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首页> 外文期刊>Acta veterinaria scandinavica >Challenges and standardization of microRNA profiling in serum and cerebrospinal fluid in dogs suffering from non-infectious inflammatory CNS disease
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Challenges and standardization of microRNA profiling in serum and cerebrospinal fluid in dogs suffering from non-infectious inflammatory CNS disease

机译:患有非传染性炎症CNS病的血清和脑脊液中微小RNA分析的挑战与标准化

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摘要

Non-infectious inflammatory (NII) central nervous system (CNS) conditions are primarily diagnosed by the demonstration of inflammatory changes in the cerebrospinal fluid (CSF). However, less-invasive methods and peripheral biomarkers are desired. Changes in circulating microRNA (miRNA), which are short non-coding regulatory RNAs, may serve as biomarkers of disease. The aim of this pilot study was to investigate selected miRNAs in serum and CSF, hypothesizing that the levels of specific miRNAs in serum correlate with their presence in CSF, and that changes in serum miRNAs levels may reflect CNS disease. We profiled serum and CSF samples using quantitative real-time PCR (qPCR) searching for selected and previously profiled miRNAs in serum (let-7a, let-7c, miR-15b, miR-16, miR-21, miR-23a, miR-24, miR-26a, miR-146a, miR-155, miR-181c and miR-221-3p) and in CSF (let-7c, miR-16, miR-21, miR-24, miR-146a, miR-155, miR-181c and miR-221-3p) from 13 dogs with NII CNS disease and six control dogs. We demonstrated the presence of several miRNAs in CSF (let-7c and miR-21 dominating) and serum (miR-23a and miR-21 dominating). However, we generally failed to reproduce consistent results in CSF samples due to several reasons: unacceptable PCR efficiency, a wide variation between cDNA replicates and/or no-amplification in qPCR suggesting very low levels of the investigated miRNAs in canine CSF. Serum samples performed better, and 10 miRNAs qPCR assays were qualified for analysis. We were nevertheless unable to detect a difference in the expression of miRNA levels between cases and controls. Moreover, we could not confirm the results of recent miRNA investigations of canine CNS diseases. We believe that these disagreements highlight the significant effect of methodological/analytical variation, rather than the incapacity of circulating miRNAs as biomarkers of CNS disease. A secondary aim was therefore to communicate methodological challenges in our study and to suggest recommendations for circulating miRNA profiling, including pre-, post- and analytical methods based on our experience, in order to reach reproducible and comparable results in veterinary miRNA research.
机译:非传染性炎症(NII)中枢神经系统(CNS)条件主要通过脑脊液(CSF)中的炎症变化的鉴定诊断。但是,需要较少侵入的方法和外周生物标志物。循环microRNA(miRNA)的变化是短编码调节RNA,可用作疾病的生物标志物。该试点研究的目的是研究血清和CSF中所选的miRNA,假设血清中特定miRNA的水平与其在CSF中的存在相关,并且血清miRNA水平的变化可能反映CNS疾病。我们使用定量实时PCR(QPCR)在血清中搜索所选和先前分布的MiRNA(Let-7a,Let-7c,miR-15b,miR-16,miR-21,miR-23a,mir -24,miR-26a,miR-146a,miR-155,miR-181c和miR-221-3p)和CSF(Let-7c,miR-16,miR-21,miR-24,miR-146a,mir -155,miR-181c和miR-221-3p)从13只狗患有Nii CNS病和六只对照犬。我们证明了CSF中的几种miRNA(Let-7c和miR-21主导)和血清(miR-23a和miR-21主导)中的存在。然而,由于几种原因血清样品更好,10 miRNA QPCR测定有资格进行分析。然而,我们无法检测病例和对照之间的miRNA水平表达的差异。此外,我们无法确认甘氨酸CNS疾病最近的miRNA调查结果。我们认为,这些分歧突出了方法/分析变异的显着影响,而不是循环miRNA作为CNS病的生物标志物的无干性。因此,二级目标是在我们的研究中沟通方法论挑战,并建议循环miRNA分析的建议,包括基于我们经验的预期和分析方法,以便在兽医miRNA研究中达到可重复和可比的结果。

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