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Whole-body imaging of HER2eu-overexpressing tumors using scFv-antibody conjugated quantum dots

机译:使用scFv抗体偶联的量子点对HER2 / neu过表达的肿瘤进行全身成像

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Semiconductor quantum dots (QDs) are widely used in different fields of bioscience and biotechnology due to their unique optical properties. QDs can be used as fluorescent markers for optical detection and monitoring of deeply located tumors in vivo after specific labeling achieved by conjugating of QDs with targeting molecules.rnIn this work the possibilities of intravital tumor labeling with QDs and subsequent in vivo tumor imaging were estimated. The experiments were run on immunodeficient nuu mice bearing human breast carcinoma SKBR-3, overexpressing surface protein HER2eu. We used quantum dots Qdot 705 ITK. (Invitrogen, USA) linked to anti-HER2eu 4D5 scFv antibody. Antibody scFv fragments as a targeting agent for directed delivery of fluorophores possess significant advantages over full-size antibodies due to their small size, lower cross-reactivity and immunogenicity. QDs were bound to 4D5 scFv by barnase-barstar system (bn-bst) analogous to the streptavidin-biotidin system. Whole-body images were obtained using diffuse fluorescence tomography (DFT) setup with low-frequency modulation and transilluminative configuration of scanning, created at the Institute of Applied Physics of RAS (Russia). DFT-results were confirmed ex vivo by confocal microscopy.rnWe report the results of in vivo whole-body tumor imaging with QDs complexes as contrasting agents. Intravital images of QDs-labeled tumors were obtained using specific tumor cells targeting and fluorescence transilluminative imaging method, while "passive" QD-labeling failed to mark effectively the tumor.
机译:半导体量子点(QD)由于其独特的光学特性而被广泛应用于生物科学和生物技术的不同领域。通过将QD与靶向分子结合实现特异性标记后,QD可用作荧光标记物,用于光学检测和监测体内深处的肿瘤。在这项工作中,估计了使用QD进行活体肿瘤标记以及随后体内肿瘤成像的可能性。实验在携带人乳腺癌SKBR-3,表面蛋白HER2 / neu过表达的免疫缺陷nu / nu小鼠上进行。我们使用了量子点Qdot 705 ITK。 (美国Invitrogen)与抗HER2 / neu 4D5 scFv抗体连接。抗体scFv片段作为定向试剂用于荧光团的定向递送,由于其体积小,交叉反应性和免疫原性小,因此具有比全尺寸抗体明显的优势。通过类似于链霉亲和素-生物素蛋白系统的barnase-barstar系统(bn-bst)将QD与4D5 scFv结合。使用由RAS应用物理研究所(俄罗斯)创建的具有低频调制和扫描透射照明配置的漫射荧光层析成像(DFT)装置获得全身图像。共聚焦显微镜在体外证实了DFT结果。我们报道了以QDs复合物为对比剂的体内全身肿瘤成像结果。 QDs标记的肿瘤的玻璃体内图像使用特定的肿瘤细胞靶向和荧光透射成像方法获得,而“被动” QD标记无法有效标记肿瘤。

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