Bontoux N, Dauphinot L, Vitalis T, Studer V, Chen Y, Rossier J, Potier M-C
Laboratoire de Neurobiologie et Diversité Cellulaire, CNRS UMR 7637, ESPCI, Paris Cedex 05, France.
Lab Chip. 2008 Mar;8(3):443-50. doi: 10.1039/b716543a. Epub 2008 Jan 31.
To correlate gene expression profiles to fundamental biological processes such as cell growth, differentiation and migration, it is essential to work at the single cell level. Gene expression analysis always starts with the relatively low efficient reverse transcription (RT) of RNA into complementary DNA (cDNA), an essential step as unprocessed RNAs will not be analysed further. In this paper, we present a novel method for RT that uses microfluidics to manipulate nanolitre volumes. We compare our method to conventional protocols performed in microlitre volumes. More specifically, reverse transcription was performed either in a polydimethylsiloxane (PDMS) rotary mixer or in a tube, using a single cell amount of mouse brain RNA (10 pg), and was followed by a template-switching PCR (TS-PCR) amplification step. We demonstrate that, using the microfluidic protocol, 74% of the genes expressed in mouse brain were detected, while only 4% were found with the conventional approach. We next profiled single neuronal progenitors. Using our microfluidic approach, i.e. performing cell capture, lysis and reverse transcription on-chip followed by TS-PCR amplification in tube, a mean of 5000 genes were detected in each neuron, which corresponds to the expected number of genes expressed in a single cell. This demonstrates the outstanding sensitivity of the microfluidic method.
为了将基因表达谱与细胞生长、分化和迁移等基本生物学过程相关联,在单细胞水平上开展研究至关重要。基因表达分析始终始于将RNA相对低效地逆转录(RT)为互补DNA(cDNA),这是一个关键步骤,因为未处理的RNA不会进一步分析。在本文中,我们提出了一种新的逆转录方法,该方法使用微流体技术来操控纳升体积的样本。我们将我们的方法与在微升体积中执行的传统方案进行了比较。更具体地说,使用单细胞量的小鼠脑RNA(10 pg),在聚二甲基硅氧烷(PDMS)旋转混合器或试管中进行逆转录,随后进行模板切换PCR(TS-PCR)扩增步骤。我们证明,使用微流体方案,检测到了小鼠脑中表达的74%的基因,而传统方法仅检测到4%。接下来,我们对单个神经元祖细胞进行了分析。使用我们的微流体方法,即在芯片上进行细胞捕获、裂解和逆转录,然后在试管中进行TS-PCR扩增,每个神经元平均检测到5000个基因,这与单个细胞中预期表达的基因数量相对应。这证明了微流体方法具有出色的灵敏度。