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Study of DNA adsorption on mica surfaces using a surface force apparatus

机译:使用表面力装置研究云母表面上的DNA吸附

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摘要

We report our studies on the adsorption properties of double-stranded DNA molecules on mica surfaces in a confined environment using a surface force apparatus. Specifically, we studied the influence of cation species and concentrations on DNA adsorption properties. Our results indicated that divalent cations (Mg2+ and Co2+) preferred to form uniform and moderately dense DNA layers on a mica substrate. By measuring the interactions between DNA-coated mica and bare mica in an aqueous solution, obvious adhesion was observed in a cobalt chloride solution, possibly due to the ion-correlation attraction between negatively charged DNA and the mica surface. Furthermore, the interaction differences that were observed with MgCl2 and CoCl2 solutions reveal that the specific adsorption behaviors of DNA molecules on a mica substrate were mediated by these two salts. Our results are helpful to elucidate the dynamics of DNA binding on a solid substrate.
机译:我们报告我们在有限的环境中使用表面力仪器在云母表面上的双链DNA分子的吸附特性的研究。具体来说,我们研究了阳离子种类和浓度对DNA吸附性能的影响。我们的结果表明,二价阳离子(Mg 2 + 和Co 2 + )优选在云母基底上形成均匀且中等密度的DNA层。通过测量水溶液中涂有DNA的云母和裸云母之间的相互作用,可以在氯化钴溶液中观察到明显的粘附,这可能是由于带负电荷的DNA与云母表面之间存在离子相关吸引力所致。此外,在MgCl2和CoCl2溶液中观察到的相互作用差异表明,这两种盐介导了DNA分子在云母基质上的特异性吸附行为。我们的结果有助于阐明固体基质上DNA结合的动力学。

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