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首页> 外文期刊>BMC Molecular Biology >High quality RNA from multiple brain regions simultaneously acquired by laser capture microdissection
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High quality RNA from multiple brain regions simultaneously acquired by laser capture microdissection

机译:激光捕获显微切割同时采集多个大脑区域的高质量RNA

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Background Laser capture microdissection enables the isolation of single cells or small cell groups from histological sections under direct microscopic observation. Combined with quantitative PCR or microarray, it is a very powerful approach for studying gene expression profiles in discrete cell populations. The major challenge for such studies is to obtain good quality RNA from small amounts of starting material.Results We have developed a simple, flexible, and low-cost method for simultaneously producing RNA from discrete cell groups in embryonic day 15 mouse brain. In particular, we have optimized the following key steps in the procedure: staining, cryosectioning, storage of sections and harvesting of microdissected cells. We obtained the best results when staining 20 μm-thick sections with 1% cresyl violet in 70% ethanol and harvesting the microdissected tissue in RNA stabilization solution. In addition, we introduced three stop-points in the protocol which makes the tedious process of laser capture microdissection more flexible, without compromising RNA quality.Conclusion Using this optimized method, we have consistently obtained RNA of high quality from all four simultaneously microdissected cell groups. RNA integrity numbers were all above 8, and long cDNA fragments (> 1.2 kb) were successfully amplified by reverse transcription PCR from all four samples. We conclude that RNAs isolated by this method are well suited for downstream quantitative PCR or microarray studies.
机译:背景技术激光捕获显微切割技术能够在直接的显微镜观察下从组织学切片中分离单个细胞或小细胞组。结合定量PCR或微阵列,它是研究离散细胞群体中基因表达谱的非常有效的方法。这类研究的主要挑战是从少量起始原料中获得高质量的RNA。结果我们已经开发了一种简单,灵活且低成本的方法,可从胚胎第15天小鼠大脑的离散细胞组同时生产RNA。特别是,我们在程序中优化了以下关键步骤:染色,冷冻切片,切片保存和显微解剖细胞的收获。当用70%乙醇中的1%甲苯酚紫染色20μm厚的切片并在RNA稳定溶液中收获显微组织时,我们获得了最佳结果。此外,我们在方案中引入了三个停止点,使激光捕获显微切割的繁琐过程更加灵活,而又不影响RNA的质量。结论使用这种优化方法,我们从四个同时显微切割的细胞组中始终如一地获得了高质量的RNA 。 RNA完整性数均大于8,并且通过逆转录PCR从所有四个样品中成功扩增了长cDNA片段(> 1.2 kb)。我们得出的结论是,通过这种方法分离的RNA非常适合于下游定量PCR或微阵列研究。

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