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Fluorescence-labeled immunomicelles: Preparation, in vivo biodistribution, and ability to cross the blood-brain barrier

机译:荧光标记的免疫胶束:制备,体内生物分布和穿过血脑屏障的能力

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摘要

Multifunctional hybrid micelles are prepared from amphiphilic mal-PEG-b-PLA and mPEG-b-P(LA-co-DHC/RhB) block copolymers. A specific anti-transferrin receptor antibody, OX26, is linked onto the surface of the micelles. ELISA indicates that the conjugated antibody preserves its activity. OX26 conjugation can increase the uptake efficiency of micelles by target cell lines (C6). Pharmacokinetics and in vivo biodistribution experiments are carried out to investigate the ability of OX26-conjugated micelles (immunomicelles) to cross the blood-brain barrier. The data show that the brain uptake of OX26-conjugated micelles is much more than that of OX26-free ones. Therefore, OX26-conjugated micelles will be promising drug carriers to cross the blood-brain barrier.
机译:多功能杂化胶束由两亲性mal-PEG-b-PLA和mPEG-b-P(LA-co-DHC / RhB)嵌段共聚物制备。特异的抗运铁蛋白受体抗体OX26连接到微团的表面。 ELISA表明结合的抗体保留了其活性。 OX26缀合可以提高目标细胞系(C6)对胶束的吸收效率。进行了药代动力学和体内生物分布实验,以研究结合OX26的胶束(免疫胶束)穿过血脑屏障的能力。数据显示,与OX26结合的胶束相比,与OX26结合的胶束的大脑吸收量要大得多。因此,结合了OX26的胶束将有望成为跨越血脑屏障的药物载体。

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