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基于三螺旋磁探针与通过滚环扩增偶联的荧光脂质体杂交组装体的 p53 基因的灵敏和选择性检测。

Sensitive and selective detection of the p53 gene based on a triple-helix magnetic probe coupled to a fluorescent liposome hybridization assembly via rolling circle amplification.

机构信息

Department of Chemistry, Liaocheng University, Liaocheng 252059, China.

Key Laboratory for Colloid and Interface Chemistry of Education Ministry, School of Chemistry and Chemical Engineering, Shandong University, 250100 Jinan, P.R. China.

出版信息

Analyst. 2017 Oct 7;142(19):3598-3604. doi: 10.1039/c7an01255a. Epub 2017 Sep 11.

Abstract

Developing a sensitive and selective sensing platform for the p53 gene and its mutation analysis is essential and may aid in early cancer screening and assessment of prognosis. Here, we developed a highly sensitive and selective p53 gene assay based on the coupling of a triple-helix magnetic probe (THMP) to a fluorescent liposome hybridization assembly, a process initiated by rolling circle amplification (RCA). In the presence of p53, the THMP unfolds and activates an enzymatic cleavage reaction, thus releasing the RCA primer and initiating the RCA product-assisted fluorescent liposome hybridization assembly. The resultant double-stranded DNA structures bind the intercalating SG dye from the fluorescent liposomes, thus dramatically enhancing the fluorescence signal. In the absence of p53, the THMP remains intact and blocks the trigger release and fluorescent liposome assembly, thus resulting in a low background signal. The THMPs were designed with integrated target recognition by Watson-Crick base-pairing, site-specific cleavage by an endonuclease and background signal elimination by magnetic isolation, thus avoiding the need to design multiple probes. Moreover, the use of fluorescent liposome assembly and magnetic isolation helps in avoiding sample matrix interference and nonspecific staining. Through cooperative amplification coupling with enzyme cleavage recycling, the RCA-assisted fluorescent liposome assembly and magnetic isolation improved the sensitivity, with a detection limit of 0.07 fM. The excellent capacity of the THMP to specifically detect the involved targets and the precise site-specific endonuclease cleavage ensured remarkable selectivity for p53 against single-base mismatches. This proposed approach worked well in biological samples, thus demonstrating great potential for biomedical and clinical diagnosis applications.

摘要

开发用于 p53 基因及其突变分析的灵敏和选择性传感平台是至关重要的,它可能有助于早期癌症筛查和预后评估。在这里,我们开发了一种基于三重螺旋磁探针(THMP)与荧光脂质体杂交组装偶联的高度灵敏和选择性的 p53 基因检测方法,该过程由滚环扩增(RCA)引发。在存在 p53 的情况下,THMP 展开并激活酶切反应,从而释放 RCA 引物并启动 RCA 产物辅助的荧光脂质体杂交组装。所得的双链 DNA 结构与荧光脂质体中的嵌入 SG 染料结合,从而显著增强荧光信号。在不存在 p53 的情况下,THMP 保持完整并阻止触发释放和荧光脂质体组装,从而导致背景信号低。THMP 设计具有通过 Watson-Crick 碱基配对进行集成靶标识别、通过内切酶进行特异性切割和通过磁分离消除背景信号的功能,从而避免了需要设计多个探针。此外,荧光脂质体组装和磁分离的使用有助于避免样品基质干扰和非特异性染色。通过与酶切割循环协同放大的 RCA 辅助的荧光脂质体组装和磁分离提高了灵敏度,检测限低至 0.07 fM。THMP 特异性检测靶标的出色能力和精确的内切酶特异性切割确保了 p53 对单碱基错配的显著选择性。该方法在生物样品中效果良好,因此在生物医学和临床诊断应用方面具有巨大的潜力。

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