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Biomimetic surfaces via dextran immobilization : grafting density and surface properties

机译:通过葡聚糖固定化仿生表面:接枝密度和表面性质

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摘要

Biomimetic surfaces were prepared by chemisorption of oxidized dextran (Mw = 110 kDa) onto SiO2 substrates that were previously modified with aminopropyl-tri-ethoxy silane (APTES). The kinetics of dextran oxidation by sodium metaperiodate (NaIO4) were quantified by 1H NMR and pH measurements. The extent of oxidation was then used to control the morphology of the biomimetic surface. Oxidation times of 0.5, 1, 2, 4, and 24 hours resulted in \u3c20, ~30, ~40, ~50 and 100% oxidation, respectively. The surfaces were characterized by contact angle analysis and atomic force microscopy (AFM). Surfaces prepared with low oxidation times revealed a more densely packed \u22brushy\u22 layer when imaged by AFM than those prepared at low oxidation times. Finally, the contact angle data revealed, quite unexpectedly, that the surface with the greatest entropic freedom (0.5 h) wetted the fastest and to the greatest extent (THETAAPTES \u3e THETA1h \u3e THETA2,4h \u3e THETA0.5h).
机译:仿生表面是通过将氧化的葡聚糖(Mw = 110 kDa)化学吸附到预先用氨丙基三乙氧基硅烷(APTES)改性的SiO2基质上而制备的。通过1 H NMR和pH测量定量了偏高碘酸钠(NaIO4)氧化葡聚糖的动力学。然后使用氧化程度来控制仿生表面的形态。 0.5、1、2、4和24小时的氧化时间分别导致30%,〜40%,〜50%和100%的氧化。通过接触角分析和原子力显微镜(AFM)对表面进行表征。用AFM成像时,用低氧化时间制备的表面比在低氧化时间制备的表面显示出更密集的堆积层。最后,接触角数据出乎意料地表明,最大熵自由度(0.5 h)的表面浸湿最快,程度最大(THETAAPTES \ u3e THETA2h,4h \ uTHETA0.5h)。

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