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海马体中特定层基因表达的定量分析:激光显微切割与定量逆转录聚合酶链反应联合的有效应用

Quantification of layer-specific gene expression in the hippocampus: effective use of laser microdissection in combination with quantitative RT-PCR.

作者信息

Burbach Guido J, Dehn Doris, Del Turco Domenico, Deller Thomas

机构信息

Institute of Clinical Neuroanatomy, Johann Wolfgang Goethe-University, Theodor-Stern-Kai 7, D-60590 Frankfurt am Main, Germany.

出版信息

J Neurosci Methods. 2003 Dec 30;131(1-2):83-91. doi: 10.1016/s0165-0270(03)00232-2.

Abstract

Laser microdissection in combination with quantitative RT-PCR is now widely appreciated as an excellent tool for quantifying mRNA levels in defined cell populations. It may be particularly useful in the hippocampal formation, where principal cells form distinct and readily identifiable cell layers. Here we are presenting an optimized protocol for labeling hippocampal principal cells on foil-mounted sections for microdissection with the Leica AS LMD system and discuss potential further applications and pitfalls. Employing this optimized method, we studied changes in brain-derived neurotrophic factor (BDNF) mRNA expression in granule cells of the mouse dentate gyrus following unilateral entorhinal cortex lesion. In this lesioning paradigm, changes in BDNF mRNA expression have previously been reported in the rat. Using laser microdissection, the granule cell layers ipsi- and contralateral to the lesion were collected and changes in BDNF levels were quantified using quantitative RT-PCR. BDNF mRNA levels were five-fold higher on the ipsilateral side compared to levels found on the contralateral side or in controls. The development of this optimized method for laser microdissection and subsequent quantitative RT-PCR allows layer-specific quantification of gene expression levels in the hippocampus and may be similarly employed in other brain areas or tissues with a laminar arrangement or high density of cells.

摘要

激光显微切割技术与定量逆转录聚合酶链反应相结合,现已被广泛认可为一种用于定量特定细胞群体中mRNA水平的优秀工具。它在海马结构中可能特别有用,因为主要细胞形成了不同且易于识别的细胞层。在此,我们展示了一种优化方案,用于在箔片载玻片上标记海马主要细胞,以便使用徕卡AS LMD系统进行显微切割,并讨论潜在的进一步应用和陷阱。采用这种优化方法,我们研究了单侧内嗅皮层损伤后小鼠齿状回颗粒细胞中脑源性神经营养因子(BDNF)mRNA表达的变化。在这种损伤模式中,此前已报道大鼠BDNF mRNA表达有变化。使用激光显微切割技术,收集损伤同侧和对侧的颗粒细胞层,并使用定量逆转录聚合酶链反应对BDNF水平的变化进行定量。与对侧或对照组相比,同侧BDNF mRNA水平高出五倍。这种优化的激光显微切割及后续定量逆转录聚合酶链反应方法的开发,使得能够对海马中基因表达水平进行层特异性定量,并且可能同样适用于其他具有层状排列或细胞高密度的脑区或组织。

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