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使用激光捕获显微切割技术从肾近端小管细胞中分离出用于定量实时聚合酶链反应的高质量RNA。

Ensuring good quality RNA for quantitative real-time PCR isolated from renal proximal tubular cells using laser capture microdissection.

作者信息

Yee Jie Yin, Limenta Lie Michael George, Rogers Keith, Rogers Susan Mary, Tay Vanessa S Y, Lee Edmund J D

机构信息

Department of Pharmacology, Yong Loo Lin School of Medicine, National University of Singapore, MD11 10 Medical Drive #05-09, Singapore 117597, Singapore.

出版信息

BMC Res Notes. 2014 Jan 27;7:62. doi: 10.1186/1756-0500-7-62.

Abstract

BACKGROUND

In order to provide gene expression profiles of different cell types, the primary step is to isolate the specific cells of interest via laser capture microdissection (LCM), followed by extraction of good quality total RNA sufficient for quantitative real-time polymerase chain reaction (qPCR) analysis. This LCM-qPCR strategy has allowed numerous gene expression studies on specific cell populations, providing valuable insights into specific cellular changes in diseases. However, such strategy imposed challenges as cells of interests are often available in limited quantities and quality of RNA may be compromised during long periods of time spent on collection of cells and extraction of total RNA; therefore, it is crucial that protocols for sample preparation should be optimised according to different cell populations.

FINDINGS

We made several modifications to existing protocols to improve the total RNA yield and integrity for downstream qPCR analyses. A modified condensed hematoxylin and eosin (H&E) staining protocol was developed for the identification of rat renal proximal tubular cells (PTCs). It was then determined that a minimal of eight thousands renal PTCs were required to meet the minimal total RNA yield required for downstream qPCR. RNA integrity was assessed using at every progressive step of sample preparation. Therefore, we decided that the shortened H&E staining, together with microdissection should be performed consecutively within twenty minutes for good quality for gene expression analysis. These modified protocols were later applied on six individual rat samples. A panel of twenty rat renal drug transporters and five housekeeping genes showed Ct values below thirty-five, confirming the expression levels of these drug transporters can be detected.

CONCLUSIONS

We had successfully optimized the protocols to achieve sufficient good quality total RNA from microdissected rat renal PTCs for gene expression profiling via qPCR. This protocol may be suitable for researchers who are interested in employing similar applications for gene expression studies.

摘要

背景

为了提供不同细胞类型的基因表达谱,首要步骤是通过激光捕获显微切割(LCM)分离出感兴趣的特定细胞,随后提取高质量的总RNA,以满足定量实时聚合酶链反应(qPCR)分析的需要。这种LCM-qPCR策略使得针对特定细胞群体开展了大量基因表达研究,为了解疾病中的特定细胞变化提供了有价值的见解。然而,这种策略带来了挑战,因为感兴趣的细胞数量往往有限,并且在长时间收集细胞和提取总RNA的过程中,RNA的质量可能会受到影响;因此,根据不同细胞群体优化样品制备方案至关重要。

研究结果

我们对现有方案进行了多项改进,以提高用于下游qPCR分析的总RNA产量和完整性。开发了一种改良的苏木精和伊红(H&E)浓缩染色方案用于鉴定大鼠肾近端小管细胞(PTCs)。随后确定,至少需要八千个肾PTC才能满足下游qPCR所需的最低总RNA产量。在样品制备的每个递进步骤中都对RNA完整性进行了评估。因此,我们决定缩短的H&E染色与显微切割应在二十分钟内连续进行,以获得用于基因表达分析的良好质量。这些改良方案随后应用于六个单独的大鼠样本。一组二十个大鼠肾药物转运体和五个管家基因的Ct值低于三十五,证实可以检测到这些药物转运体的表达水平。

结论

我们成功优化了方案,从显微切割的大鼠肾PTC中获得了足够高质量的总RNA,用于通过qPCR进行基因表达谱分析。该方案可能适用于有兴趣将类似应用用于基因表达研究的研究人员。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44c4/3905289/c7281388558c/1756-0500-7-62-1.jpg

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