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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >In Situ Single-Molecule AFM Investigation of Surface-Induced Fibrinogen Unfolding on Graphite
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In Situ Single-Molecule AFM Investigation of Surface-Induced Fibrinogen Unfolding on Graphite

机译:原位单分子AFM调查石墨上表面诱导的纤维蛋白原展开

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摘要

Fibrinogen adsorption plays a key role in important biological processes, such as blood coagulation and foreign body reaction, which determine the biocompatibility of a material. Fibrinogen conformation on a surface is one of the main factors triggering these processes. Understanding the conformational dynamics of fibrinogen molecules adsorbed on solid surfaces is, therefore, of great interest in biomedicine and may contribute to the development of new biomaterials. In this work, unfolding of fibrinogen molecules adsorbed on a model surface (highly oriented pyrolytic graphite modified with an oligoglycine-hydrocarbon graphite modifier) is directly visualized using time-lapse atomic force microscopy. A gradual transformation of native-like fibrinogen molecules into fibrillar structures is observed at a timescale of several minutes. This transformation is accompanied by a decrease in molecular height from 4-5 to 1-2 nm. Independent unfolding of different fibrinogen domains is demonstrated. The obtained results provide a new, direct insight into the unfolding of individual fibrinogen molecules on a surface and give new opportunities for the development of graphite-based biosensors and biomaterials.
机译:纤维蛋白原吸附在重要的生物过程中起着关键作用,例如血液凝固和异物反应,其决定了材料的生物相容性。表面上的纤维蛋白原构象是引发这些过程的主要因素之一。理解在固体表面上吸附的纤维蛋白原分子的构象动态是对生物医学的兴趣,可能有助于新生物材料的发展。在该作品中,使用时间延时原子力显微镜直接可视化吸附在模型表面上的纤维蛋白原分子(用寡糖 - 烃石墨改性剂改性的高度取向的热解石墨)。在几分钟的时间内测量尺寸观察到天然样纤维蛋白原分子逐渐转化为纤维蛋白原结构。该转化伴随着4-5至1-2nm的分子高的减少。证明了不同纤维蛋白原结构域的独立展开。所获得的结果提供了一种新的直接洞察,进入表面上单个纤维蛋白原分子的展开,并为基于石墨的生物传感器和生物材料发出新的机会。

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