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通过优化发夹退火条件提高 miRNA 分析与错配催化发夹组装反应的灵敏度。

Improving the Sensitivity of the miRNA Assay Coupled with the Mismatched Catalytic Hairpin Assembly Reaction by Optimization of Hairpin Annealing Conditions.

机构信息

Department of Chemistry, Lomonosov Moscow State University, Leninskie Gory, bldg. 1, Moscow 119991, Russia.

State Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources, Guangxi Normal University, Guilin 541004, China.

出版信息

Anal Chem. 2021 May 4;93(17):6824-6830. doi: 10.1021/acs.analchem.1c00820. Epub 2021 Apr 26.

Abstract

The mismatched catalytic hairpin assembly (mCHA), a programmable oligonucleotide circuit, is one of the promising isothermal amplification methods used in nucleic acid detection. Its limitations are related to a high background noise observed due to the target-independent hybridization of the reacting hairpins (HPs). In this work, it was shown that the introduction of salts such as NaCl and MgCl to HP1/HP2 annealing solutions sharply reduces the background in mCHA and simultaneously increases the signal-to-background (S/B) ratio. A comparison of the salts demonstrated the higher activity of MgCl as compared to NaCl. A similar effect of reducing the background was observed with a decrease in the concentration of H1/H2 probes in annealing solutions. Using the favorable annealing conditions allowed the development of an ultrasensitive chemiluminescence assay coupled with mCHA for miRNA quantitation. Except mCHA, the use of a streptavidin-polyHRP conjugate and an enhanced chemiluminescence reaction additionally increased the assay sensitivity. Notably, the optimization of the HP annealing diminished the detection limit of the assay by 2 orders of magnitude and increased the sensitivity and precision of miRNA-141 determination. The discovered fact of reducing the background by the variation of HP annealing conditions may be valuable not only for the mCHA performance but also likely for other HP-based biochemical methods.

摘要

错配催化发夹组装(mCHA)是一种可编程寡核苷酸电路,是用于核酸检测的有前途的等温扩增方法之一。其局限性与由于反应发夹(HP)的目标独立杂交而观察到的高背景噪声有关。在这项工作中,已经表明,向 HP1/HP2 退火溶液中引入盐(如 NaCl 和 MgCl)可显着降低 mCHA 的背景并同时提高信号与背景的比值(S/B)。对盐的比较表明,MgCl 的活性高于 NaCl。在退火溶液中降低 H1/H2 探针的浓度也观察到类似降低背景的效果。使用有利的退火条件允许开发与 mCHA 结合的超灵敏化学发光测定法用于 miRNA 定量。除了 mCHA 之外,还使用链霉亲和素-多 HRP 缀合物和增强的化学发光反应进一步提高了测定的灵敏度。值得注意的是,通过改变 HP 退火条件优化了测定的检测限,降低了 2 个数量级,并提高了 miRNA-141 测定的灵敏度和精度。通过改变 HP 退火条件降低背景的发现事实不仅对 mCHA 的性能有价值,而且可能对其他基于 HP 的生化方法也有价值。

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