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真菌核酸特征的多重检测

Multiplexed detection of fungal nucleic acid signatures.

作者信息

Diaz Mara R, Dunbar Sherry A, Jacobson James W

机构信息

University of Miami, Rosenstiel School of Marine and Atmospheric Science, Miami, Florida, USA.

出版信息

Curr Protoc Cytom. 2008 Apr;Chapter 13:Unit13.9. doi: 10.1002/0471142956.cy1309s44.

Abstract

Diagnoses of opportunistic mycotic infections constitute an increasing clinical problem. Conventional diagnostic tests are time consuming and lack specificity and sensitivity for accurate and timely prognoses. This unit provides a comprehensive description of a fungal detection method that combines nucleic acid signatures with flow cytometry. The multiplexed assay, which uses xMAP technology, consists of unique fluorescent microspheres covalently bound to species-specific fungal oligonucleotide probes. In the presence of the complementary target sequence, the probe hybridizes to its biotinylated target. Quantification of the reaction is based on the fluorescence signal of the reporter molecule that binds to the biotin moieties of the target. The assay can be expanded to include other microorganisms and has the capability to simultaneously test 100 different fungal probes per tube/well. The speed, flexibility in design, and high-throughput capability makes this assay an attractive diagnostic tool for fungal infections and other related maladies.

摘要

机会性霉菌感染的诊断成为一个日益严重的临床问题。传统诊断测试耗时且缺乏用于准确及时预后的特异性和敏感性。本单元全面描述了一种将核酸特征与流式细胞术相结合的真菌检测方法。使用xMAP技术的多重检测由与物种特异性真菌寡核苷酸探针共价结合的独特荧光微球组成。在存在互补靶序列的情况下,探针与其生物素化靶标杂交。反应的定量基于与靶标的生物素部分结合的报告分子的荧光信号。该检测可扩展到包括其他微生物,并且每管/孔能够同时检测100种不同的真菌探针。该检测的速度、设计灵活性和高通量能力使其成为用于真菌感染和其他相关疾病的有吸引力的诊断工具。

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