Laboratory of Life Sciences Electronics - École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, CH, 1015, Switzerland.
Laboratory of Biological Network Characterization - École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, CH, 1015, Switzerland.
Biosens Bioelectron. 2022 Feb 15;198:113802. doi: 10.1016/j.bios.2021.113802. Epub 2021 Nov 15.
Application of recombinase polymerase amplification (RPA) for pH-based detection of DNA amplification has been investigated. Commercial RPA kits from TwistDx are modified to minimize their pH buffering capacity. Due to the RPA's unique biochemistry, removal of tris from the amplification kit is not enough to lower the buffering capacity of the RPA assay. Even in the absence of tris, RPA components in the commercial kit intrinsically buffer the pH. We show different strategies to minimize the buffering capacity of the RPA kit, while maintaining the amplification efficiency. Even in minimally buffered conditions, it is noticed that RPA's amplification yield is not high enough to overcome the assay's intrinsic buffering capacity. The effect of pyrophosphate precipitation in RPA on the reaction's pH have also been addressed. In conclusion, this work highlights strategies and considerations for the development of pH-based assays from nucleic acid amplification methods which involve ancillary enzymes that catalyze nucleotide hydrolysis.
人们研究了重组酶聚合酶扩增(RPA)在基于 pH 值的 DNA 扩增检测中的应用。TwistDx 的商业 RPA 试剂盒经过改良,以尽量降低其 pH 值缓冲能力。由于 RPA 的独特生化性质,仅仅从扩增试剂盒中去除 tris(三羟甲基氨基甲烷)不足以降低 RPA 检测的缓冲能力。即使没有 tris,商业试剂盒中的 RPA 成分也会内在地缓冲 pH 值。我们展示了不同的策略来尽量降低 RPA 试剂盒的缓冲能力,同时保持扩增效率。即使在缓冲能力最低的条件下,也注意到 RPA 的扩增产量不足以克服检测的内在缓冲能力。我们还研究了 RPA 中焦磷酸酯沉淀对反应 pH 值的影响。总之,这项工作强调了在开发涉及催化核苷酸水解的辅助酶的核酸扩增方法的 pH 值检测时应考虑的策略。