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Molecular release from patterned nanoporous gold thin films

机译:分子释放的纳米多孔金薄膜

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Nanostructured materials have shown significant potential for biomedical applications that require high loading capacity and controlled release of drugs. Nanoporous gold (np-Au), produced by an alloy corrosion process, is a promising novel material that benefits from compatibility with microfabrication, tunable pore morphology, electrical conductivity, well-established gold-thiol conjugate chemistry, and biocompatibility. While np-Au's non-biological applications are abundant, its performance in the biomedical field is nascent. In this work, we employ a combination of techniques including nanoporous thin film synthesis, quantitative electron microscopy, fluorospectrometry, and electrochemical surface characterization to study loading capacity and molecular release kinetics as a function of film properties and discuss underlying mechanisms. The sub-micron-thick sputter-coated nanoporous gold films provide small-molecule loading capacities up to 1.12 μg cm~(-2) and molecular release half-lives between 3.6 hours to 12.8 hours. A systematic set of studies reveals that effective surface area of the np-Au thin films on glass substrates plays the largest role in determining loading capacity. The release kinetics on the other hand depends on a complex interplay of micro- and nano-scale morphological features.
机译:纳米材料表现出显著潜在的生物医学应用程序需要高负荷容量和控制药物的释放。由一个合金腐蚀的过程,是一个受益的有前途的新材料兼容性与精密加工,可调的孔隙形态、导电性、完善gold-thiol共轭化学,和生物相容性。非生物应用程序丰富,其性能在生物医学领域是新兴的。在这项工作中,我们采用的组合技术包括纳米多孔薄膜合成、定量电子显微镜,fluorospectrometry,电化学表面研究承载能力和特征分子释放动力学作为电影的函数属性和讨论潜在机制。sub-micron-thick sputter-coated纳米多孔金电影提供小分子装载能力1.12μg厘米~(2)和分子释放半衰期3.6小时到12.8小时之间。系统的研究表明,有效的表面积np-Au薄膜的玻璃在确定基质发挥最大的作用装载能力。另一方面取决于之间复杂的相互作用微-纳米形态特征。

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