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Complexes of magnetic nanoparticles and scFv antibodies for targeting and visualizing cancer cells

机译:磁性纳米粒子和scFv抗体的复合物,用于靶向和可视化癌细胞

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In this work we describe a design of multifunctional complexes based on magnetic nanoparticles and anti-cancer mini-antibodies of scFv format that selectively recognize oncomarker HER2eu on the surface of human breast adenocarcinoma cells. ScFv, having small size and being fully genetically encoded, offer significant advantages over full size antibody for targeted delivery of nanoparticles both in vitro and in vivo, such as low cross-reactivity and immunogenicity and ease of biotechnological production in prokaryotic expression systems. These structures were obtained through the use of the barnase*barstar protein pair as a “molecular glue” between nanoparticles and recognizing antibodies. Moreover, for demonstrating the ability of obtaining a high diversity of scFv and magnetic nanoparticles-based constructions, we obtained complexes of magnetic nanoparticles and fusion protein of anti-HER2eu mini-antibody 4D5scFv and fluorescent protein mCherry that specifically stained HER2eu positive cells. Application of such targeted nanoparticles opens up new possibilities for designing new effective methods of cancer diagnostics.
机译:在这项工作中,我们描述了一种基于磁性纳米粒子和scFv格式的抗癌微型抗体的多功能复合物的设计,该抗体可以选择性识别人乳腺癌细胞表面上的同位HER2 / neu。具有小尺寸并被完全基因编码的ScFv与全尺寸抗体相比在体外和体内靶向递送纳米粒子方面具有明显优势,例如交叉反应性和免疫原性低,并且易于在原核表达系统中进行生物技术生产。这些结构是通过使用barnase * barstar蛋白对作为纳米颗粒和识别抗体之间的“分子胶”而获得的。此外,为了证明获得高多样性的scFv和基于磁性纳米颗粒的构建体的能力,我们获得了磁性纳米颗粒与抗HER2 / neu微型抗体4D5scFv和荧光蛋白mCherry融合蛋白(特异性染色HER2 / neu阳性)的复合物的复合物细胞。此类靶向纳米粒子的应用为设计新的癌症诊断有效方法开辟了新的可能性。

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