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Oligonucleotide aptamers: emerging affinity probes for bioanalytical mass spectrometry and biomarker discovery

机译:寡核苷酸适体:用于生物分析质谱和生物标志物发现的新兴亲和探针

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摘要

Selective isolation of biologically important molecules and their functional characterization is one of the primary goals of bioanalytical chemistry. Several different affinity tools such as antibodies, affimers, nanobodies, and DARPins have been explored to achieve these goals. In recent years, oligonucleotide based affinity tools called aptamers have become progressively attractive and the research in this area has seen an exponential increase. Aptamer probes have been explored in many different areas of bioanalytical chemistry such as electrochemical and optical biosensor development, targeted drug delivery, logic gates, DNA nanotechnology, and point of care diagnostics. However aptamers are still largely overlooked in mass spectrometry (MS) and biomarker discovery. After the completion of the human genome project, the focus has shifted towards functional genomics and to understand the living systems by deciphering the functions of proteins and metabolites. Therefore identification and functional characterization of these molecules are of outmost importance. Although identification of isolated biomolecules and analysis of simple biological mixtures using MS have become relatively simple, the power of MS gradually decreases as the complexity of biological mixtures increases. Therefore the development of selective and targeted approaches is at the forefront of mass spectrometry. Aptamers have great potential in affinity mass spectrometry to improve selectivity, specificity and throughput. Herein, bioanalytical mass spectrometry and biomarker discovery applications of aptamers will be reviewed.
机译:生物学重要分子的选择性分离及其功能表征是生物分析化学的主要目标之一。为了实现这些目标,已经探索了几种不同的亲和力工具,例如抗体,亲和物,纳米抗体和DARPins。近年来,被称为适体的基于寡核苷酸的亲和力工具变得越来越有吸引力,并且在该领域的研究呈指数增长。适体探针已在生物分析化学的许多不同领域中进行了探索,例如电化学和光学生物传感器的开发,靶向药物的输送,逻辑门,DNA纳米技术和即时诊断。然而,适体在质谱(MS)和生物标记物发现中仍被很大程度上忽略。人类基因组计划完成后,重点已转向功能基因组学,并通过解密蛋白质和代谢物的功能来了解生命系统。因此,这些分子的鉴定和功能表征至关重要。尽管使用MS鉴定分离的生物分子和分析简单的生物混合物已变得相对简单,但随着生物混合物的复杂性增加,MS的功效逐渐降低。因此,选择性和靶向方法的发展处于质谱技术的最前沿。适体在亲和质谱中具有巨大的潜力,可以提高选择性,特异性和通量。在此,将对适体的生物分析质谱和生物标志物发现应用进行综述。

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