...
首页> 外文期刊>The Journal of Physiology >Distinct cellular properties of identified dopaminergic and GABAergic neurons in the mouse ventral tegmental area.
【24h】

Distinct cellular properties of identified dopaminergic and GABAergic neurons in the mouse ventral tegmental area.

机译:在小鼠腹侧被盖区中识别出的多巴胺能和GABA能神经元具有明显的细胞特性。

获取原文
获取原文并翻译 | 示例
           

摘要

The midbrain ventral tegmental area (VTA) contains neurons largely with either a dopaminergic (DAergic) or GABAergic phenotype. Physiological and pharmacological properties of DAergic neurons have been determined using tyrosine hydroxylase (TH) immunohistochemistry but many properties overlap with non-DAergic neurons presumed to be GABAergic. This study examined properties of GABAergic neurons, non-GABAergic neurons and TH-immunopositive neurons in VTA of GAD67-GFP knock-in mice. Ninety-eight per cent of VTA neurons were either GAD-GFP or TH positive,with the latter being five times more abundant. During cell-attached patch-clamp recordings, GAD-GFP neurons fired brief action potentials that could be completely distinguished from those of non-GFP neurons. Pharmacologically, the mu-opioid agonist DAMGO inhibited firing of action potentials in 92% of GAD-GFP neurons but had no effect in non-GFP neurons. By contrast, dopamine invariably inhibited action potentials in non-GFP neurons but only did so in 8% of GAD-GFP neurons. During whole-cell recordings, the narrower width of action potential in GAD-GFP neurons was also evident but there was considerable overlap with non-GFP neurons. GAD-GFP neurons invariably failed to exhibit the potassium-mediated slow depolarizing potential during injection of positive current that was present in all non-GFP neurons. Under voltage-clamp the cationic current, I(h), was found in both types of neurons with considerable overlap in both amplitude and kinetics. These distinct cellular properties may thus be used to confidently discriminate GABAergic and DAergic neurons in VTA during in vitro electrophysiological recordings.
机译:中脑腹侧被盖区(VTA)包含的神经元大部分具有多巴胺能(DAergic)或GABA能表型。已使用酪氨酸羟化酶(TH)免疫组织化学确定了DAergic神经元的生理和药理特性,但许多特性与假定为GABA能的非DAergic神经元重叠。这项研究检查了GAD67-GFP敲入小鼠的VTA中的GABA能神经元,非GABA能神经元和TH免疫阳性神经元的特性。百分之九十八的VTA神经元是GAD-GFP或TH阳性,后者的丰富度是后者的五倍。在贴有细胞的膜片钳录音过程中,GAD-GFP神经元产生了短暂的动作电位,可以与非GFP神经元完全区分开。在药理学上,阿片类激动剂DAMGO抑制了92%的GAD-GFP神经元中动作电位的激发,但对非GFP神经元无作用。相比之下,多巴胺总是抑制非GFP神经元的动作电位,但仅在8%的GAD-GFP神经元中具有抑制作用。在全细胞记录期间,GAD-GFP神经元的动作电位宽度也较窄,但与非GFP神经元有相当大的重叠。 GAD-GFP神经元在注入所有非GFP神经元中存在的正电流期间始终无法表现出钾介导的缓慢去极化电位。在电压钳制下,在两种类型的神经元中都发现了阳离子电流I(h),在振幅和动力学上都有相当大的重叠。因此,这些不同的细胞特性可用于在体外电生理学记录中可靠地区分VTA中的GABA能和DA能神经元。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号