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首页> 外文期刊>ACS applied materials & interfaces >Real-Time Study of the Adsorption and Grafting Process of Biomolecules by Means of Bloch Surface Wave Biosensors
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Real-Time Study of the Adsorption and Grafting Process of Biomolecules by Means of Bloch Surface Wave Biosensors

机译:借助于白细胞的吸附和移植过程的实时研究借助于光滑表面波生物传感器

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摘要

A combined label-free and fluorescence surface optical technique was used to quantify the mass deposited in binary biomolecular coatings. These coatings were constituted by fibronectin (FN), to stimulate endothelialization, and phosphorylcholine (PRC), for its hemocompatibility, which are two properties of relevance for cardiovascular applications. One-dimensional photonic crystals sustaining a Bloch surface wave were used to characterize different FN/PRC coatings deposited by a combination of adsorption and grafting processes. In particular, the label-free results permitted to quantitatively assess the mass deposited in FN adsorbed (185 ng/cm(2)) and grafted (160 ng/cm(2)). PRC binding to grafted FN coatings was also quantified, showing a coverage as low as 10 and 12 ng/cm(2) for adsorbed and grafted PRC, respectively. Moreover, desorption of FN deposited by adsorption was detected and quantified upon the addition of PRC. The data obtained by the surface optical technique were complemented by water contact angle and X-ray photoelectron spectroscopy (XPS) analyses. The results were in accordance with those obtained previously by qualitative and semiquantitative techniques (XPS, time-of-flight secondary ion mass spectrometry) on several substrates (PTFE and stainless steel), confirming that grafted FN coatings show higher stability than those obtained by FN adsorption.
机译:使用组合的无标记和荧光表面光学技术用于量化二元生物分子涂层中沉积的质量。这些涂层由纤连蛋白(Fn)构成,以刺激内皮化,磷酸胆碱(PRC),以其血液相容性,这是对心血管应用相关性的两个性质。维持Bloch表面波的一维光子晶体用于表征通过吸附和接枝过程的组合沉积的不同FN / PRC涂层。特别地,允许的无标记结果定量评估沉积在Fn吸附(185ng / cm(2))中的质量并接枝(160ng / cm(2))。对接枝的Fn涂层的PRC结合也定量,显示出低至10和12ng / cm(2)的覆盖物,分别用于吸附和接枝的PRC。此外,在添加PRC后检测并定量通过吸附沉积的FN的解吸。通过表面光学技术获得的数据被水接触角和X射线光电子能谱(XPS)分析互补。结果符合先前通过定性和半定量技术(XPS,飞行时间二次离子质谱)在几种基材(PTFE和不锈钢)上得到的那些,确认接枝的FN涂层显示比通过FN获得的FN涂层更高的稳定性吸附。

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