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Roll-to-roll, shrink-induced superhydrophobic surfaces for antibacterial applications, enhanced point-of-care detection, and blood anticoagulation

机译:卷对卷,收缩诱导的超疏水表面,用于抗菌应用,增强的即时检测和血液抗凝

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摘要

Superhydrophobic (SH) surfaces are desirable because of their unique anti-wetting behavior. Fluid prefers to bead up (contact angle >150°) and roll off (contact angle hysteresis <10°) a SH surface because micro- and nanostructure features trap air pockets. Fluid only adheres to the peaks of the structures, causing minimal adhesion to the surface. Here, shrink-induced SH plastics are fabricated for a plethora of applications, including antibacterial applications, enhanced point-of-care (POC) detection, and reduced blood coagulation. Additionally, these purely structural SH surfaces are achieved in a roll-to-roll (R2R) platform for scalable manufacturing.;Because their self-cleaning and water resistant properties, structurally modified SH surfaces prohibit bacterial growth and obviate bacterial chemical resistance. Antibacterial properties are demonstrated in a variety of SH plastics by preventing gram-negative Escherichia coli (E. coli) bacterial growth >150x compared to flat when fluid is rinsed and >20x without rinsing. Therefore, a robust and stable means to prevent bacteria growth is possible.;Next, protein in urine is detected using a simple colorimetric output by evaporating droplets on a SH surface. Contrary to evaporation on a flat surface, evaporation on a SH surface allows fluid to dramatically concentrate because the weak adhesion constantly decreases the footprint area. On a SH surface, molecules in solution are confined to a footprint area 8.5x smaller than the original. By concentrating molecules, greater than 160x improvements in detection sensitivity are achieved compared to controls. Utility is demonstrated by detecting protein in urine in the pre-eclampsia range (150-300microgmL -1) for pregnant women.;Further, SH surfaces repel bodily fluids including blood, urine, and saliva. Importantly, the surfaces minimize blood adhesion, leading to reduced blood coagulation without the need for anticoagulants. SH surfaces have >4200x and >28x reduction of blood residue area and volume compared to the non-structured controls of the same material. In addition, blood clotting area is reduced >5x using whole blood directly from the patient.;In this study, biocompatible SH surfaces are achieved using commodity shrink-wrap film and are scaled up for R2R manufacturing. The purely structural modification negates complex and expensive post processing, and SH features are achieved in commercially-available and FDA-approved plastics.
机译:超疏水(SH)表面由于其独特的抗湿性能而非常理想。流体更喜欢在SH表面形成小珠(接触角> 150°)并滑落(接触角滞后<10°),因为微结构和纳米结构具有气穴。流体仅粘附到结构的峰上,导致对表面的粘附最小。在这里,收缩诱导的SH塑料可用于多种应用,包括抗菌应用,增强的即时护理(POC)检测和减少的血液凝固。此外,这些纯结构的SH表面可在卷对卷(R2R)平台中实现可扩展的制造。由于结构修饰的SH表面具有自清洁和耐水性能,因此它们可以阻止细菌生长并消除细菌的化学耐性。通过防止革兰氏阴性大肠杆菌(E. coli)细菌在冲洗液体时比平坦时增长> 150x,而在不冲洗时> 20x时,则可在多种SH塑料中显示出抗菌性能。因此,有可能采用一种强有力且稳定的方法来防止细菌生长。接下来,通过蒸发SH表面上的液滴,使用简单的比色输出检测尿液中的蛋白质。与平坦表面上的蒸发相反,SH表面上的蒸发使流体显着浓缩,因为弱的附着力会不断减小覆盖面积。在SH表面上,溶液中的分子被限制在占地面积比原始面积小8.5倍的位置。通过浓缩分子,与对照组相比,检测灵敏度提高了160倍以上。通过检测孕妇子痫前期范围(150-300microgmL -1)中尿液中的蛋白质来证明其实用性。此外,SH表面排斥包括血液,尿液和唾液在内的体液。重要的是,这些表面可最大程度地减少血液粘附,从而无需使用抗凝剂即可减少血液凝结。与相同材料的非结构化对照相比,SH表面的血渣面积和体积减少了> 4200x和> 28x。此外,直接使用患者的全血可使血液凝结面积减少> 5倍。;在这项研究中,使用商品收缩包装膜可实现生物相容的SH表面,并扩大规模以用于R2R生产。单纯的结构修饰消除了复杂而昂贵的后处理,并且在商业上可获得且经FDA批准的塑料具有SH功能。

著录项

  • 作者

    Nokes, Jolie McLane.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Biomedical engineering.;Materials science.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 85 p.
  • 总页数 85
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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