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Multiplex detection of bacteria in complex clinical and environmental samples using oligonucleotide-coupled fluorescent microspheres

机译:使用寡核苷酸偶联的荧光微球对复杂临床和环境样品中的细菌进行多重检测

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摘要

Bacterial vaginosis (BV) is a recurring polymicrobial syndrome that is characterized by a change in the "normal" microbiota from Lactobacillus -dominated to a microbiota dominated by a number of bacterial species, including Gardnerella vaginalis, Atopobium vaginae, and others. This condition is associated with a range of negative health outcomes, including HIV acquisition, and it can be difficult to manage clinically. Furthermore, diagnosis of BV has relied on the use of Gram stains of vaginal swab smears that are scored on various numerical criteria. While this diagnostic is simple, inexpensive, and well suited to resource-limited settings, it can suffer from problems related to subjective interpretations and it does not give a detailed profile of the composition of the vaginal microbiota. Recent deep sequencing efforts have revealed a rich, diverse vaginal microbiota with clear differences between samples taken from individuals that are diagnosed with BV compared to those individuals that are considered norma, which has resulted in the identification of a number of potential targets for molecular diagnosis of BV. These studies have provided a wealth of useful information, but deep sequencing is not yet practical as a diagnostic method in a clinical setting. We have recently described a method for rapidly profiling the vaginal microbiota in a multiplex format using oligonucleotide-coupled fluorescent beads with detection on a Luminex platform. This method, like current Gram stain-based methods, is rapid and simple but adds the additional advantage of exploiting molecular knowledge arising from sequencing studies in probe design. This method therefore provides a way to profile the major microorganisms that are present in a vaginal swab that can be used to diagnose BV with high specificity and sensitivity compared to Gram stain while providing additional information on species presence and abundance in a semi-quantitative and rapid manner. This multiplex method is expandable well beyond the range of current quantitative PCR assays for particular organisms, which is currently limited to 5 or 6 different assays in a single sample. Importantly, the method is not limited to the detection of bacteria in vaginal swabs and can be easily adapted to rapidly profile nearly any microbial community of interest. For example, we have recently begun to apply this methodology to the development of diagnostic tools for use in wastewater treatment plants. © 2011 Creative Commons Attribution License.
机译:细菌性阴道病(BV)是一种反复发生的微生物综合症,其特征是乳杆菌所占的“正常”微生物群发生变化,而微生物群则由多种细菌所占主导,包括阴道加德纳菌,阴道阿托普鲍氏菌等。这种疾病与一系列负面健康后果(包括艾滋病毒感染)有关,并且可能难以临床管理。此外,BV的诊断依赖于阴道拭子涂片革兰氏染色的使用,这些染色在各种数值标准上评分。尽管此诊断程序简单,便宜且非常适合资源有限的环境,但它可能会遇到与主观解释有关的问题,并且无法给出阴道微生物群组成的详细信息。最近的深度测序工作揭示了丰富多样的阴道微生物群,与被认为是正常人群的个体相比,被诊断为BV的个体所采集的样本之间存在明显差异,从而确定了许多潜在的分子诊断靶标。 BV。这些研究提供了大量有用的信息,但是深度测序作为临床诊断方法尚不实用。我们最近描述了一种使用寡核苷酸偶联的荧光珠并在Luminex平台上进行检测的方法,可以以多重形式快速分析阴道微生物群。与当前的基于革兰氏染色的方法一样,该方法快速简便,但增加了在探针设计中利用测序研究中产生的分子知识的额外优势。因此,该方法提供了一种方法,可以对阴道拭子中存在的主要微生物进行鉴定,与革兰氏染色相比,该微生物可用于诊断BV,具有高特异性和敏感性,同时可以半定量和快速的方式提供有关物种存在和丰度的更多信息。方式。这种多重方法可扩展到远远超出当前针对特定生物的定量PCR分析的范围,该方法目前仅限于单个样品中的5或6种不同的分析。重要的是,该方法不仅限于检测阴道拭子中的细菌,而且可以轻松地应用于几乎任何感兴趣的微生物群落的快速分析。例如,我们最近开始将此方法应用于废水处理厂的诊断工具的开发。 ©2011知识共享署名许可。

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