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多孔聚合物整体柱中的触手探针夹心分析提高了特异性、灵敏度和动力学性能。

Tentacle probe sandwich assay in porous polymer monolith improves specificity, sensitivity and kinetics.

作者信息

Satterfield Brent C, Caplan Michael R, West Jay A A

机构信息

Harrington Department of Bioengineering, Arizona State University Tempe, AZ, USA.

出版信息

Nucleic Acids Res. 2008 Nov;36(19):e129. doi: 10.1093/nar/gkn564. Epub 2008 Sep 12.

Abstract

Nucleic acid sandwich assays improve low-density array analysis through the addition of a capture probe and a specific label, increasing specificity and sensitivity. Here, we employ photo-initiated porous polymer monolith (PPM) as a high-surface area substrate for sandwich assay analysis. PPMs are shown to enhance extraction efficiency by 20-fold from 2 microl of sample. We further compare the performance of labeled linear probes, quantum dot labeled probes, molecular beacons (MBs) and tentacle probes (TPs). Each probe technology was compared and contrasted with traditional hybridization methods using labeled sample. All probes demonstrated similar sensitivity and greater specificity than traditional hybridization techniques. MBs and TPs were able to bypass a wash step due to their 'on-off' signaling mechanism. TPs demonstrated reaction kinetics 37.6 times faster than MBs, resulting in the fastest assay time of 5 min. Our data further indicate TPs had the most sensitive detection limit (<1 nM) as well as the highest specificity (>1 x 10(4) improvement) among all tested probes in these experiments. By matching the enhanced extraction efficiencies of PPM with the selectivity of TPs, we have created a format for improved sandwich assays.

摘要

核酸夹心测定法通过添加捕获探针和特定标记物来改进低密度阵列分析,从而提高特异性和灵敏度。在此,我们采用光引发多孔聚合物整体柱(PPM)作为用于夹心测定分析的高表面积底物。结果表明,PPM可使从2微升样品中的提取效率提高20倍。我们进一步比较了标记线性探针、量子点标记探针、分子信标(MBs)和触手探针(TPs)的性能。将每种探针技术与使用标记样品的传统杂交方法进行了比较和对比。所有探针均表现出与传统杂交技术相似的灵敏度和更高的特异性。由于其“开-关”信号机制,MBs和TPs能够绕过洗涤步骤。TPs的反应动力学比MBs快37.6倍,从而使测定时间最短可达5分钟。我们的数据进一步表明,在这些实验中,TPs在所有测试探针中具有最灵敏的检测限(<1 nM)以及最高的特异性(提高>1×10⁴)。通过将PPM提高的提取效率与TPs的选择性相匹配,我们创建了一种改进夹心测定法的形式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60a8/2577359/5a4192085ac8/gkn564f1.jpg

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