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Labeling of fibronectin by fluorescent and paramagnetic nanoprobes for exploring the extracellular matrix: bioconjugate synthesis optimization and biochemical characterization

机译:用荧光和顺磁性纳米探针标记纤连蛋白以探索细胞外基质:生物缀合物的合成优化和生化表征

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In this study, fibronectin–nanoparticles bioconjugates are developed and characterized. Multilabeled nanoparticles are composed of a core of the rare-earth oxide Gd2O3:Tb3+, capped with a set of Rhodamine B isothiocyanate encapsulated in a silica matrix and functionalized by a carboxylated polyethylene glycol shell. These nanoparticles are stabilized in aqueous solution and are found to contain about 400 carboxyl groups on their surface. Nanoparticle bioconjugation with highly purified human plasma fibronectin (Fn) is mediated by 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide and N-hydroxysuccinimide, resulting in an amide linkage between the carboxylic acid-terminated surface of the nanoparticle and the primary amine of Fn. The bioconjugation temperature and pH are optimized. The Local structure and global conformation of fibronectin–nanoparticle bioconjugates (FnNP*) are studied by fluorescence spectroscopy and enzymatic sites accessibility. Protein biochemical functionalities are globally conserved, and the protein is actually labeled. Elaboration of such complexes provides a promising bimodal contrasting agent for in vivo imaging.
机译:在这项研究中,开发并表征了纤连蛋白-纳米颗粒生物结合物。多标记纳米颗粒由稀土氧化物Gd 2 O 3 :Tb 3 + 的核心组成,并用一组罗丹明B覆盖异硫氰酸酯包裹在二氧化硅基质中,并通过羧化聚乙二醇壳官能化。这些纳米颗粒在水溶液中稳定并且发现在其表面上包含约400个羧基。 1-乙基-3-(3-二甲基氨基丙基)碳二亚胺和N-羟基琥珀酰亚胺介导高纯度人血浆纤连蛋白(Fn)的纳米颗粒生物共轭作用,从而在纳米颗粒的羧酸封端表面和伯胺之间形成酰胺键Fn。优化了生物共轭温度和pH。纤连蛋白-纳米颗粒生物共轭物(FnNP *)的局部结构和整体构象通过荧光光谱和酶学位点可及性研究。蛋白质的生化功能是全球保守的,蛋白质实际上已被标记。此类复合物的精制为体内成像提供了有希望的双峰造影剂。

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