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BIOPHYSICAL PROPERTIES OF NUCLEIC ACIDS AT SURFACES RELEVANT TO MICROARRAY PERFORMANCE

机译:与微阵列性能相关的核酸的生物物理特性

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摘要

Both clinical and analytical metrics produced by microarray-based assay technology have recognized problems in reproducibility, reliability and analytical sensitivity. These issues are often attributed to poor understanding and control of nucleic acid behaviors and properties at solid-liquid interfaces. Nucleic acid hybridization, central to DNA and RNA microarray formats, depends on the properties and behaviors of single strand (ss) nucleic acids (e.g., probe oligomeric DNA) bound to surfaces. ssDNA’s persistence length, radius of gyration, electrostatics, conformations on different surfaces and under various assay conditions, its chain flexibility and curvature, charging effects in ionic solutions, and fluorescent labeling all influence its physical chemistry and hybridization under assay conditions. Nucleic acid (e.g., both RNA and DNA) target interactions with immobilized ssDNA strands are highly impacted by these biophysical states. Furthermore, the kinetics, thermodynamics, and enthalpic and entropic contributions to DNA hybridization reflect global probe/target structures and interaction dynamics. Here we review several biophysical issues relevant to oligomeric nucleic acid molecular behaviors at surfaces and their influences on duplex formation that influence microarray assay performance. Correlation of biophysical aspects of single and double-stranded nucleic acids with their complexes in bulk solution is common. Such analysis at surfaces is not commonly reported, despite its importance to microarray assays. We seek to provide further insight into nucleic acid-surface challenges facing microarray diagnostic formats that have hindered their clinical adoption and compromise their research quality and value as genomics tools.
机译:通过基于微阵列的测定技术产生的临床和分析指标均已认识到可重复性,可靠性和分析灵敏度方面的问题。这些问题通常归因于对固体-液体界面处的核酸行为和特性的了解和控制不力。 DNA和RNA微阵列格式的核心核酸杂交取决于结合到表面的单链(ss)核酸(例如探针寡聚DNA)的特性和行为。 ssDNA的持久性长度,回转半径,静电,不同表面上和在各种测定条件下的构象,其链的柔性和曲率,离子溶液中的电荷效应以及荧光标记都影响其在测定条件下的物理化学和杂交。这些固定状态下的核酸(例如RNA和DNA)与固定的ssDNA链的相互作用会受到很大影响。此外,动力学,热力学以及焓和熵对DNA杂交的贡献反映了整体探针/靶标结构和相互作用动力学。在这里,我们审查与表面上的寡聚核酸分子行为有关的几个生物物理问题,以及它们对双链形成的影响,这些影响会影响微阵列检测性能。单链和双链核酸的生物物理方面与它们在整体溶液中的复合物的相关性很常见。尽管其在微阵列分析中的重要性,但并未在表面上进行此类分析。我们寻求提供更多关于微阵列诊断格式面临的核酸表面挑战的见解,这些挑战阻碍了它们的临床应用并损害了其作为基因组学工具的研究质量和价值。

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