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一种基于可切换镧系元素发光的空间检测的集成式闭管双plex PCR扩增与杂交分析方法。

An integrated closed-tube 2-plex PCR amplification and hybridization assay with switchable lanthanide luminescence based spatial detection.

作者信息

Lahdenperä Susanne, Spangar Anni, Lempainen Anna-Maija, Joki Laura, Soukka Tero

机构信息

Department of Biotechnology, University of Turku, Tykistökatu 6 A 6th floor, FI-20520 Turku, Finland.

出版信息

Analyst. 2015 Jun 21;140(12):3960-8. doi: 10.1039/c5an00253b. Epub 2015 Apr 17.

Abstract

Switchable lanthanide luminescence is a binary probe technology that inherently enables a high signal modulation in separation-free detection of DNA targets. A luminescent lanthanide complex is formed only when the two probes hybridize adjacently to their target DNA. We have now further adapted this technology for the first time in the integration of a 2-plex polymerase chain reaction (PCR) amplification and hybridization-based solid-phase detection of the amplification products of the Staphylococcus aureus gyrB gene and an internal amplification control (IAC). The assay was performed in a sealed polypropylene PCR chip containing a flat-bottom reaction chamber with two immobilized capture probe spots. The surface of the reaction chamber was functionalized with NHS-PEG-azide and alkyne-modified capture probes for each amplicon, labeled with a light harvesting antenna ligand, and covalently attached as spots to the azide-modified reaction chamber using a copper(i)-catalyzed azide-alkyne cycloaddition. Asymmetric duplex-PCR was then performed with no template, one template or both templates present and with a europium ion carrier chelate labeled probe for each amplicon in the reaction. After amplification europium fluorescence was measured by scanning the reaction chamber as a 10 × 10 raster with 0.6 mm resolution in time-resolved mode. With this assay we were able to co-amplify and detect the amplification products of the gyrB target from 100, 1000 and 10,000 copies of isolated S. aureus DNA together with the amplification products from the initial 5000 copies of the synthetic IAC template in the same sealed reaction chamber. The addition of 10,000 copies of isolated non-target Escherichia coli DNA in the same reaction with 5000 copies of the synthetic IAC template did not interfere with the amplification or detection of the IAC. The dynamic range of the assay for the synthetic S. aureus gyrB target was three orders of magnitude and the limit of detection of 8 pM was obtained. This proof-of-concept study shows that the switchable lanthanide luminescent probes enable separation-free array-based multiplexed detection of the amplification products in a closed-tube PCR which can enable a higher degree of multiplexing than is currently feasible by using different spectrally separated fluorescent probes.

摘要

可切换镧系元素发光是一种二元探针技术,其本质上能够在无分离检测DNA靶标时实现高信号调制。只有当两个探针与其靶标DNA相邻杂交时,才会形成发光镧系元素配合物。我们现在首次进一步改进了这项技术,将其用于金黄色葡萄球菌gyrB基因和内部扩增对照(IAC)的双重复合聚合酶链反应(PCR)扩增以及基于杂交的扩增产物固相检测。该检测在一个密封的聚丙烯PCR芯片中进行,芯片包含一个带有两个固定捕获探针斑点的平底反应腔。反应腔表面用NHS-PEG-叠氮化物进行功能化处理,并为每个扩增子配备炔烃修饰的捕获探针,用一个光捕获天线配体进行标记,然后使用铜(I)催化的叠氮化物-炔烃环加成反应将其作为斑点共价连接到叠氮化物修饰的反应腔上。然后进行不对称双链PCR,反应中不存在模板、存在一个模板或两个模板,并且为每个扩增子配备一个铕离子载体螯合物标记的探针。扩增后,通过以时间分辨模式将反应腔作为分辨率为0.6毫米的10×10光栅进行扫描来测量铕荧光。通过该检测,我们能够在同一个密封反应腔中共同扩增并检测来自100、1000和10000个拷贝的分离金黄色葡萄球菌DNA的gyrB靶标的扩增产物,以及来自最初5000个拷贝的合成IAC模板的扩增产物。在与5000个拷贝的合成IAC模板的相同反应中加入10000个拷贝的分离非靶标大肠杆菌DNA,不会干扰IAC的扩增或检测。该合成金黄色葡萄球菌gyrB靶标的检测动态范围为三个数量级,检测限为8 pM。这项概念验证研究表明,可切换镧系元素发光探针能够在封闭管PCR中对扩增产物进行无分离的基于阵列的多重检测,这比目前使用不同光谱分离荧光探针可行的多重检测程度更高。

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