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Techniques for Evaluation of LAMP Amplicons and their Applications in Molecular Biology

机译:LAMP扩增子的评估技术及其在分子生物学中的应用

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Loop-mediated isothermal amplification (LAMP) developed by Notomi et al. (2000) has made it possible to amplify DNA with high specificity, efficiency and rapidity under isothermal conditions. The ultimate products of LAMP are stem-loop structures with several inverted repeats of the target sequence and cauliflower-like patterns with multiple loops shaped by annealing between every other inverted repeats of the amplified target in the similar strand. Because the amplification process in LAMP is achieved by using four to six distinct primers, it is expected to amplify the target region with high selectivity. However, evaluation of reaction accuracy or quantitative inspection make it necessary to append other procedures to scrutinize the amplified products. Hitherto, various techniques such as turbidity assessment in the reaction vessel, post-reaction agarose gel electrophoresis, use of intercalating fluorescent dyes, real-time turbidimetry, addition of cationic polymers to the reaction mixture, polyacrylamide gel-based microchambers, lateral flow dipsticks, fluorescence resonance energy transfer (FRET), enzyme-linked immunosorbent assays and nanoparticle-based colorimetric tests have been utilized for this purpose. In this paper, we reviewed the best-known techniques for evaluation of LAMP amplicons and their applications in molecular biology beside their advantages and deficiencies. Regarding the properties of each technique, the development of innovative prompt, cost-effective and precise molecular detection methods for application in the broad field of cancer research may be feasible.
机译:Notomi等人开发的回路介导的等温扩增(LAMP)。 (2000)已经使得在等温条件下以高特异性,效率和快速性扩增DNA成为可能。 LAMP的最终产物是茎环结构,具有靶序列的几个反向重复序列,花椰菜样模式具有多个环,这些环通过在相似链中扩增的靶标的每个其他反向重复序列之间退火而形成。由于通过使用4至6种不同的引物可实现LAMP的扩增过程,因此有望以高选择性扩增目标区域。然而,反应准确性的评估或定量检查使得有必要附加其他程序来检查扩增产物。迄今为止,有多种技术,例如反应容器中的浊度评估,反应后琼脂糖凝胶电泳,嵌入荧光染料的使用,实时比浊法,向反应混合物中添加阳离子聚合物,基于聚丙烯酰胺凝胶的微腔,侧向量油计,荧光共振能量转移(FRET),酶联免疫吸附测定和基于纳米粒子的比色测试已用于此目的。在本文中,我们回顾了评估LAMP扩增子的最著名技术及其在分子生物学中的优势和不足。关于每种技术的特性,开发在癌症研究的广泛领域中应用的创新,快速,经济高效和精确的分子检测方法可能是可行的。

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