首页> 外文期刊>Journal of Clinical Microbiology >Truncated Human Cytidylate-Phosphate-Deoxyguanylate-Binding Protein for Improved Nucleic Acid Amplification Technique-Based Detection of Bacterial Species in Human Samples
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Truncated Human Cytidylate-Phosphate-Deoxyguanylate-Binding Protein for Improved Nucleic Acid Amplification Technique-Based Detection of Bacterial Species in Human Samples

机译:改进的基于核酸扩增技术的人类样品细菌检测的截短的人类胞苷-磷酸-脱氧鸟苷结合蛋白。

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A trunk of human cytidylate-phosphate-deoxyguanylate-binding protein/CXXC finger protein 1 (CFP1), immobilized onto an aminohexyl-Sepharose column, can be used as a preanalytical tool for the selective enrichment of bacterial DNA from mixed solutions with high amounts of human background DNA for nucleic acid amplification technique-based detection of pathogens. The transcriptional activator protein exhibits a high affinity for nonmethylated CpG dinucleotide motifs, which are differentially distributed in prokaryotic and higher eukaryotic genomes. The feasibility of the affinity chromatography (AC) step was tested with DNA from severely septic patients. AC using 16S rRNA gene primers substantially increased PCR sensitivity. Approximately 90% of eukaryotic DNA was removed, which significantly increased the signal-to-noise ratio. Threshold cycle values revealed that sensitivity was elevated at least 10-fold. The change in the ratio of bacterial DNA to human DNA increased from 26% to 74% the likelihood of culture-independent PCR-based identification of bacterial presence. Compared to the results seen with blood culture (which is the clinical gold standard for systemic infections, exhibiting 28% positives), the combination of AC and PCR achieves a significant increase in sensitivity and contributes to shortening the time to results for the initiation of guided antibiotic therapy.
机译:固定在氨基己基-Sepharose柱上的人胞苷-磷酸盐-脱氧鸟苷酸盐结合蛋白/ CXXC指状蛋白1(CFP1)的树干可以用作分析前的工具,用于从混合溶液中大量富集人类本底DNA,用于基于核酸扩增技术的病原体检测。转录激活蛋白对非甲基化的CpG二核苷酸基序具有很高的亲和力,后者在原核和高级真核基因组中差异分布。用来自严重脓毒症患者的DNA测试了亲和色谱(AC)步骤的可行性。使用16S rRNA基因引物的AC大大提高了PCR灵敏度。去除了大约90%的真核DNA,这显着提高了信噪比。阈值循环值表明灵敏度至少提高了10倍。细菌DNA与人类DNA的比例变化从26%增至74%,这是基于培养物的基于PCR的细菌存在鉴定的可能性。与血液培养的结果(这是全身性感染的临床金标准,显示28%的阳性结果)相比,AC和PCR的结合显着提高了灵敏度,并有助于缩短开始引导的结果的时间。抗生素治疗。

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