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Development of a direct in situ RT-PCR method using labeled primers to detect cytokine mRNA inside cells.

机译:使用标记引物检测细胞内细胞因子mRNA的直接原位RT-PCR方法的开发。

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We have developed an original protocol of direct in situ RT-PCR with biotinylated labeled primers to detect cytokine mRNA inside cells. This label improved the specificity of the technique compared with the use of digoxigenin or fluorescein-labeled primers. We found a reliable correlation between the known expression of cytokine mRNA in a given cell and a positive signal with in situ RT-PCR. Nuclear counterstaining demonstrated that the positive signal obtained was distributed in the cytoplasm in accordance with mRNA localization. In addition, direct demonstration of the presence of the expected PCR product in cell extracts without non-specific parasitic DNA amplification provided strong support for the specificity of the method. Designing the primers in order to prevent DNA amplification, the use of recombinant Thermus thermophilus (rTth) DNA polymerase and a decreased duration of each cycle of PCR by combining the annealing and hybridization steps improved the reproducibility and reliability of the technique and morphological preservation of the cells. Experiments in which different proportions of cytokine mRNA positive and negative cells were mixed argue against significant diffusion of PCR product into initially cytokine mRNA negative cells, thereby leading to false-positive results. In comparison with the direct incorporation of labeled dNTP during amplification, our procedure appears to ensure greater specificity and does not need DNAse treatment which is often difficult to standardize. Detection of IL-2 and IFNgamma mRNA induction after T cell activation using this direct in situ RT-PCR method showed that the technique may be helpful for monitoring cytokine gene expression at a single cell level.
机译:我们已经开发了一种直接原位RT-PCR的原始方案,并使用生物素标记的引物检测细胞内的细胞因子mRNA。与使用洋地黄毒苷或荧光素标记的引物相比,该标记提高了技术的特异性。我们发现在给定细胞中细胞因子mRNA的已知表达与通过原位RT-PCR产生的阳性信号之间存在可靠的关联。核染色表明,根据mRNA定位,获得的阳性信号分布在细胞质中。此外,在没有非特异性寄生DNA扩增的情况下直接证明细胞提取物中预期PCR产物的存在,为该方法的特异性提供了有力的支持。设计引物以防止DNA扩增,重组热嗜热(rTth)DNA聚合酶的使用以及结合退火和杂交步骤缩短了PCR每个循环的持续时间,从而提高了该技术的可重复性和可靠性以及该菌的形态保存性细胞。混合不同比例的细胞因子mRNA阳性细胞和阴性细胞的实验反对PCR产物显着扩散到最初的细胞因子mRNA阴性细胞中,从而导致假阳性结果。与扩增过程中直接掺入标记的dNTP相比,我们的方法似乎可以确保更高的特异性,并且不需要通常很难标准化的DNAse处理。使用这种直接原位RT-PCR方法检测T细胞活化后IL-2和IFNγmRNA的诱导,表明该技术可能有助于监测单细胞水平上细胞因子基因的表达。

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