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Universal digital high-resolution melt: a novel approach to broad-based profiling of heterogeneous biological samples

机译:通用数字高分辨率熔体:一种对异质生物样品进行广泛基础分析的新方法

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摘要

Comprehensive profiling of nucleic acids in genetically heterogeneous samples is important for clinical and basic research applications. Universal digital high-resolution melt (U-dHRM) is a new approach to broad-based PCR diagnostics and profiling technologies that can overcome issues of poor sensitivity due to contaminating nucleic acids and poor specificity due to primer or probe hybridization inaccuracies for single nucleotide variations. The U-dHRM approach uses broad-based primers or ligated adapter sequences to universally amplify all nucleic acid molecules in a heterogeneous sample, which have been partitioned, as in digital PCR. Extensive assay optimization enables direct sequence identification by algorithm-based matching of melt curve shape and Tm to a database of known sequence-specific melt curves. We show that single-molecule detection and single nucleotide sensitivity is possible. The feasibility and utility of U-dHRM is demonstrated through detection of bacteria associated with polymicrobial blood infection and microRNAs (miRNAs) associated with host response to infection. U-dHRM using broad-based 16S rRNA gene primers demonstrates universal single cell detection of bacterial pathogens, even in the presence of larger amounts of contaminating bacteria; U-dHRM using universally adapted Lethal-7 miRNAs in a heterogeneous mixture showcases the single copy sensitivity and single nucleotide specificity of this approach.
机译:遗传异质样品中核酸的全面分析对于临床和基础研究应用很重要。通用数字高分辨率熔体(U-dHRM)是基础广泛的PCR诊断和分析技术的新方法,可以克服由于核酸污染而导致的灵敏度低和引物或探针杂交对单个核苷酸变异的不准确性而导致的特异性差的问题。 U-dHRM方法使用基础广泛的引物或连接的衔接子序列,如数字PCR一样,普遍扩增已分区的异质样品中的所有核酸分子。广泛的分析优化可通过将熔解曲线形状和Tm与已知序列特异的熔解曲线的数据库进行基于算法的匹配来直接识别序列。我们表明,单分子检测和单核苷酸敏感性是可能的。 U-dHRM的可行性和实用性通过检测与微生物血液感染相关的细菌和与宿主对感染的反应相关的microRNA(miRNA)得以证明。使用广泛的16S rRNA基因引物的U-dHRM证明了细菌病原体的通用单细胞检测,即使在存在大量污染细菌的情况下也是如此。在异质混合物中使用普遍适应的Lethal-7 miRNA的U-dHRM展示了这种方法的单拷贝敏感性和单核苷酸特异性。

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