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From surface to bulk modification: Plasma polymerization of amine-bearing coating by synergic strategy of biomolecule grafting and nitric oxide loading

机译:从表面到批量改性:通过生物分子接枝和一氧化氮负载的协同策略来氧化胺涂层的血浆聚合

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Integration of two or more biomolecules with synergetic and complementary effects on a material surface can help to obtain multi-functions for various biomedical applications. However, the amounts of biomolecules integrated and their physiological functions are compromised due to the limited surface anchoring sites. Herein, we propose a novel concept of film engineering strategy “from surface to bulk synergetic modification”. This new concept is realized by employing the surface amine groups of plasma polymerized allylamine (PPAm) film for grafting a molecule e.g., thrombin inhibitor, bivalirudin (BVLD), meanwhile its bulk amine groups is used as a universal depot for storing and releasing therapeutic nitric oxide (NO) gas as supplement to the functions of BVLD. It is demonstrated that such a “from surface to bulk synergetic modification” film engineering can impart the modified-substrates with anti-platelet and anti-coagulant dual functions, giving rise to a highly endothelium-mimetic thromboresistant property. We believe that our research provides a very promising strategy to deliver multifunctional surface versatilely that require NO release in combination with other properties, which will find broad biomedical applications in blood-contacting devices, and et al. Moreover, it also provides a brand-new film engineering strategy for tailoring surface multi-functionalities of a wide range of materials.
机译:两种或更多种生物分子与互补性和材料表面的互补效果的整合有助于获得各种生物医学应用的多功能。然而,由于有限的表面锚固位点,集成的生物分子和其生理功能的量受到损害。在此,我们提出了一种新颖的电影工程战略“从表面到散装协同改性”的概念。通过使用用于嫁接分子的血浆聚合的烯丙胺(PPAM)膜的表面胺基来实现这种新概念,例如,凝血酶抑制剂Bivalirudin(BVLD),同时其本体胺基被用作用于储存和释放治疗硝酸的通用仓库氧化物(NO)气体作为BVLD的功能补充。证明这种“从表面到散装协同改性”薄膜工程可以赋予具有抗血小板和抗凝血剂双函数的改性基质,从而产生高度内皮血栓溶解性。我们认为,我们的研究提供了一种非常有希望的策略来提供多功能表面,这些策略可与其他性质结合使用,这将在血液接触装置中找到广泛的生物医学应用,而等。此外,它还提供了一种全新的电影工程战略,用于裁缝各种材料的表面多功能。

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