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大鼠延髓中缝核原代培养物的表征:5-羟色胺能标志物的多重定量分析

Characterization of rat rostral raphe primary cultures: multiplex quantification of serotonergic markers.

作者信息

Czesak Margaret, Burns Ariel M, Remes Lenicov Federico, Albert Paul R

机构信息

Ottawa Health Research Institute (Neuroscience), Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, Canada K1H 8M5.

出版信息

J Neurosci Methods. 2007 Aug 15;164(1):59-67. doi: 10.1016/j.jneumeth.2007.04.002. Epub 2007 Apr 7.

Abstract

Previous reports establishing raphe cultures typically yield less than 1% serotonin (5-HT)-positive neurons and are impractical for transcriptional studies. In this study, we have established primary cultures enriched in 5-HT neurons and quantified the proportion of cells expressing serotonergic and non-serotonergic markers. We have also shown the feasibility of using the multiplex real-time PCR technique to measure the relative amounts of RNA for some of these markers. Rostral raphe cells derived from E13-15 rat embryos were cultured for 7 days and analyzed by quantitative immunofluorescence and western blot analysis. In these cultures, approximately 8% of neurons were immunopositive for serotonergic markers (5-HT or tryptophan hydroxylase (TPH)). The percentage of cells labeled for GFAP (glial marker), tyrosine hydroxylase (catecholaminergic), and GAD65/67 (GABAergic) was 5, 1, and 54%, respectively. Transcription factors REST/NRSF and Deaf-1 were present in 9 and 98% of cells, respectively. Multiplex quantitative RT-PCR (Q-PCR) analysis was done for TPH2, 5-HT1A receptor or Deaf-1 RNAs paired with GAPDH RNA as control. Using this approach, standard curves for each RNA were obtained over 200-fold concentration range of dilution with r2 values >0.99. The relative abundances determined by Q-PCR are consistent with the expression of TPH2>Deaf-1>5-HT1A receptor RNA in serotonergic raphe cells. The standard error of TPH2 RNA levels between cultures was <20%, indicating a consistent purity of 5-HT neurons. Thus, we have generated a highly consistent and reproducible model system that is enriched in 5-HT neurons and that will be valuable in future investigation of serotonergic regulation.

摘要

以往建立中缝核培养物的报告通常产生少于1%的5-羟色胺(5-HT)阳性神经元,且对于转录研究不实用。在本研究中,我们建立了富含5-HT神经元的原代培养物,并对表达5-羟色胺能和非5-羟色胺能标志物的细胞比例进行了定量。我们还展示了使用多重实时PCR技术测量其中一些标志物RNA相对含量的可行性。源自E13-15大鼠胚胎的吻侧中缝核细胞培养7天,并通过定量免疫荧光和蛋白质印迹分析进行分析。在这些培养物中,约8%的神经元对5-羟色胺能标志物(5-HT或色氨酸羟化酶(TPH))呈免疫阳性。标记为GFAP(神经胶质标志物)、酪氨酸羟化酶(儿茶酚胺能)和GAD65/67(γ-氨基丁酸能)的细胞百分比分别为5%、1%和54%。转录因子REST/NRSF和Deaf-1分别存在于9%和98%的细胞中。以GAPDH RNA作为对照,对TPH2、5-HT1A受体或Deaf-1 RNA进行多重定量RT-PCR(Q-PCR)分析。使用这种方法,在200倍稀释浓度范围内获得了每种RNA的标准曲线,r2值>0.99。通过Q-PCR确定的相对丰度与5-羟色胺能中缝核细胞中TPH2>Deaf-1>5-HT1A受体RNA的表达一致。培养物之间TPH2 RNA水平的标准误差<20%,表明5-HT神经元的纯度一致。因此,我们生成了一个高度一致且可重复的模型系统,该系统富含5-HT神经元,将对未来5-羟色胺能调节的研究具有重要价值。

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