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成年豚鼠腹腔神经节神经元培养物中的钾电流及其受毒蕈碱和P物质的调节

Potassium currents and their modulation by muscarine and substance P in neuronal cultures from adult guinea pig celiac ganglia.

作者信息

Vanner S, Evans R J, Matsumoto S G, Surprenant A

机构信息

Vollum Institute, Oregon Health Sciences University, Portland 97201.

出版信息

J Neurophysiol. 1993 May;69(5):1632-44. doi: 10.1152/jn.1993.69.5.1632.

Abstract
  1. Intracellular microelectrode and whole-cell patch-clamp recordings were obtained from adult guinea pig celiac ganglion neurons grown in tissue culture for 7-14 days. Over 90% of neurons showed phasic-type action-potential discharge with the use of either type of recording electrode; they stained immunohistochemically for catecholamines, tyrosine hydroxylase, and neuropeptide Y. Input resistance (140 M omega) and action-potential amplitude (103 mV) were significantly greater with whole-cell than with microelectrode recordings, but other passive electrical properties were similar. 2. Five potassium currents were characterized: an apamin-sensitive after hyperpolarizing current (IAHP), an apamin and tetraethylammonium-insensitive slow IAHP, an M-like current, a transient outward IA current, and a delayed rectifier IK current. A hyperpolarization-activated cationic Ih current was also present. The first three currents were not observed with whole-cell recordings. 3. Cadmium (200 microM), cobalt (1 mM), lanthanum (30 microM), or a low calcium/high magnesium solution blocked both IAHPS and the M-like current; barium (1 mM) also blocked these currents. 4. Kinetics of the M-like current were best described by a double exponential fit to deactivating tail currents with time constants of 50 and 390 ms at -50 mV. The apamin-sensitive and slow IAHP decayed exponentially with time constants of 145 ms and 3.5 s, respectively. There was no correlation between occurrence of M-like current (95% of neurons) and slow IAHP (40% of neurons), nor any correlation between magnitude of M-like current and IAHP in those cells exhibiting both currents. 5. Muscarine and substance P (SP) caused depolarizations or inward currents (under voltage clamp) at the resting potential (-55 mV) associated with a decreased membrane conductance. The slow IAHP and the M-like current, but not the apamin-sensitive IAHP nor the IA, were blocked by muscarine and SP (IC50 3 microM and 100 nM, respectively). Muscarine and SP also decreased a "leak" potassium current. 6. We conclude that celiac neurons express two calcium-dependent IAHP currents and a calcium-dependent M-current; these are seen by fine-tipped intracellular microelectrodes but not by whole-cell patch electrodes. These currents are not required for spike frequency accommodation. Muscarine and SP reduce these currents, as well as voltage-independent leakage potassium current.
摘要
  1. 从在组织培养中生长7 - 14天的成年豚鼠腹腔神经节神经元获取细胞内微电极和全细胞膜片钳记录。使用任何一种记录电极时,超过90%的神经元表现出相位型动作电位发放;它们经免疫组织化学染色可检测到儿茶酚胺、酪氨酸羟化酶和神经肽Y。全细胞膜片钳记录的输入电阻(140 MΩ)和动作电位幅度(103 mV)显著大于微电极记录,但其他被动电学特性相似。2. 鉴定出五种钾电流:一种对蜂毒明肽敏感的超极化后电流(IAHP)、一种对蜂毒明肽和四乙铵不敏感的缓慢IAHP、一种M样电流、一种瞬时外向IA电流和一种延迟整流IK电流。还存在一种超极化激活的阳离子Ih电流。前三种电流在全细胞膜片钳记录中未观察到。3. 镉(200 μM)、钴(1 mM)、镧(30 μM)或低钙/高镁溶液可阻断IAHPS和M样电流;钡(1 mM)也可阻断这些电流。4. M样电流的动力学最好用双指数拟合失活尾电流来描述,在 - 50 mV时时间常数分别为50和390 ms。对蜂毒明肽敏感的IAHP和缓慢IAHP分别以145 ms和3.5 s的时间常数指数衰减。M样电流(95%的神经元出现)和缓慢IAHP(40%的神经元出现)之间无相关性,在同时出现这两种电流的细胞中,M样电流幅度和IAHP之间也无相关性。5. 毒蕈碱和P物质(SP)在静息电位( - 55 mV)时引起去极化或内向电流(电压钳下),伴有膜电导降低。缓慢IAHP和M样电流,但对蜂毒明肽敏感的IAHP和IA不被毒蕈碱和SP阻断(IC50分别为3 μM和100 nM)。毒蕈碱和SP还降低一种“泄漏”钾电流。6. 我们得出结论,腹腔神经节神经元表达两种钙依赖性IAHP电流和一种钙依赖性M电流;这些电流通过尖细的细胞内微电极可见,但全细胞膜片电极不可见。这些电流对于动作电位频率适应并非必需。毒蕈碱和SP可降低这些电流以及电压非依赖性泄漏钾电流。

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