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Microwave-accelerated method for ultra-rapid extraction of Neisseria gonorrhoeae DNA for downstream detection

机译:用于下游检测的Neisseria淋病DNA的超快速提取微波加速方法

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Nucleic acid-based detection of gonorrhea infections typically require a two-step process involving isolation of the nucleic acid, followed by detection of the genomic target often involving polymerase chain reaction (PCR)-based approaches. In an effort to improve on current detection approaches, we have developed a unique two-step microwave-accelerated approach for rapid extraction and detection of Neisseria gonorrhoeae (gonorrhea, GC) DNA. Our approach is based on the use of highly focused microwave radiation to rapidly lyse bacterial cells, release, and subsequently fragment microbial DNA. The DNA target is then detected by a process known as microwave-accelerated metal-enhanced fluorescence (MAMEF), an ultra-sensitive direct DNA detection analytical technique. In the current study, we show that highly focused microwaves at 2.45 GHz, using 12.3-mm gold film equilateral triangles, are able to rapidly lyse both bacteria cells and fragment DNA in a time- and microwave power-dependent manner. Detection of the extracted DNA can be performed by MAMEF, without the need for DNA amplification, in less than 10 min total time or by other PCR-based approaches. Collectively, the use of a microwave accelerated method for the release and detection of DNA represents a significant step forward toward the development of a point-of-care (POC) platform for detection of gonorrhea infections. (C) 2016 Elsevier Inc. All rights reserved.
机译:基于核酸的淋病性检测通常需要涉及分离核酸的两步方法,然后检测通常涉及聚合酶链式反应的基因组靶标的方法(PCR)的方法。为了提高电流检测方法,我们开发了一种独特的两步微波加速方法,用于快速提取和检测Neisseria淋病(GONORRHEA,GC)DNA。我们的方法是基于使用高度聚焦的微波辐射来快速粘合细菌细胞,释放和随后片段微生物DNA。然后通过称为微波加速金属增强荧光(MAMEF)的方法检测DNA靶,一种超敏感直接DNA检测分析技术。在目前的研究中,我们表明,使用12.3毫米金膜等边三角形的2.45GHz高度聚焦的微波,能够以时间和微波递增的方式快速粘合细菌细胞和片段DNA。提取的DNA的检测可以通过MAMEF进行,而不需要DNA扩增,在少于10分钟的总时间或通过其他基于PCR的方法进行DNA扩增。统称,使用微波加速方法的DNA释放和检测代表了对用于检测淋病感染的护理点(POC)平台的重要一步。 (c)2016年Elsevier Inc.保留所有权利。

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