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单颗粒电感耦合等离子体质谱法用于通用核酸检测的均相多组分核酸酶分析。

A Homogeneous Multicomponent Nucleic Acid Enzyme Assay for Universal Nucleic Acid Detection by Single-Particle Inductively Coupled Plasma Mass Spectrometry.

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

Anal Chem. 2021 Mar 23;93(11):4952-4959. doi: 10.1021/acs.analchem.0c05444. Epub 2021 Mar 9.

Abstract

Single-particle inductively coupled plasma mass spectrometry (SP-ICP-MS) has great potential for sensitive analysis of nucleic acids; however, it usually requires separation of target-induced nanoparticle reporters, and the sequence of probes on nanoparticle reporters has to be tuned for each target accordingly. Here, we developed a homogeneous multicomponent nucleic acid enzyme (MNAzyme) assay for universal nucleic acid detection. The two components of MNAzyme contain target recognition sites, substrate binding sites, and a catalytic core. Only in the presence of a specific nucleic acid target, the MNAzyme will assemble to trigger its nucleic acid enzyme activity and cleave its substrate (Linker DNA). The Linker DNA could link gold nanoparticle (AuNP) probes to form a larger assembled particle, while the cleavage of Linker DNA will disturb the linkage between probes, inducing a smaller assembled particle. The assembled particles with different sizes could be differentiated and sensitively detected in SP-ICP-MS, which also enables the tolerance of a complex matrix. By simply altering the sequences of the target recognition sites in MNAzyme, we applied the assay for two types of nucleic acids (long strand DNA and short strand RNA), malaria DNA and miRNA-10b. With increasing the target concentration, the signal intensity of each assembled particle decreases, but the frequency of assembled particle pulse increases. Both targets could be quantitatively detected from 0.1 to 25 pmol L with high specificity in serum samples. The developed MNAzyme-SP-ICP-MS assay possesses simple operation in a homogeneous reaction, easy tunability for multiple types of nucleic acid targets, and good compatibility with clinic samples.

摘要

单颗粒电感耦合等离子体质谱(SP-ICP-MS)在核酸的灵敏分析方面具有很大的潜力;然而,它通常需要分离目标诱导的纳米粒子报告物,并且纳米粒子报告物上的探针序列必须针对每个目标进行相应的调整。在这里,我们开发了一种用于通用核酸检测的均相多组分核酸酶(MNAzyme)分析方法。MNAzyme 的两个组成部分包含靶标识别位点、底物结合位点和催化核心。只有在存在特定的核酸靶标时,MNAzyme 才会组装以触发其核酸酶活性并切割其底物(连接 DNA)。连接 DNA 可以将金纳米粒子(AuNP)探针连接起来形成更大的组装粒子,而连接 DNA 的切割会干扰探针之间的连接,诱导较小的组装粒子。不同大小的组装粒子可以在 SP-ICP-MS 中进行区分和灵敏检测,这也使得对复杂基质的容忍度提高。通过简单改变 MNAzyme 中靶标识别位点的序列,我们应用该方法检测了两种类型的核酸(长链 DNA 和短链 RNA)、疟原虫 DNA 和 miRNA-10b。随着靶标浓度的增加,每个组装粒子的信号强度降低,但组装粒子脉冲的频率增加。两种靶标都可以在血清样本中从 0.1 到 25 pmol L 进行定量检测,具有很高的特异性。开发的 MNAzyme-SP-ICP-MS 分析方法在均相反应中具有简单的操作、对多种类型的核酸靶标具有易于调节的特性,并且与临床样本具有良好的兼容性。

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