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基于银纳米粒子修饰功能 DNA 树枝状大分子的金属增强化学发光纳米传感器用于超灵敏生物分析。

Metal enhanced chemiluminescence nanosensor for ultrasensitive bioassay based on silver nanoparticles modified functional DNA dendrimer.

机构信息

State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 210009, PR China.

Jiangsu Province Hospital, Nanjing Medical University First Affiliated Hospital, Nanjing, 210029, PR China.

出版信息

Anal Chim Acta. 2021 Jun 22;1165:338541. doi: 10.1016/j.aca.2021.338541. Epub 2021 Apr 21.

DOI:10.1016/j.aca.2021.338541
PMID:33975696
Abstract

A novel metal enhanced chemiluminescence (MEC) nanosensor was developed for ultrasensitive biosensing and imaging, based on functional DNA dendrimer (FDD), proximity-dependent DNAzyme and silver nanoparticles (AgNPs). The FDD containing two split G-quadruplex structures was prepared through an enzyme-free and step-by-step assembly strategy, and then reacted with AgNPs and hemin molecules to form the FDD/hemin/AgNPs facilely. Such a MEC nanosensor consisted of three modules: FDD (scaffold), the generated G-quadruplex/hemin DNAzyme (signal reporter) and AgNPs (chemiluminescence enhancer). The MEC effect was achieved by controlling the length of DNA sequences between AgNPs on the periphery of FDD and DNAzymes inside it. Such nanosensor exhibited 9-fold amplification and another 6.4-fold metal enhancement in chemiluminescence intensity, which can be easily applied into trace detection of multiple protein markers using a disposable protein immunoarray. The FDD/hemin/AgNPs-based multiplex MEC imaging assay showed wide linear ranges over 5 orders of magnitude and detection limits down to 5× 10 ng L and 1.8 × 10 U mL for cardiac troponin T and carcinoma antigen 125, demonstrating a promising potential in application to protein analysis and clinical diagnosis. Moreover, the MEC nanosensor can be effectively delivered into cells with excellent biocompatibility and outstanding stability, offering a new tool for detection of intracellular targets and suggesting wide applications in bioassay.

摘要

一种新型的金属增强化学发光(MEC)纳米传感器基于功能化 DNA 树状大分子(FDD)、近邻依赖型 DNA 酶和银纳米粒子(AgNPs)被开发出来用于超灵敏的生物传感和成像。FDD 含有两个分裂的 G-四链体结构,通过无酶且逐步组装策略制备,然后与 AgNPs 和血红素分子反应,容易形成 FDD/血红素/AgNPs。这种 MEC 纳米传感器由三个模块组成:FDD(支架)、产生的 G-四链体/血红素 DNA 酶(信号报告器)和 AgNPs(化学发光增强剂)。通过控制 FDD 外围的 AgNPs 与内部 DNA 酶之间的 DNA 序列长度来实现 MEC 效应。这种纳米传感器表现出 9 倍的放大作用和另外 6.4 倍的化学发光强度金属增强作用,可轻松应用于使用一次性蛋白质免疫阵列进行多种蛋白质标志物的痕量检测。基于 FDD/血红素/AgNPs 的多重 MEC 成像分析显示出超过 5 个数量级的宽线性范围和检测限低至 5×10ng L和 1.8×10 U mL的心肌肌钙蛋白 T 和癌抗原 125,这表明在蛋白质分析和临床诊断中的应用具有广阔的前景。此外,MEC 纳米传感器具有良好的生物相容性和出色的稳定性,可以有效地递送到细胞中,为检测细胞内靶标提供了新工具,并在生物测定中具有广泛的应用。

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