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Multiplex, DNase-free one-step reverse transcription PCR for Plasmodium 18S rRNA and spliced gametocyte-specific mRNAs

机译:疟原虫18S rRNA和剪接的配子体特异性mRNA的多重,无DNase一步反转录PCR

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Background Plasmodium gametocytes are sexual stages transmitted to female Anopheles mosquitoes. While Plasmodium parasites can be differentiated microscopically on Giemsa-stained blood smears, molecular methods are increasingly used because of their increased sensitivity. Molecular detection of gametocytes requires methods that discriminate between asexual and sexual stage parasites. Commonly tested gametocyte-specific mRNAs are pfs25 and pfs230 detected by reverse transcription polymerase chain reaction (RT-PCR). However, detection of these unspliced mRNA targets requires preceding DNase treatment of nucleic acids to eliminate co-purified genomic DNA. If gametocyte-specific, spliced mRNAs could be identified, DNase treatment could be eliminated and one-step multiplexed molecular methods utilized. ResultsExpression data was used to identify highly-expressed mRNAs in mature gametocytes that were also low in antisense RNA expression in non-gametocyte stages. After testing numerous candidate mRNAs, the spliced female Pf3D7_0630000 mRNA was selected as a Plasmodium falciparum gametocyte-specific biomarker compatible with Plasmodium 18S rRNA RT-PCR. This mRNA was only detected in samples containing mature gametocytes and was absent in those containing only asexual stage parasites or uninfected human blood. PF3D7_0630000 RT-PCR detected gametocytes across a wide range of parasite densities in both spiked and clinical samples and agreed with pfs25 RT-PCR, the gold standard for RT-PCR-based gametocyte detection. PF3D7_0630000 multiplexed with Plasmodium 18S rRNA RT-PCR was more sensitive than other spliced mRNA targets for one-step RT-PCR gametocyte detection. ConclusionsBecause the spliced target does not require DNase treatment, the PF3D7_0630000 assay can be multiplexed with Plasmodium 18S rRNA for direct one-step detection of gametocytes from whole human blood.
机译:背景疟原虫配子体细胞是传递到雌性按蚊的性生活阶段。虽然可以在吉姆萨染色的血液涂片上通过显微镜区分疟原虫,但由于它们的敏感性增加,因此分子方法越来越多地被使用。配子细胞的分子检测需要区分无性和性阶段寄生虫的方法。常用测试的配子体特异性mRNA是通过逆转录聚合酶链反应(RT-PCR)检测到的pfs25和pfs230。但是,检测这些未剪接的mRNA靶标需要对核酸进行预先的DNase处理,以消除共纯化的基因组DNA。如果可以鉴定配子体特异性的剪接的mRNA,则可以消除DNase处理,并采用一步多路复用分子方法。结果表达数据用于鉴定成熟配子细胞中高表达的mRNA,而在非配子细胞阶段反义RNA的表达也较低。在测试了大量候选mRNA后,选择剪接的雌性Pf3D7_0630000 mRNA作为与疟原虫18S rRNA RT-PCR兼容的恶性疟原虫配体细胞特异性生物标记。仅在含有成熟配子细胞的样品中检测到该mRNA,而在仅包含无性阶段寄生虫或未感染的人类血液的样品中则没有这种mRNA。 PF3D7_0630000 RT-PCR在加标样品和临床样品中检测到各种寄生虫密度的配子细胞,并同意pfs25 RT-PCR,这是基于RT-PCR的配子细胞检测的金标准。 PF3D7_0630000与疟原虫18S rRNA RT-PCR复用比一步拼接RT-PCR配子细胞检测更敏感。结论由于剪接的靶标不需要DNase处理,因此可以将PF3D7_0630000测定与疟原虫18S rRNA复用,以直接一步法检测全血中的配子细胞。

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