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Genetically engineered brain drug delivery vectors: cloning, expression and in vivo application of an anti-transferrin receptor single chain antibody-streptavidin fusion gene and protein.

机译:基因工程脑药物递送载体:抗运铁蛋白受体单链抗体-链霉亲和素融合基因和蛋白质的克隆,表达和体内应用。

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A single chain Fv antibody-streptavidin fusion protein was expressed and purified from bacterial inclusion bodies following cloning of the genes encoding the variable region of the heavy chain and light chain of the murine OX26 monoclonal antibody to the rat transferrin receptor. The latter undergoes receptor mediated transcytosis through the brain capillary endothelial wall in vivo, which makes up the blood-brain barrier (BBB); therefore, the OX26 monoclonal antibody and its single chain Fv analog may act as brain drug delivery vectors in vivo. Attachment of biotinylated drugs to the antibody vector is facilitated by production of the streptavidin fusion protein. The bi-functionality of the OX26 single chain Fv antibody-streptavidin fusion protein was retained, as the product both bound biotin and the rat transferrin receptor in vitro and in vivo, based on pharmacokinetic and brain uptake analyses in anesthetized rats. The attachment of biotin-polyethyleneglycol-fluorescein to the OX26 single chain Fv antibody-streptavidin fusion protein resulted in illumination of isolated rat brain capillaries in confocal fluorescent microscopy. In conclusion, these studies demonstrate that genetically engineered single chain Fv antibody-streptavidin fusion proteins may be used for non-invasive neurotherapeutic delivery to the brain using endogenous BBB transport systems such as the transferrin receptor.
机译:在克隆编码鼠OX26单克隆抗体对大鼠转铁蛋白受体的重链和轻链可变区的基因后,从细菌包涵体中表达并纯化了单链Fv抗体-链霉亲和素融合蛋白。后者在体内通过脑毛细血管内皮壁进行受体介导的转胞吞作用,从而构成了血脑屏障(BBB)。因此,OX26单克隆抗体及其单链Fv类似物可作为体内脑药物输送载体。通过产生抗生蛋白链菌素融合蛋白来促进生物素化药物与抗体载体的连接。基于麻醉大鼠的药代动力学和脑摄取分析,OX26单链Fv抗体-链霉亲和素融合蛋白的双功能得以保留,因为该产品在体外和体内均与生物素和大鼠转铁蛋白受体结合。生物素-聚乙二醇-荧光素与OX26单链Fv抗体-抗生蛋白链菌素融合蛋白的连接导致共聚焦荧光显微镜下分离的大鼠脑毛细血管的照明。总之,这些研究表明,基因改造的单链Fv抗体-链霉亲和素融合蛋白可用于使用内源性BBB转运系统(如运铁蛋白受体)将非侵入性神经治疗药物输送至大脑。

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