首页> 美国卫生研究院文献>The Journal of Physiology >Opioid actions on single nucleus raphe magnus neurons from rat and guinea-pig in vitro.
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Opioid actions on single nucleus raphe magnus neurons from rat and guinea-pig in vitro.

机译:阿片类药物对大鼠和豚鼠的单核中缝大核神经元的体外作用。

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摘要

1. Intracellular recordings were made from neurons of the nucleus raphe magnus (NRM) from rat (n = 128) and guinea-pig (n = 115). Two types of cells were found in each, primary (103 in rat, 27 in guinea-pig) and secondary cells (25 in rat, 88 in guinea-pig). 2. Primary cells had input resistances of 186 +/- 9 M omega (n = 9) in rat and 255 +/- 50 M omega (n = 11) in guinea-pig. The action potential in each was about 1.5 ms in duration. Synaptic potentials were evoked by focal electrical stimulation and consisted of both gamma-aminobutyric acid (GABA) and excitatory amino acid components. 3. Morphine, [Met5]enkephalin (ME) and [D-Ala2,N-Me-Phe4, Gly5-ol]enkephalin (DAMGO) depressed the amplitude of the GABA-mediated synaptic potential by a maximum of 50-65% and had little effect on the excitatory amino acid-mediated synaptic potential. There was no effect of these opioids on the resting membrane potential or input resistance of primary cells in rat or guinea-pig. 4. Secondary cells had short duration action potentials (less than 1 ms) and an input resistance of 354 +/- 47 M omega in rat (n = 6) and 290 +/- 40 M omega in guinea-pig (n = 15). The synaptic potential observed in the cells of this group was mediated by activation of only excitatory amino acid receptors. 5. ME hyperpolarized and/or abolished the spontaneous firing in sixteen out of twenty-four neurons in the secondary group from rat and eight out of eighty-four neurons from guinea-pig. ME induced an outward current at -60 mV that reversed polarity at potentials more negative than -92 +/- 3 mV in rat (n = 6) and -98 +/- 2 mV in guinea-pig (n = 18). The reversal potential of the opioid current was shifted to less negative potentials when the external potassium concentration was increased, as predicted by the Nernst equation. 6. The morphology of the two types of cells were distinguishable in that primary cells were oval (29 x 18 microns in rat; 36 x 19 microns in guinea-pig) with two to four thick tapering dendrites that branched within 50 microns of the cell body. Secondary cells were generally round or oval (about 24 x 13 microns in rat; 27 x 17 microns in guinea-pig) with two to five thin non-tapering dendrites.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.细胞内记录来自大鼠(n = 128)和豚鼠(n = 115)的中缝大核(NRM)神经元。在每种细胞中发现了两种类型的细胞,一种是原代细胞(大鼠为103只,豚鼠为27只)和第二种细胞(大鼠是25只,豚鼠为88只)。 2.原代细胞在大鼠中的输入电阻为186 +/- 9 MΩ(n = 9),在豚鼠中的输入电阻为255 +/- 50 MΩ(n = 11)。每个动作电位的持续时间约为1.5毫秒。突触电位通过局灶性电刺激诱发,由γ-氨基丁酸(GABA)和兴奋性氨基酸成分组成。 3.吗啡,[Met5]脑啡肽(ME)和[D-Ala2,N-Me-Phe4,Gly5-ol]脑啡肽(DAMGO)使GABA介导的突触电位的幅度最大降低了50-65%,并且对兴奋性氨基酸介导的突触电位影响很小。这些阿片类药物对大鼠或豚鼠的静止细胞膜电位或原代细胞输入电阻没有影响。 4.二次细胞具有短时动作电位(小于1 ms),在大鼠(n = 6)中的输入电阻为354 +/- 47 MΩ,在豚鼠中为290 +/- 40 MΩ(n = 15) )。在该组细胞中观察到的突触电位仅通过兴奋性氨基酸受体的活化来介导。 5. ME超极化和/或消除了继发组大鼠第二十四个神经元中的十六个和豚鼠的八十四个神经元中的八个的自发放电。 ME在-60 mV时感应出向外的电流,该极性反转时的电位比大鼠(n = 6)-92 +/- 3 mV和豚鼠(n = 18)的-98 +/- 2 mV更负。如能斯特方程所预测的那样,当外部钾浓度增加时,阿片样物质电流的反向电位变为较小的负电位。 6.两种细胞的形态是可区分的,因为原代细胞是卵形的(大鼠为29 x 18微米;豚鼠为36 x 19微米),带有2至4个在细胞50微米内分支的厚锥形树突。身体。二次细胞通常为圆形或椭圆形(在大鼠中大约为24 x 13微米;在豚鼠中为27 x 17微米),带有2至5个稀疏的非锥状树突(摘要截短为400字)

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