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Rapid, single-step nucleic acid detection

机译:快速,一步法的核酸检测

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A rapid detection method for nucleic acid based on bioluminescence resonance energy transfer (BRET) from the luminescence donor Renilla luciferase to an acceptor quantum dot upon oligonucleotide probe hybridization has been developed. Utilizing a competitive assay, we detected the target nucleic acid by correlating the BRET signal with the amount of target present in the sample. This method allows for the detection of as little as 4 pmol (20 nM) of nucleic acid in a single-step, homogeneous format both in vitro in a buffer matrix as well as in a cellular matrix. Using this method, one may perform nucleic acid detection in as little as 30 min, showing much improvement over time-consuming blotting methods and solid-phase methods which require multiple wash steps to remove unbound probe. This is the first report on the use of quantum dots as a BRET acceptor in the development of a nucleic acid hybridization assay.
机译:已经开发了基于寡核苷酸探针杂交后从发光供体海肾荧光素酶到受体量子点的生物发光共振能量转移(BRET)的核酸的快速检测方法。利用竞争性测定,我们通过将BRET信号与样品中存在的靶标量相关联来检测靶标核酸。该方法允许在体外,在缓冲液基质中以及在细胞基质中以一步均一的形式检测低至4 pmol(20 nM)的核酸。使用这种方法,可以在短短30分钟内完成核酸检测,与耗时的印迹方法和固相方法相比,显示出了很大的进步,后者需要多个清洗步骤才能去除未结合的探针。这是有关在核酸杂交试验开发中使用量子点作为BRET受体的第一份报告。

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