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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: Formation and patterning of supported phospholipid bilayers on the surface of a medically relevant material
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Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: Formation and patterning of supported phospholipid bilayers on the surface of a medically relevant material

机译:二氧化钛与含磷脂酰丝氨酸的脂质体之间的相互作用:在医学上相关的材料表面上负载的磷脂双层的形成和构图

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摘要

Titanium is widely used in biomedical applications. Its mechanical properties and biocompatibility, conferred by a layer of oxide present on its surface, make titanium the material of choice for various implants (artificial hip and knee joints, dental prosthetics, vascular stents, heart valves). Furthermore, the high refractive index of titanium oxide is advantageous in biosensor applications based on optical detection methods. In both of the above fields of application, novel surface modification strategies leading to biointeractive interfaces (that trigger specific responses in biological systems) are continuously sought. In this report, we investigate the interactions between TiO2 and phosphatidyl serine-containing liposomes, present a novel approach for preparing supported phospholipid bilayers (SPBs) of various compositions on TiO2, and use the unique ability of liposomes to distinguish between different surfaces to create SPB corrals on SiO2/TiO2 structured substrates. These results represent an important first step toward the design of biointeractive interfaces on titanium oxide surfaces that are based on a cell membrane-like environment.
机译:钛广泛用于生物医学应用。其机械性能和生物相容性(由其表面上存在的一层氧化物赋予)使钛成为各种植入物(人工髋和膝关节,假牙,血管支架,心脏瓣膜)的首选材料。此外,二氧化钛的高折射率在基于光学检测方法的生物传感器应用中是有利的。在以上两个应用领域中,一直在寻找导致生物相互作用界面(在生物系统中触发特定反应)的新颖表面改性策略。在本报告中,我们研究了TiO2与含磷脂酰丝氨酸的脂质体之间的相互作用,提出了一种在TiO2上制备各种成分的支持的磷脂双层(SPB)的新方法,并利用脂质体的独特能力来区分不同表面以形成SPB在SiO2 / TiO2结构化基底上的栅栏。这些结果代表了在基于细胞膜状环境的二氧化钛表面上设计生物交互界面的重要的第一步。

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