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一种用于小型化检测的基于脱氧核酶的无标记检测系统。

A DNAzyme based label-free detection system for miniaturized assays.

作者信息

Köster Daniela M, Haselbach David, Lehrach Hans, Seitz Harald

机构信息

Max Planck Institute for Molecular Genetics, Vertebrate Genomics, Ihnestraße 63-73, 14195 Berlin, Germany.

出版信息

Mol Biosyst. 2011 Oct;7(10):2882-9. doi: 10.1039/c1mb05132f. Epub 2011 Jul 27.

DOI:10.1039/c1mb05132f
PMID:21792453
Abstract

Sensitive detection assays are a prerequisite for the analysis of small amounts of samples derived from biological material. There is a great demand for highly sensitive and robust detection techniques to analyze biomolecules. The combination of catalytic active DNA (DNAzyme) with a peroxidase activity with rolling circle amplification (RCA) is a promising alternative to common detection systems. The rolling circle amplification leads to a product with tandemly linked copies of DNAzymes. The continuous signal generation of the amplified DNAzymes results in an increased sensitivity. The combination of two amplification reactions, namely RCA and DNAzymes, results in increased signal intensity by a factor of 10(6). With this approach the labeling of samples can be avoided. The advantage of the introduced assay is the usage of nucleic acids as biosensors for the detection of biomolecules. Coupling of the analyte molecule to the detection molecules allows the direct detection of the analyte molecule. The described label-free hotpot assay has a broad potential field of applications. The hotpot assay can be adapted to detect and analyze RNA, DNA and proteins down to femtomolar concentrations in a miniaturized platform with a total reaction solution of 50 nl. The applicability of the assay for diagnostics and research will be shown with a focus on high throughput systems using a nano-well platform.

摘要

灵敏的检测分析方法是分析源自生物材料的少量样品的前提条件。对于分析生物分子而言,对高灵敏度且稳健的检测技术有着巨大需求。具有过氧化物酶活性的催化活性DNA(脱氧核酶)与滚环扩增(RCA)相结合,是常见检测系统的一种有前景的替代方法。滚环扩增会产生具有串联连接的脱氧核酶拷贝的产物。扩增后的脱氧核酶持续产生信号,从而提高了灵敏度。两种扩增反应,即RCA和脱氧核酶的结合,使信号强度提高了10⁶倍。采用这种方法可以避免对样品进行标记。所引入的检测方法的优点是使用核酸作为生物传感器来检测生物分子。将分析物分子与检测分子偶联可实现对分析物分子的直接检测。所描述的无标记热火锅检测方法具有广泛的潜在应用领域。热火锅检测方法可适用于在总体积为50 nl的微型平台中检测和分析低至飞摩尔浓度的RNA、DNA和蛋白质。将以使用纳米孔平台的高通量系统为重点,展示该检测方法在诊断和研究中的适用性。

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