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Optimized Light-Directed Synthesis of Aptamer Microarrays

机译:适体微阵列的优化光导合成

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摘要

Aptamer microarrays are a promising high-throughput method for ultrasensitive detection of multiple analytes, but although much is known about the optimal synthesis of oligonucleotide microarrays used in hybridization-based genomics applications, the bioaffinity interactions between aptamers and their targets is qualitatively different and requires significant changes to synthesis parameters. Focusing on streptavidin-binding DNA aptamers, we employed light-directed in situ synthesis of microarrays to analyze the effects of sequence fidelity, linker length, surface probe density, and substrate functionalization on detection sensitivity. Direct comparison with oligonucleotide hybridization experiments indicates that aptamer microarrays are significantly more sensitive to sequence fidelity and substrate functionalization and have different optimal linker length and surface probe density requirements. Whereas microarray hybridization probes generate maximum signal with multiple deletions, aptamer sequences with the same deletion rate result in a 3-fold binding signal reduction compared with the same sequences synthesized for maximized sequence fidelity. The highest hybridization signal was obtained with dT 5mer linkers, and the highest aptamer signal was obtained with dT 11mers, with shorter aptamer linkers significantly reducing the binding signal. The probe hybridization signal was found to be more sensitive to molecular crowding, whereas the aptamer probe signal does not appear to be constrained within the density of functional surface groups commonly used to synthesize microarrays.
机译:适体微阵列是用于多种分析物超灵敏检测的有前途的高通量方法,但是尽管人们对于基于杂交的基因组学应用中使用的寡核苷酸微阵列的最佳合成方法知之甚少,但适体与其靶标之间的生物亲和力相互作用在质量上有所不同,并且需要大量研究更改合成参数。专注于链霉亲和素结合的DNA适体,我们采用光导原位合成的微阵列分析序列保真度,接头长度,表面探针密度和底物功能化对检测灵敏度的影响。与寡核苷酸杂交实验的直接比较表明,适体微阵列对序列保真度和底物功能化更为敏感,并且具有不同的最佳接头长度和表面探针密度要求。尽管微阵列杂交探针产生具有多个缺失的最大信号,但是具有相同缺失率的适体序列与为了最大化序列保真度而合成的相同序列相比,使结合信号减少了3倍。用dT 5mer接头可获得最高的杂交信号,而用dT 11mer接头可获得最高的适体信号,较短的适体接头可显着降低结合信号。发现探针杂交信号对分子拥挤更敏感,而适体探针信号似乎没有被限制在通常用于合成微阵列的功能性表面基团的密度内。

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