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Chemical Linkage to Injected Tissues Is a Distinctive Property of Oxidized Avidin

机译:与注射组织的化学联系是氧化抗生物素蛋白的独特特性

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摘要

We recently reported that the oxidized avidin, named AvidinOX®, resides for weeks within injected tissues as a consequence of the formation of Schiff's bases between its aldehyde groups and tissue protein amino groups. We also showed, in a mouse pre-clinical model, the usefulness of AvidinOX for the delivery of radiolabeled biotin to inoperable tumors. Taking into account that AvidinOX is the first oxidized glycoprotein known to chemically link to injected tissues, we tested in the mouse a panel of additional oxidized glycoproteins, with the aim of investigating the phenomenon. We produced oxidized ovalbumin and mannosylated streptavidin which share with avidin glycosylation pattern and tetrameric structure, respectively and found that neither of them linked significantly to cells in vitro nor to injected tissues in vivo, despite the presence of functional aldehyde groups. The study, extended to additional oxidized glycoproteins, showed that the in vivo chemical conjugation is a distinctive property of the oxidized avidin. Relevance of the high cationic charge of avidin into the stable linkage of AvidinOX to tissues is demonstrated as the oxidized acetylated avidin lost the property. Plasmon resonance on matrix proteins and cellular impedance analyses showed in vitro that avidin exhibits a peculiar interaction with proteins and cells that allows the formation of highly stable Schiff's bases, after oxidation.
机译:我们最近报道说,氧化的抗生物素蛋白AvidinOX®在醛基和组织蛋白氨基之间形成席夫氏碱,因此在注射的组织中驻留数周。在小鼠的临床前模型中,我们还显示了抗生物素蛋白AOX对将放射性标记的生物素递送至无法手术的肿瘤的作用。考虑到AvidinOX是已知的第一种化学连接到注射组织的氧化糖蛋白,我们在小鼠中测试了一组其他氧化糖蛋白,目的是研究这种现象。我们产生了氧化的卵清蛋白和甘露糖基化的链霉亲和素,它们分别具有抗生物素蛋白糖基化模式和四聚体结构,并且发现,尽管存在功能性醛基,但它们均未与体外细胞或体内注射组织显着连接。这项研究扩展到了其他氧化糖蛋白,表明体内化学结合是氧化亲和素的独特特性。由于氧化的乙酰化亲和素丧失了该特性,因此证明了亲和素的高阳离子电荷与亲和素OX与组织的稳定连接的相关性。基质蛋白的等离子共振和细胞阻抗分析在体外显示,抗生物素蛋白与蛋白质和细胞表现出特殊的相互作用,在氧化后可形成高度稳定的席夫氏碱。

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