首页> 外文期刊>ACS applied materials & interfaces >Combinational Biomimicking of Lotus Leaf, Mussel, and Sandcastle Worm for Robust Superhydrophobic Surfaces with Biomedical Multifunctionality: Antithrombotic, Antibiofouling, and Tissue Closure Capabilities
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Combinational Biomimicking of Lotus Leaf, Mussel, and Sandcastle Worm for Robust Superhydrophobic Surfaces with Biomedical Multifunctionality: Antithrombotic, Antibiofouling, and Tissue Closure Capabilities

机译:莲花叶,贻贝和Sandcastle蠕虫的组合生物纤米,用于生物医学多功能性的鲁棒超疏水表面:抗血栓形成,抗福音和组织闭合能力

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摘要

Surface wetting occurring in daily life causes undesired contaminations, which are critical issues in various fields. To solve these problems, the nonwetting property of a superhydrophobic (SH) surface has proven its utility by preventing contaminant infiltration, serious infections, or malfunction. However, the application of SH surfaces in the biomedical field has been limited due to the weak durability and toxicity of the related components. To overcome these limitations, we developed a robust and biocompatible SH surface through combinational biomimicking of three natural organisms, lotus leaf, mussel, and sandcastle worm, for the first time. Using the water immiscible and polycationic characteristics of mussel adhesive protein (iMglue), an SH iMglue-SiO2(TiO2/SiO2)(2) coating was fabricated by solution-based electrical charge-controlled layer-by-layer growth of nanoparticles (NPs). The fabricated iMglue-SiO2(TiO2/SiO2)(2) SH surface showed excellent durable nonwetting properties and was applied to an intracatheter tube coating to develop antithrombotic catheters under blood flow. Furthermore, we developed a iMglue-employed SH patch for a tissue closure bandage by spraying hydrophobic SiO2 NPs on the iMglue-covered cotton pads. The prepared iMglue-employing SH patch showed perfect bifunctionality with excellent antibiofouling and tissue closure capabilities. Our work presents a novel, useful strategy for fabricating a biomedically multifunctional, robust SH surface through combinational mimicking of natural organisms.
机译:日常生活中发生的表面润湿导致不希望的污染,这是各种领域的关键问题。为了解决这些问题,通过预防污染物浸润,严重感染或故障,超疏水(SH)表面的非纯洁性质已经证明了其效用。然而,由于相关组分的耐久性和毒性较弱,因此在生物医学领域的Sh表面的应用受到限制。为了克服这些限制,我们首次通过组合三种天然生物,莲花,贻贝和沙堡蠕虫的组合生物剥削,开发了一种强大而生物相容性的SH表面。使用贻贝粘合剂蛋白(ImGlue)不混溶的水和聚阳离子特性,通过纳米颗粒(NPS)的基于溶液的电荷控制层生长来制造SH Imglue-SiO 2(TiO 2 / SiO 2)(2)涂层。制造的ImGlue-SiO 2(TiO 2 / SiO 2)(2)SH表面显示出优异的耐用性非纯化性能,并施加到植物管涂层上,以在血流下产生抗血栓形成导管。此外,我们通过在Imglue覆盖的棉垫上喷涂疏水性SiO2 NPS来开发了一种用于组织闭合绷带的Imglue封闭绷带。制备的内心型SH斑块显示出完美的双抗函数,具有优异的抗福诺和组织闭合能力。我们的作品通过自然生物的组合模拟,提出了一种用于制造生物学多功能的鲁棒SH表面的新颖,有用的策略。

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