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Quantum dot/antibody conjugates for in vivo cytometric imaging inmice

机译:用于体内细胞计数成像的量子点/抗体偶联物老鼠

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摘要

Multiplexed, phenotypic, intravital cytometric imaging requires novel fluorophore conjugates that have an appropriate size for long circulation and diffusion and show virtually no nonspecific binding to cells/serum while binding to cells of interest with high specificity. In addition, these conjugates must be stable and maintain a high quantum yield in the in vivo environments. Here, we show that this can be achieved using compact (∼15 nm in hydrodynamic diameter) and biocompatible quantum dot (QD) -Ab conjugates. We developed these conjugates by coupling whole mAbs to QDs coated with norbornene-displaying polyimidazole ligands using tetrazine–norbornene cycloaddition. Our QD immunoconstructs were used for in vivo single-cell labeling in bone marrow. The intravital imaging studies using a chronic calvarial bone window showed that our QD-Ab conjugates diffuse into the entire bone marrow and efficiently label single cells belonging to rare populations of hematopoietic stem and progenitor cells (Sca1+c-Kit+ cells). This in vivo cytometric technique may be useful in a wide range of structural and functional imaging to study the interactions between cells and between a cell and its environment in intact and diseased tissues.
机译:复用的,表型的,活体的细胞内成像需要新型的荧光团缀合物,其具有合适的大小以用于长循环和扩散,并且在以高特异性与目标细胞结合时,几乎不显示与细胞/血清的非特异性结合。此外,这些结合物必须在体内环境中稳定并保持高量子产率。在这里,我们表明可以使用紧凑型(流体动力学直径约为15 nm)和生物相容性量子点(QD)-Ab共轭物来实现。我们通过使用四嗪-降冰片烯环加成法将整个mAb与涂有降冰片烯展示型聚咪唑配体的QD偶联,从而开发了这些结合物。我们的QD免疫构建体用于骨髓中的体内单细胞标记。使用慢性颅盖骨窗进行的活体成像研究表明,我们的QD-Ab共轭物扩散到整个骨髓中,并有效标记属于造血干细胞和祖细胞的稀有群体的单细胞(Sca1 + c- Kit + 单元格)。这项体内细胞计数技术可用于广泛的结构和功能成像,以研究完整组织和患病组织中细胞之间以及细胞与其环境之间的相互作用。

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