首页> 美国卫生研究院文献>eNeuro >Electrophysiological Properties of Medium Spiny Neuron Subtypes in the Caudate-Putamen of Prepubertal Male and Female Drd1a-tdTomato Line 6 BAC Transgenic Mice
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Electrophysiological Properties of Medium Spiny Neuron Subtypes in the Caudate-Putamen of Prepubertal Male and Female Drd1a-tdTomato Line 6 BAC Transgenic Mice

机译:青春期前雄性和雌性Drd1a-tdTomato品系6 BAC转基因小鼠的尾状尾核中中等多刺神经元亚型的电生理特性

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摘要

The caudate-putamen is a striatal brain region essential for sensorimotor behaviors, habit learning, and other cognitive and premotor functions. The output and predominant neuron of the caudate-putamen is the medium spiny neuron (MSN). MSNs present discrete cellular subtypes that show differences in neurochemistry, dopamine receptor expression, efferent targets, gene expression, functional roles, and most importantly for this study, electrophysiological properties. MSN subtypes include the striatonigral and the striatopallidal groups. Most studies identify the striatopallidal MSN subtype as being more excitable than the striatonigral MSN subtype. However, there is some divergence between studies regarding the exact differences in electrophysiological properties. Furthermore, MSN subtype electrophysiological properties have not been reported disaggregated by biological sex. We addressed these questions using prepubertal male and female Drd1a-tdTomato line 6 BAC transgenic mice, an important transgenic line that has not yet received extensive electrophysiological analysis. We made acute caudate-putamen brain slices and assessed a robust battery of 16 relevant electrophysiological properties using whole-cell patch-clamp recording, including intrinsic membrane, action potential, and miniature EPSC (mEPSC) properties. We found that: (1) MSN subtypes exhibited multiple differential electrophysiological properties in both sexes, including rheobase, action potential threshold and width, input resistance in both the linear and rectified ranges, and mEPSC amplitude; (2) select electrophysiological properties showed interactions between MSN subtype and sex. These findings provide a comprehensive evaluation of mouse caudate-putamen MSN subtype electrophysiological properties across females and males, both confirming and extending previous studies.
机译:尾状丘脑是感觉运动行为,习惯学习以及其他认知和运动前功能必不可少的纹状体大脑区域。尾状丘脑的输出神经和主要神经元是中棘神经元(MSN)。 MSNs存在离散的细胞亚型,这些亚型在神经化学,多巴胺受体表达,传出靶标,基因表达,功能作用以及对本研究最重要的电生理特性方面表现出差异。 MSN亚型包括纹状体和纹状体。多数研究认为,纹状体顶头MSN亚型比纹状体顶MSN亚型更易激发。但是,关于电生理特性的确切差异,研究之间存在分歧。此外,尚未报告按生物学性别分列的MSN亚型电生理特性。我们使用青春期前的雄性和雌性Drd1a-tdTomato系6 BAC转基因小鼠解决了这些问题,该重要的转基因系尚未接受广泛的电生理分析。我们制作了急性尾状丘脑切片,并使用全细胞膜片钳记录了包括16种固有膜,动作电位和微型EPSC(mEPSC)特性在内的16种相关的电生理特性,对其进行了评估。我们发现:(1)MSN亚型在两个性别上均表现出多种差异的电生理特性,包括流变碱,动作电位阈值和宽度,线性和整流范围内的输入电阻以及mEPSC幅度; (2)选择电生理特性显示MSN亚型与性别之间存在相互作用。这些发现对雌性和雄性小鼠尾状丘脑MSN亚型电生理特性提供了全面的评估,证实并扩展了先前的研究。

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