野纤维。先前的形态学研究表明,这些制剂为分析离子渗透性机理提供了结构优势。 2.在切除和恢复过程中,通过将谷氨酸钾提洛德溶液暴露,可以始终如一地获得可行的制剂。在氯化钠泰罗德(NaCl Tyrode)溶液中,动作电位显示出较大的过冲并完全形成平稳状态,但在负电位下没有起搏器去极化。 3.被动电学性质与细胞束内裂膜可及性的形态学证据一致。对细胞内电流阶跃的电响应表明了简单的漏电电容电缆的预期性能。由于外部溶液电导率降低了八倍,因此电压钳制下的电容性电流瞬变变化很小。 4.与其他心脏制剂相比,由钾耗竭引起的缓慢电流变化小。耗竭量接近于裂缝模型所预测的损耗,该模型假定在1微米裂缝中存在自由K扩散。 5.在平台电位范围内的逐步去极化引起缓慢的内向电流,该电流对河豚毒素具有抗性但被D600阻断。 6.强去极化至接近0 mV的电位会引起瞬态向外电流,并缓慢激活晚期向外电流。两种成分都类似于绵羊或小牛浦肯野纤维中的电流。 7.这些实验支持先前关于真实渗透率变化的缓慢高原电流的解释。兔浦肯野纤维可允许研究各种离子通道,而膜电位或离子浓度受到径向不均匀性的干扰相对较小。

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