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Geometric bionics: Lotus effect helps polystyrene nanotube films get good blood compatibility

机译:几何仿生学:荷叶效应可帮助聚苯乙烯纳米管薄膜获得良好的血液相容性

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摘要

Various biomaterials have been widely used for manufacturing biomedical applications including artificial organs, medical devices and disposable clinical apparatus, such as vascular prostheses, blood pumps, artificial kidney, artificial hearts, dialyzers and plasma separators, which could be used in contact with blood^1^. However, the research tasks of improving hemocompatibility of biomaterials have been carrying out with the development of biomedical requirements^2^. Since the interactions that lead to surface-induced thrombosis occurring at the blood-biomaterial interface become a reason of familiar current complications with grafts therapy, improvement of the blood compatibility of artificial polymer surfaces is, therefore a major issue in biomaterials science^3^. After decades of focused research, various approaches of modifying biomaterial surfaces through chemical or biochemical methods to improve their hemocompatibility were obtained^1^. In this article, we report that polystyrene nanotube films with morphology similar to the papilla on lotus leaf can be used as blood-contacted biomaterials by virtue of Lotus effect^4^. Clearly, this idea, resulting from geometric bionics that mimicking the structure design of lotus leaf, is very novel technique for preparation of hemocompatible biomaterials.
机译:各种生物材料已广泛用于制造生物医学应用,包括人造器官,医疗设备和一次性临床器械,例如人造血管,造血泵,人造肾脏,人造心脏,透析仪和血浆分离器等,可与血液接触^ 1 ^。然而,随着生物医学要求的发展^ 2 ^,已经进行了改善生物材料血液相容性的研究任务。由于导致血液-生物材料界面处发生表面诱导的血栓形成的相互作用成为目前移植疗法中常见的并发症的原因,因此,人工聚合物表面血液相容性的改善是生物材料科学中的主要问题。经过数十年的深入研究,获得了通过化学或生化方法修饰生物材料表面以改善其血液相容性的各种方法^ 1 ^。在本文中,我们报道了由于荷叶效应^ 4 ^,具有类似于荷叶上的乳头的形态的聚苯乙烯纳米管薄膜可以用作血液接触的生物材料。显然,这种想法源自模仿荷叶的结构设计的几何仿生学,是制备血液相容性生物材料的非常新颖的技术。

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