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基于目标触发的摆动结构 DNA 双链体自切割引发金纳米粒子聚集的 L-组氨酸的比色检测。

Colorimetric detection of L-histidine based on the target-triggered self-cleavage of swing-structured DNA duplex-induced aggregation of gold nanoparticles.

机构信息

Department of Chemistry, Capital Normal University, Beijing, 100048, China.

College of Chemical and Environmental Engineering, Shandong University of Science and Technology, Qingdao, 266590, China.

出版信息

Mikrochim Acta. 2018 Sep 12;185(10):452. doi: 10.1007/s00604-018-2987-z.

Abstract

A rapid, highly sensitive and selective colorimetric assay is presented for visually detecting L-histidine. It is based on L-histidine-triggered self-cleavage of DNA duplex-induced gold nanoparticle (AuNP) aggregation. The citrate-capped AuNPs easily aggregate in a high concentration of salt environment. However, in the presence of L-histidine aptamers (DNA1 and DNA2), the partial strands of DNA1 and DNA2 hybridize to form a DNA duplex with a swing structure. The swing-like DNA duplexes are adsorbed on the surface of AuNPs to improve the stability of AuNPs, and the AuNPs also are better dispersed in high-salt media. When L-histidine is added to the solutions, it catalyzes the self-cleavage of DNA1 to form many single-stranded DNA (ssDNA) fragments. These ssDNA segments are adsorbed on the AuNPs and weaken the stability of AuNPs. Hence, the AuNPs aggregate in high-salt environment, and this results in a red-to-blue color change. Under the optimized conditions, L-histidine can be determined with a limit of detection of 3.6 nM. In addition, the sensor was successfully applied to the determination of L-histidine in spiked serum samples. Graphical abstract Schematic of a rapid and homogeneous colorimetric L-histidine assay. It combines L-histidine-triggered self-cleavage of the swing-like DNA duplexes and self-cleavage of DNA-induced AuNP aggregation.

摘要

一种快速、高灵敏且选择性的比色测定法被提出用于可视化检测 L-组氨酸。它基于 L-组氨酸触发的 DNA 双链体诱导的金纳米粒子(AuNP)聚集的自切割。在高盐环境中,柠檬酸盐封端的 AuNP 很容易聚集。然而,在存在 L-组氨酸适体(DNA1 和 DNA2)的情况下,DNA1 和 DNA2 的部分链杂交形成具有摆动结构的 DNA 双链体。这种摆动式 DNA 双链体被吸附在 AuNP 表面以提高 AuNP 的稳定性,并且 AuNP 在高盐介质中也更好地分散。当 L-组氨酸被添加到溶液中时,它会催化 DNA1 的自切割,形成许多单链 DNA(ssDNA)片段。这些 ssDNA 片段被吸附在 AuNP 上并削弱 AuNP 的稳定性。因此,AuNP 在高盐环境中聚集,导致颜色从红色变为蓝色。在优化条件下,L-组氨酸的检测限为 3.6 nM。此外,该传感器成功应用于加标血清样品中 L-组氨酸的测定。

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