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Diagnostic nanoprobes based on the conjugates of quantum dots and single-domain antibodies for cancer biomarkers detection in immunohistochemistry and flow cytometry

机译:基于量子点的缀合物和单结构域抗体的诊断纳米体,用于免疫组织化学和流式细胞术中的癌症生物标志物检测

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Monoclonal antibodies (mAbs) are often too big for the nanoparticle targeting purpose and the conditions used for their conjugation provide nanoprobes with irregular orientation of mAbs on the surface of nanoparticle. Here, we are reviewing our recent publications reporting on ultra-small nanoprobes engineered through oriented conjugation of quantum dots (QDs) with 13-kDa single-domain antibodies (sdAbs) derived from llama and produced in E. coli. Developed nanoprobes with hydrodynamic diameter below 12 nm contain four homogeneously oriented copies of sdAbs on the surface of each QD. They demonstrated excellent specificity and sensitivity for the quantitative detection of rare biomarker-expressing cells using flow cytometry. The higher diffusibility of sdAbs enables immunohistochemical analysis of thick tissues not accessible to mAbs. The data shows that sdAbs-QD conjugates lead to biopsy tissue labelling displaying an equivalent or even better quality than that obtained with gold standard immunohistochemical diagnostics. Developed sdAbs-QD nanoprobes should find numerous applications in multiplexed high-throughput diagnostics and FRET-based detection platforms.
机译:单克隆抗体(MAB)对于纳米颗粒靶向目的而言通常太大,并且用于它们的缀合的条件在纳米粒子的表面上具有不规则的mAb取向的纳米素。在此,我们正在审查我们最近的出版物报告,通过用衍生自液体的13-KDA单结构域抗体(Sdabs)和在大肠杆菌中产生的量子点(QDS)的缀合,通过取向量子点(QDS)的缀合。开发的纳米素直径低于12nm,含有四个均匀取向的SDAB副本在每个QD的表面上。它们对使用流式细胞术进行定量检测罕见的生物标志物表达细胞的优异特异性和敏感性。 SDAB的较高扩散性使得免疫组化学分析厚组织无法获得的厚组织。数据显示SDABS-QD缀合物导致活组织检查组织标记,其显示比用金标准免疫组织化学诊断所获得的等效或甚至更好的质量。开发的SDABS-QD Nanoprobes应在多路复用的高吞吐量诊断和基于FRET的检测平台中找到许多应用。

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