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Application of Isothermal Amplification Techniques for Identification of Madurella mycetomatis, the Prevalent Agent of Human Mycetoma

机译:等温扩增技术在鉴定人类霉菌瘤流行病菌-霉菌马氏体中的应用

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Appropriate diagnosis and treatment of eumycetoma may vary significantly depending on the causative agent. To date, the most common fungus causing mycetoma worldwide is Madurella mycetomatis. This species fails to express any recognizable morphological characteristics, and reliable identification can therefore only be achieved with the application of molecular techniques. Recombinase polymerase amplification (RPA) and loop-mediated isothermal amplification (LAMP) are proposed as alternatives to phenotypic methods. Species-specific primers were developed to target the ribosomal DNA (rDNA) internal transcribed spacer (ITS) region of M. mycetomatis. Both isothermal amplification techniques showed high specificity and sufficient sensitivity to amplify fungal DNA and proved to be appropriate for detection of M. mycetomatis. Diagnostic performance of the techniques was assessed in comparison to conventional PCR using biopsy specimens from eumycetoma patients. RPA is reliable and easy to operate and has the potential to be implemented in areas where mycetoma is endemic. The techniques may be expanded to detect fungal DNA from environmental samples.
机译:杜仲真菌的适当诊断和治疗可能会因病因而异。迄今为止,全世界范围内引起真菌病的最常见真菌是真菌分枝杆菌。该物种无法表达任何可识别的形态特征,因此只有通过分子技术的应用才能实现可靠的鉴定。重组酶聚合酶扩增(RPA)和环介导的等温扩增(LAMP)被提议作为表型方法的替代方法。物种特异性引物被开发出来,以靶向食肉支原体的核糖体DNA(rDNA)内部转录间隔区(ITS)区。两种等温扩增技术均显示出高特异性和足够的灵敏度来扩增真菌DNA,并被证明适用于检测分枝杆菌。与常规PCR相比,该技术的诊断性能得到了评估,其中使用了来自杜仲患者的活检标本。 RPA可靠且易于操作,并且有可能在肌瘤为地方病的地区实施。可以扩展该技术以检测环境样品中的真菌DNA。

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