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Molecular Combing of lambda-DNA using Self-Propelled Water Droplets on Wettability Gradient Surfaces

机译:在可湿性梯度表面上使用自动水滴对λ-DNA进行分子梳理

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Surface wettability gradients were used to elongate and align double stranded lambda-DNA. Gradients were prepared by vapor phase deposition of octyltrichlorosilane (C8-silane) and fluorinated octyltrichlorosilane (F-silane) precursors. Gradient formation was confirmed by water contact angle and ellipsometric film thickness measurements. Placement of a droplet of aqueous DNA solution on the hydrophobic end of each gradient led to spontaneous motion of the droplet toward the hydrophilic end and deposition of the DNA. Fluorescence imaging of surface-adsorbed YOYO-1 labeled DNA molecules revealed that they are elongated and aligned perpendicular to the droplet-surface contact line at all positions along the gradient, consistent with a dominant role played by surface tension forces in elongating the DNA. The density of adsorbed DNA was found to be greatest on the C8-silane gradient at its hydrophobic end. DNA density decreased toward the hydrophilic end, while the length of the elongated DNA was less dependent on position. The elongation of DNA molecules by spontaneous droplet motion on chemical gradient surfaces has possible applications in DNA barcoding and studies of DNA-protein interactions.
机译:表面润湿性梯度用于延长和排列双链λ-DNA。通过气相沉积辛基三氯硅烷(C8-硅烷)和氟化辛基三氯硅烷(F-硅烷)前体制备梯度。通过水接触角和椭圆偏振膜厚度测量来确认梯度形成。将DNA水溶液的液滴放置在每个梯度的疏水性末端上会导致液滴向亲水性末端自发运动并导致DNA沉积。表面吸附的YOYO-1标记的DNA分子的荧光成像显示,它们在沿梯度的所有位置上都垂直于液滴表面接触线拉长并垂直排列,这与表面张力在拉长DNA中发挥的主导作用相一致。发现在疏水末端的C8-硅烷梯度上吸附的DNA密度最大。 DNA密度朝着亲水端下降,而细长DNA的长度较少依赖于位置。通过自发液滴在化学梯度表面上的自发运动而延伸的DNA分子可能在DNA条形码和DNA与蛋白质相互作用的研究中得到应用。

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