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Immobilization of a functionalized poly(ethylene glycol) onto beta-cyclodextrin-coated surfaces by formation of inclusion complexes: Application to the coupling of proteins

机译:通过形成包合物将功能化的聚乙二醇固定在β-环糊精涂层的表面上:在蛋白质偶联中的应用

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The aim of this Study was the immobilization of COOH-modified poly(ethylene glycol) (PEG) layers onto beta-cyclodextrin-coated surfaces by formation of inclusion complexes, in view of biosensors applications. To this end, PEGs with one phenyladamantyl and one carboxylic end group (Ad-PEG-COOH) were prepared according to a three-step procedure. After modification of PEG with 4-toluenesulfonylchloride, the reaction of the tosyl intermediate with the alcoholate of 4-(1-adarnantyl)-phenol was carried Out in tetrahydrofuran to avoid the formation of by-products. Then, it was shown by high performance liquid chromatography that the association between beta-cyclodextrin cavities and Ad-PEG-COOH polymers was not hindered by the presence of the COOH group. Last, the Ad-PEG-COOH polymer was immobilized onto beta-cyclodextrin-coated gold surfaces by formation Of inclusion complexes. The immobilization was performed in water, at room temperature, with a rapid kinetics. After activation of COOH groups with N-hydroxysuccinimide, beta-lactoglobulin was coupled to the biocompatible PEG layer. Functionalization of the gold surface with beta-cyclodextrin cavities, immobilization of Ad-PEG-COOH onto the surface, and coupling of the protein to the reactive PEG layer were followed in real time by surface plasmon resonance imaging system. (c) 2006 Wiley Periodicals, Inc.
机译:鉴于生物传感器的应用,这项研究的目的是通过形成包合物将COOH改性的聚乙二醇(PEG)层固定在β-环糊精涂层的表面上。为此,根据三步法制备具有一个苯基金刚烷基和一个羧基端基的PEG(Ad-PEG-COOH)。用4-甲苯磺酰氯对PEG进行修饰后,甲苯磺酰基中间体与4-(1-金刚烷基)-苯酚的醇化物的反应在四氢呋喃中进行以避免副产物的形成。然后,通过高效液相色谱法表明,COOH基团的存在不会阻碍β-环糊精空腔与Ad-PEG-COOH聚合物之间的缔合。最后,通过形成包合物来将Ad-PEG-COOH聚合物固定在涂有β-环糊精的金表面上。固定在室温下在水中以快速动力学进行。在用N-羟基琥珀酰亚胺活化COOH基团后,将β-乳球蛋白偶联至生物相容性PEG层。用表面等离振子共振成像系统实时跟踪具有β-环糊精腔的金表面的功能化,将Ad-PEG-COOH固定在表面上以及蛋白质与反应性PEG层的偶联。 (c)2006年Wiley Periodicals,Inc.

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