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基于等离子体金纳米星的探针,具有距离相关的等离子体增强荧光,用于超灵敏 DNA 甲基转移酶分析。

Plasmonic Gold Nanostar-Based Probes with Distance-Dependent Plasmon-Enhanced Fluorescence for Ultrasensitive DNA Methyltransferase Assay.

机构信息

Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science, MOE, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

Anal Chem. 2024 Mar 19;96(11):4402-4409. doi: 10.1021/acs.analchem.3c04122. Epub 2024 Mar 8.

Abstract

The ultrasensitive DNA methyltransferase (Dam MTase) assay is of high significance for biomedical research and clinical diagnosis because of its profound effect on gene regulation. However, detection sensitivity is still limited by shortcomings, including photobleaching and weak signal intensities of conventional fluorophores at low concentrations. Plasmonic nanostructures with ultrastrong electromagnetic fields and fluorescence enhancement capability that can overcome these intrinsic defects hold great potential for ultrasensitive bioanalysis. Herein, a silica-coated gold nanostars (Au NSTs@SiO)-based plasmon-enhanced fluorescence (PEF) probe with 20 "hot spots" was developed for ultrasensitive detection of Dam MTase. Here, the Dam Mtase assay was achieved by detecting the byproduct PPi of the rolling circle amplification reaction. It is worth noting that, benefiting from the excellent fluorescence enhancement capability of Au NSTs originating from their 20 "hot spots", the detection limit of Dam Mtase was reduced by nearly 105 times. Moreover, the proposed Au NST-based PEF probe enabled versatile evaluation of Dam MTase inhibitors as well as endogenous Dam MTase detection in GW5100 and JM110 cell lysates, demonstrating its potential in biomedical analysis.

摘要

超灵敏 DNA 甲基转移酶 (Dam MTase) 测定法在生物医学研究和临床诊断中具有重要意义,因为它对基因调控有深远的影响。然而,由于传统荧光团在低浓度下的光漂白和弱信号强度等缺点,其检测灵敏度仍然受到限制。具有超强电磁场和荧光增强能力的等离子体纳米结构可以克服这些固有缺陷,在超灵敏生物分析中具有巨大的潜力。在此,开发了一种基于金纳米星(Au NSTs@SiO)的等离子体增强荧光(PEF)探针,该探针具有 20 个“热点”,用于超灵敏检测 Dam MTase。在这里,通过检测滚环扩增反应的副产物 PPi 来实现 Dam Mtase 测定。值得注意的是,得益于 Au NSTs 源自其 20 个“热点”的优异荧光增强能力,Dam Mtase 的检测限降低了近 105 倍。此外,所提出的基于 Au NST 的 PEF 探针能够对 Dam MTase 抑制剂进行多功能评估,并对 GW5100 和 JM110 细胞裂解液中的内源性 Dam MTase 进行检测,证明了其在生物医学分析中的潜力。

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