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豚鼠交感神经节前神经元的电生理分类与神经肽含量之间的关系

Relation between electrophysiological class and neuropeptide content of guinea pig sympathetic prevertebral neurons.

作者信息

Keast J R, McLachlan E M, Meckler R L

机构信息

Department of Physiology and Pharmacology, University of Queensland, Australia.

出版信息

J Neurophysiol. 1993 Feb;69(2):384-94. doi: 10.1152/jn.1993.69.2.384.

Abstract
  1. Sympathetic neurons in superior mesenteric ganglion and inferior mesenteric ganglion (IMG) isolated from guinea pigs were classified as tonic, phasic, or long after hyperpolarizing (LAH) on the basis of their discharge characteristics and the different types of potassium currents recorded from them with the soma under single-microelectrode voltage clamp. 2. Passive electrical properties showed a progressive increase in input resistance across the prevertebral ganglia in the rostrocaudal direction when compared with those previously reported for the same classes of neurons in celiac ganglia (CG). 3. The proportions of tonic, phasic, and LAH neurons changed markedly in a rostrocaudal progression from 37, 14, and 49%, respectively, in the CG to 80, 18, and 2%, respectively, overall in the IMG. 4. Three populations of neurons distinguished immunohistochemically by their content of somatostatin (SOM), neuropeptide Y (NPY), or neither neuropeptide were present in different proportions in each prevertebral ganglion. The proportions of SOM, NPY, and no peptide neurons changed from 27, 34, and 39%, respectively, in the CG to 45, 20, and 35%, respectively, in the IMG. There was no significant difference in these distributions between the sexes. 5. Individual electrophysiologically characterized neurons were filled with biocytin and later examined for SOM immunoreactivity. All SOM-positive neurons (9/9) in the CG but only 7/10 in the IMG were tonic, whereas SOM-negative neurons were classified in all electrophysiological classes. 6. Other than this one group of sympathetic neurons (constituting nearly 30% of neurons in both CG and IMG), the three electrophysiological classes do not correlate directly with the three neurochemical types so far identified. This is consistent with the existence of more than three functional groups of sympathetic neurons in the prevertebral ganglia. The findings also suggest that a major inhibitory effect on mucosal secretion, as well as on motility, is mediated by peripheral reflex pathways along much of the length of the gastrointestinal tract.
摘要
  1. 从豚鼠分离出的肠系膜上神经节和肠系膜下神经节(IMG)中的交感神经元,根据其放电特性以及在单微电极电压钳制下从其胞体记录到的不同类型钾电流,被分为紧张型、相位型或超极化后长时程(LAH)型。2. 与先前报道的腹腔神经节(CG)中同一类神经元相比,被动电特性显示,沿前后方向,椎前神经节的输入电阻逐渐增加。3. 紧张型、相位型和LAH神经元的比例在前后方向上有明显变化,在CG中分别为37%、14%和49%,而在整个IMG中分别为80%、18%和2%。4. 通过免疫组织化学方法,根据生长抑素(SOM)、神经肽Y(NPY)的含量或两种神经肽均无,区分出的三类神经元在每个椎前神经节中的比例不同。SOM、NPY和无肽神经元的比例在CG中分别为27%、34%和39%,在IMG中分别为45%、20%和35%。这些分布在性别之间无显著差异。5. 对单个经电生理特征鉴定的神经元用生物胞素填充,随后检测其SOM免疫反应性。CG中所有SOM阳性神经元(9/9)为紧张型,但IMG中仅7/10为紧张型,而SOM阴性神经元则分属于所有电生理类型。6. 除了这一组交感神经元(在CG和IMG中均占近30%的神经元)外,这三种电生理类型与目前已鉴定出的三种神经化学类型没有直接关联。这与椎前神经节中存在三种以上功能组的交感神经元一致。这些发现还表明,对黏膜分泌以及运动的主要抑制作用是由沿胃肠道大部分长度的外周反射途径介导的。

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