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适体微阵列技术针对多种蛋白质靶标的优化。

Optimization of aptamer microarray technology for multiple protein targets.

作者信息

Cho Eun Jeong, Collett James R, Szafranska Anna E, Ellington Andrew D

机构信息

Department of Chemistry and Biochemistry, Institute for Cell and Molecular Biology, University of Texas at Austin, Austin, TX 78712, United States.

出版信息

Anal Chim Acta. 2006 Mar 30;564(1):82-90. doi: 10.1016/j.aca.2005.12.038. Epub 2006 Jan 23.

Abstract

Aptamer-based microarrays for the quantitation of multiple protein analytes have been developed. A multiplex aptamer microarray was generated by printing two RNA aptamers (anti-lysozyme and anti-ricin) and two DNA aptamers (anti-IgE and anti-thrombin) on to either streptavidin (SA) or neutravidin (NA)-coated glass slides. However, substantial optimization was required in order to ensure the simultaneous function of the aptamer:analyte pairs. The effects of protein labeling, assay buffer, surface coating, and immobilization chemistry and orientation were investigated. A single buffer (PBS buffer containing 5 mM MgCl2 and 0.1% Tween 20) was found to work well with all the aptamers, even though this was not the buffer originally used in their selection, while neutravidin-coated slides yielded a lower detection limit, wider detection range, and more uniform background than streptavidin-coated slides. Incubation with Cy3-labeled proteins yielded sensitive, target-specific, and dose-dependent responses to each protein. Target protein concentrations as low as 72 pg/mL (5 pM, lysozyme), 15 ng/mL (0.5 nM, ricin), 1.9 ng/mL (0.01 nM, IgE), and 170 ng/mL (5 nM, thrombin) could be detected. These results show that aptamer arrays can potentially be used with numerous proteins in parallel, furthering the notion that aptamer arrays may be useful in proteomics.

摘要

已开发出用于定量多种蛋白质分析物的基于适配体的微阵列。通过将两种RNA适配体(抗溶菌酶和抗蓖麻毒素)和两种DNA适配体(抗IgE和抗凝血酶)印刷到链霉亲和素(SA)或中性抗生物素蛋白(NA)包被的载玻片上,生成了一种多重适配体微阵列。然而,为了确保适配体与分析物对的同时功能,需要进行大量优化。研究了蛋白质标记、检测缓冲液、表面包被以及固定化学和方向的影响。发现单一缓冲液(含有5 mM MgCl2和0.1%吐温20的PBS缓冲液)对所有适配体都适用,尽管这不是它们筛选时最初使用的缓冲液,而中性抗生物素蛋白包被的载玻片比链霉亲和素包被的载玻片具有更低的检测限、更宽的检测范围和更均匀的背景。与Cy3标记的蛋白质孵育产生了对每种蛋白质敏感、靶标特异性和剂量依赖性的响应。可以检测到低至72 pg/mL(5 pM,溶菌酶)、15 ng/mL(0.5 nM,蓖麻毒素)、1.9 ng/mL(0.01 nM,IgE)和170 ng/mL(5 nM,凝血酶)的靶蛋白浓度。这些结果表明,适配体阵列有可能同时用于多种蛋白质,进一步支持了适配体阵列可能在蛋白质组学中有用的观点。

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