首页> 美国卫生研究院文献>The Journal of Physiology >Phenotype-specific expression of T-type calcium channels in neurons of the major pelvic ganglion of the adult male rat.
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Phenotype-specific expression of T-type calcium channels in neurons of the major pelvic ganglion of the adult male rat.

机译:成年雄性大鼠主要骨盆神经节神经元中T型钙通道的表型特异性表达。

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摘要

1. Neurons from the major pelvic ganglia (MPG) of adult male rats were enzymatically dissociated and the neurochemical phenotype and Ca2+ current properties examined. 2. Neurons were divided into two subpopulations based on the presence or absence of low threshold T-type Ca2+ channels. The subpopulation of neurons expressing T-type Ca2+ channels was characterized by a mean diameter of 34 microns, a mean membrane capacitance (Cm) of 72 pF, tyrosine hydroxylase immunoreactivity (TH-IR), a lack of NADPH diaphorase (NADPHd) reactivity and a high degree of alpha 2-adrenoceptor-mediated Ca2+ current inhibition (60%). 3. The subpopulation of neurons without overt T-type Ca2+ channels had a mean diameter of 23 microns, a mean Cm of 30 pF, a lack of TH-IR and a moderate degree of alpha 2-adrenoceptor-mediated Ca2+ current inhibition (27%). About 50% of this subpopulation stained positively for NADPHd. 4. The contribution of high threshold N-type Ca2+ channels (60-70%), as determined from omega-conotoxin GVIA inhibition, and L-type Ca2+ channels (< 10%), as determined from nifedipine inhibition, to the whole-cell Ca2+ current was similar for both subpopulations of neurons. 5. These data indicate that the MPG contain at least two subpopulations of postganglionic neurons, i.e. adrenergic and non-adrenergic, with distinct electrophysiological and neurochemical properties. Furthermore, we propose that the presence or absence of T-type Ca2+ channels provides an electrophysiological means of identifying adrenergic and non-adrenergic phenotype, respectively, in neurons of the male rat MPG.
机译:1.将成年雄性大鼠主要骨盆神经节(MPG)的神经元酶解,并检查其神经化学表型和Ca2 +电流特性。 2.根据是否存在低阈值T型Ca2 +通道,将神经元分为两个亚群。表达T型Ca2 +通道的神经元亚群的特征是平均直径为34微米,平均膜电容(Cm)为72 pF,酪氨酸羟化酶免疫反应性(TH-IR),缺乏NADPH心肌黄递酶(NADPHd)反应性和高度的α2-肾上腺素受体介导的Ca2 +电流抑制(60%)。 3.没有明显的T型Ca2 +通道的神经元亚群的平均直径为23微米,平均Cm为30 pF,缺乏TH-IR,并且具有中等程度的α2-肾上腺素受体介导的Ca2 +电流抑制作用(27 %)。该亚群中约有50%的NADPHd染色呈阳性。 4.根据ω-芋螺毒素GVIA抑制确定的高阈值N型Ca2 +通道(60-70%)和根据硝苯地平抑制确定的L型Ca2 +通道(<10%)对整个神经元的两个亚群的细胞Ca2 +电流均相似。 5.这些数据表明,MPG包含至少两个神经节后神经元亚群,即肾上腺素能和非肾上腺素能,具有不同的电生理和神经化学特性。此外,我们建议存在或不存在T型Ca2 +通道分别提供一种电生理学方法,用于分别在雄性大鼠MPG的神经元中识别肾上腺素能表型和非肾上腺素能表型。

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