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超疏水表面的最新进展及其与生物学和医学的相关性。

Recent advances in superhydrophobic surfaces and their relevance to biology and medicine.

作者信息

Ciasca G, Papi M, Businaro L, Campi G, Ortolani M, Palmieri V, Cedola A, De Ninno A, Gerardino A, Maulucci G, De Spirito M

机构信息

Istituto di Fisica, Università Cattolica del Sacro Cuore, Largo F Vito 1, 00168 Rome, Italy.

出版信息

Bioinspir Biomim. 2016 Feb 4;11(1):011001. doi: 10.1088/1748-3190/11/1/011001.

Abstract

By mimicking naturally occurring superhydrophobic surfaces, scientists can now realize artificial surfaces on which droplets of a few microliters of water are forced to assume an almost spherical shape and an extremely high contact angle. In recent decades, these surfaces have attracted much attention due to their technological applications for anti-wetting and self-cleaning materials. Very recently, researchers have shifted their interest to investigate whether superhydrophobic surfaces can be exploited to study biological systems. This research effort has stimulated the design and realization of new devices that allow us to actively organize, visualize and manipulate matter at both the microscale and nanoscale levels. Such precise control opens up wide applications in biomedicine, as it allows us to directly manipulate objects at the typical length scale of cells and macromolecules. This progress report focuses on recent biological and medical applications of superhydrophobicity. Particular regard is paid to those applications that involve the detection, manipulation and study of extremely small quantities of molecules, and to those that allow high throughput cell and biomaterial screening.

摘要

通过模仿天然存在的超疏水表面,科学家们现在能够实现人工表面,在这种表面上,几微升的水滴会被迫呈现出几乎球形的形状和极高的接触角。近几十年来,这些表面因其在防湿和自清洁材料方面的技术应用而备受关注。最近,研究人员将兴趣转移到研究超疏水表面是否可用于研究生物系统。这项研究工作推动了新设备的设计与实现,这些新设备使我们能够在微米和纳米尺度上积极地组织、可视化和操纵物质。这种精确控制在生物医学领域开辟了广泛的应用,因为它使我们能够在细胞和大分子的典型长度尺度上直接操纵物体。本进展报告重点关注超疏水性在生物和医学方面的最新应用。特别关注那些涉及检测、操纵和研究极少量分子的应用,以及那些允许高通量细胞和生物材料筛选的应用。

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