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细胞培养中大鼠肠肌间神经元的电压依赖性钠电流和钙电流

Voltage-dependent sodium and calcium currents of rat myenteric neurons in cell culture.

作者信息

Franklin J L, Willard A L

机构信息

Department of Physiology, University of North Carolina, Chapel Hill 27599-7545.

出版信息

J Neurophysiol. 1993 Apr;69(4):1264-75. doi: 10.1152/jn.1993.69.4.1264.

Abstract
  1. Inward currents of myenteric neurons that had been grown in cell cultures prepared from the small intestines of neonatal or young adult rats were studied with tight seal whole-cell recordings. The kinetic and pharmacological properties of these neurons were analyzed. 2. All neurons had rapidly inactivating, tetrodotoxin (TTX)-sensitive Na+ currents that could be evoked by steps to potentials more positive than -50 mV. Holding potentials more negative than -65 mV were necessary to remove steady-state inactivation. No TTX-insensitive Na+ currents were observed, thus the ability of subsets of myenteric neurons to fire action potentials in TTX must depend upon their density of Ca2+ channels. 3. Ca2+ and Ba2+ currents were studied in neurons perfused internally with CsCl to block K+ currents and bathed with solutions containing TTX and antagonists of K+ channels. Currents were significantly larger when Ba2+ replaced Ca2+ as the charge carrier. Cd2+ and Gd3+ blocked Ca2+ and Ba2+ currents rapidly and reversibly. High-voltage-activated (HVA) Ca2+ and Ba2+ currents were observed in all neurons. Too few neurons possessed detectable low-voltage-activated Ca2+ currents to permit detailed study. 4. HVA Ca2+ and Ba2+ currents evoked from holding potentials more negative than -50 mV could be divided into two kinetically distinguishable components with very different rates of inactivation. A "decaying" component inactivated relatively rapidly with a t1/2 of 25-75 ms. A "sustained" component inactivated quite slowly with a t1/2 of 1-5 s. At more positive holding potentials, only the sustained component was observed. Although the two kinetically distinguishable components had different current-voltage relationships, they had indistinguishable rates of deactivation: a single time constant was sufficient to fit the decay of tail currents. The relative amplitudes of the two components varied considerably among different neurons. 5. Ca2+ and Ba2+ currents could be divided into two pharmacologically distinct components on the basis of sensitivity to omega-conotoxin GVIA (I omega CgTX) and to dihydropyridine antagonists (IDHP). At holding potentials more positive than -70 mV, a combination of omega CgTX and DHPs completely blocked Ca2+ and Ba2+ currents in most neurons. At holding potentials more negative than -50 mV, I omega CgTX and IDHP each contained decaying and sustained components. I omega CgTX activated more slowly than did IDHP. The DHP agonist Bay K8644 increased the amplitude of IDHP and slowed its rate of deactivation. 6. The results suggest that myenteric neurons may have as few as two subtypes of HVA Ca2+ channels; omega CgTX-sensitive ones and DHP-sensitive ones.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用紧密封接全细胞记录法,研究了从新生或幼年成年大鼠小肠制备的细胞培养物中生长的肠肌间神经元的内向电流。分析了这些神经元的动力学和药理学特性。2. 所有神经元都具有快速失活的、对河豚毒素(TTX)敏感的Na⁺电流,该电流可通过将电位阶跃到比 -50 mV更正的电位来诱发。需要比 -65 mV更负的钳制电位来消除稳态失活。未观察到对TTX不敏感的Na⁺电流,因此肠肌间神经元亚群在TTX中产生动作电位的能力必须取决于其Ca²⁺通道的密度。3. 在内部灌注CsCl以阻断K⁺电流并浸泡在含有TTX和K⁺通道拮抗剂的溶液中的神经元中研究Ca²⁺和Ba²⁺电流。当Ba²⁺替代Ca²⁺作为电荷载体时,电流明显更大。Cd²⁺和Gd³⁺快速且可逆地阻断Ca²⁺和Ba²⁺电流。在所有神经元中均观察到高电压激活(HVA)的Ca²⁺和Ba²⁺电流。具有可检测到的低电压激活Ca²⁺电流的神经元太少,无法进行详细研究。4. 从比 -50 mV更负的钳制电位诱发的HVA Ca²⁺和Ba²⁺电流可分为两个动力学上可区分的成分,其失活速率非常不同。一个“衰减”成分失活相对较快,t1/2为25 - 75毫秒。一个“持续”成分失活相当缓慢,t1/2为1 - 5秒。在更正的钳制电位下,仅观察到持续成分。尽管这两个动力学上可区分的成分具有不同的电流 - 电压关系,但它们具有难以区分的失活速率:一个单一的时间常数足以拟合尾电流的衰减。这两个成分的相对幅度在不同神经元之间有很大差异。5. 根据对ω - 芋螺毒素GVIA(IωCgTX)和二氢吡啶拮抗剂(IDHP)的敏感性,Ca²⁺和Ba²⁺电流可分为两个药理学上不同的成分。在比 -70 mV更正的钳制电位下,ωCgTX和DHPs的组合在大多数神经元中完全阻断Ca²⁺和Ba²⁺电流。在比 -50 mV更负的钳制电位下,IωCgTX和IDHP各自都包含衰减和持续成分。IωCgTX的激活比IDHP更慢。DHP激动剂Bay K8644增加了IDHP的幅度并减慢了其失活速率。6. 结果表明,肠肌间神经元可能只有两种HVA Ca²⁺通道亚型;对ωCgTX敏感的和对DHP敏感 的。(摘要截断于400字)

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