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Advanced Nanotools for Imaging of Solid Tumors and Circulating and Disseminated Cancer Cells

机译:用于成像实体肿瘤和循环和散发癌细胞的先进纳米机油

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摘要

Semiconductor quantum dots (QDs) are characterized by orders of magnitude higher multiphoton linear absorption cross-sections compared with conventional organic dyes. Combined with the QD photoluminescence quantum yield approaching 100% and their rock-solid photostability, this fact opens great prospects for the two-photon functional tumor imaging with QDs tagged with highly specific recognition molecules. Single-domain antibodies (sdAbs) or ?nanobodies" derived from lamas are the smallest high-affinity recognition molecules, which may be tagged with the QDs thus permitting not only solid tumors multiphoton imaging but also rare disseminated cancer cells and micrometastases in the depth of the tissue to be detected.
机译:与常规有机染料相比,半导体量子点(QDS)的特征在于较高的多光子线性吸收横截面。 结合QD光致发光量子产率接近100%及其岩石固体光稳定性,这一事实为双光子功能肿瘤成像与QDS标记为高度特异性识别分子的QD函数肿瘤成像开辟了很大的前景。 衍生自拉米的单结构域抗体(Sdabs)或纳米级是最小的高亲和力识别分子,其可以用QD标记,因此不仅允许实体肿瘤多光子成像,而且还罕见的甲型癌细胞和微量酶的深度 要检测的组织。

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    Laboratory of Nano-Bioengineering National Research Nuclear University MEPhl (Moscow Engineering Physics Institute) 115409 Moscow Russia;

    Translational Molecular Imaging Unit Max Planck Institute for Experimental Medicine 37075 Gottingen Germany;

    Translational Molecular Imaging Unit Max Planck Institute for Experimental Medicine 37075 Gottingen Germany;

    Aix Marseille University CNRS INSERM Institut Paoli-Calmettes Centre de Recherche Contre le Cancer de Marseille (CRCM) 13009 Marseille France;

    Aix Marseille University CNRS INSERM Institut Paoli-Calmettes Centre de Recherche Contre le Cancer de Marseille (CRCM) 13009 Marseille France;

    Laboratory of Nano-Bioengineering National Research Nuclear University MEPhl (Moscow Engineering Physics Institute) 115409 Moscow Russia;

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  • 正文语种 eng
  • 中图分类 光学;
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