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Biocompatible Slippery Fluid-Infused Films Composed of Chitosan and Alginate via Layer-by-Layer Self-Assembly and Their Antithrombogenicity

机译:壳聚糖和藻酸盐通过层间自组装组成的生物相容性滑润液灌输膜及其抗血栓形成性

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摘要

Antifouling super-repellent surfaces inspired by Nepenthes, the pitcher plant, were designed and named slippery liquid-infused porous surfaces (SLIPS). These surfaces repel various simple and complex liquids including water and blood by maintaining a low sliding angle. Previous studies have reported the development of fluorinated SLIPS that are not biocompatible. Here, we fabricated fluid-infused films composed of biodegradable materials and a biocompatible lubricant liquid. The film was constructed using a combination of electrostatic interactions between chitosan and alginate and hydrogen-bonding between alginate and polyvinylpyrrolidone (PVPON) via the layer-by-layer self-assembly method. After chitosan and alginate were cross-linked, the PVPON was removed by increasing the pH to generate porosity from the deconstruction of the hydrogen-bonding. The porous underlayer was hydrophobized and covered by biocompatible almond oil. Blood easily flowed over this biodegradable and biocompatible SLIPS without leaving stains on the surface, and the material is environmentally durable, has a high transmittance of about 90%, and is antithrombogenic. The results of this study suggest that this SLIPS may facilitate the creation of nonfouling medical devices through a low-cost, eco-friendly, and simple process.
机译:设计了以猪笼草猪笼草为灵感的防污超疏水表面,并将其命名为光滑的注液多孔表面(SLIPS)。这些表面通过保持较小的滑动角来排斥各种简单和复杂的液体,包括水和血液。先前的研究报道了不兼容生物的氟化SLIPS的发展。在这里,我们制作了由生物可降解材料和生物相容性润滑剂液体组成的注液薄膜。该膜是通过壳聚糖和藻酸盐之间的静电相互作用以及藻酸盐和聚乙烯吡咯烷酮(PVPON)之间的氢键结合,通过逐层自组装方法构建的。脱乙酰壳多糖和藻酸盐交联后,通过解构氢键,通过增加pH值除去PVPON,以产生孔隙。将多孔底层疏水化并用生物相容性杏仁油覆盖。血液容易流过这种可生物降解和生物相容的SLIPS,而不会在表面上留下污渍,并且该材料具有环境耐久性,具有约90%的高透光率,并且具有抗血栓形成作用。这项研究的结果表明,这种SLIPS可以通过低成本,生态友好和简单的过程来促进无污染医疗器械的生产。

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