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Charging behavior of single-stranded DNA polyelectrolyte brushes

机译:单链DNA聚电解质刷的充电行为

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DNA monolayers are widely used in fundamental and applied genomics and are versatile experimental models for elucidating the behavior of charged polymers at interfaces. The physical behavior of these systems is to a large extent governed by their internal ionic microenvironment, which is investigated here for layers of end-tethered, single-stranded DNA oligonucleotides ( DNA brushes). Retention of counterions by the DNA brush manifests as lowered susceptibility of the interfacial capacitance to external salt conditions. A physical model based on concepts adapted from polymer science was used to further elucidate the connection between monolayer organization and its charging behavior. The data indicate a reorganization of the monolayer with changes in ionic strength and strand coverage that is consistent with that expected for a polyelectrolyte brush. A method for electrochemical quantification of strand coverage, based on shift of reduction potential for redox counterions associated with the DNA monolayer, is also described. These results provide guidance for development of label-free electrochemical diagnostics employing DNA monolayers and formulate a description of monolayer behavior within a polymer science framework.
机译:DNA单分子层广泛用于基础和应用基因组学,是用于阐明带电聚合物在界面上行为的通用实验模型。这些系统的物理行为在很大程度上受其内部离子微环境的控制,在此对端接的单链DNA寡核苷酸(DNA刷)层进行了研究。 DNA刷保留抗衡离子的结果表明,界面电容对外部盐条件的敏感性降低。一个基于聚合物科学概念的物理模型被用来进一步阐明单层组织与其充电行为之间的联系。数据表明,单层的重组与离子强度和链覆盖率的变化相一致,与聚电解质刷的预期相符。还描述了基于与DNA单层相关的氧化还原抗衡离子的还原电势的转移对链覆盖率进行电化学定量的方法。这些结果为开发使用DNA单层的无标记电化学诊断提供了指导,并在聚合物科学框架内制定了单层行为的描述。

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