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Two-photon imaging and diagnostics using ultrasmall diagnostic probes engineered from semiconductor nanocrystals and single-domain antibodies

机译:使用由半导体纳米晶体和单域抗体设计的超小型诊断探针进行双光子成像和诊断

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摘要

Semiconductor fluorescent quantum dots (QDs) have just demonstrated their numerous advantages over organic dyes in bioimaging and diagnostics. One of characteristics of QDs is a very large cross section of their two-photon absorption. A common approach to biodetection by means of QDs is to use monoclonal antibodies (mAbs) for targeting. Recently, we have engineered ultrasmall diagnostic nanoprobes (sdAb-QD) based on highly oriented conjugates of QDs with the single-domain antibodies (sdAbs) against cancer biomarkers. With a molecular weight of only 13 kDa (12-fold smaller than full-size mAbs) and extreme stability and capacity to refolding, sdAbs are the smallest functional Ab fragments capable of binding antigens with affinities comparable to those of conventional Abs. Ultrasmall diagnostic sdAb-QD nanoprobes were engineered through oriented conjugation of QDs with sdAbs. This study is the first to demonstrate the possibility of immunohistochemical imaging of colon carcinoma biomarkers with sdAb-QD conjugates by means of two-photon excitation. The optimal excitation conditions for imaging of the markers in clinical samples with sdAb-QD nanoprobes have been determined. The absence of sample autofluorescence significantly improves the sensitivity of biomarker detection with the use of the two-photon excitation diagnostic setup.
机译:半导体荧光量子点(QD)刚刚证明了其在生物成像和诊断方面优于有机染料的众多优势。 QD的特征之一是其两光子吸收的横截面非常大。通过QD进行生物检测的常用方法是使用单克隆抗体(mAb)进行靶向。最近,我们基于高度定向的QD与抗癌生物标记物的单域抗体(sdAb)结合物,设计了超小型诊断纳米探针(sdAb-QD)。 sdAb的分子量仅为13 kDa(比全尺寸mAb小12倍),并且具有极高的稳定性和重折叠能力,是最小的功能性Ab片段,能够以与传统Abs相近的亲和力结合抗原。超小型诊断性sdAb-QD纳米探针是通过将QD与sdAb定向结合而设计的。这项研究首次证明了通过双光子激发用sdAb-QD缀合物对结肠癌生物标志物进行免疫组织化学成像的可能性。已经确定了用sdAb-QD纳米探针对临床样品中的标志物进行成像的最佳激发条件。通过使用双光子激发诊断设置,样品自发荧光的缺失显着提高了生物标志物检测的灵敏度。

著录项

  • 来源
    《Nanosystems in engineering and medicine》|2012年|85480R.1-85480R.8|共8页
  • 会议地点 Incheon(KR)
  • 作者单位

    Laboratory of Research in Nanosciences (LRN-EA4682), University of Reims Champagne-Ardenne, 51100 Reims, France;

    European Technological Platform Semiconductor Nanocrystals, Institute of Molecular Medicine, Trinity College Dublin, James's Street, Dublin 8, Ireland,Laboratory of Nano-Bioengineering, Moscow Engineering Physics Institute, 31 Kashirskoe sh., 115409 Moscow, Russian Federation;

    INSERM, U1068, CRCM, Marseille, F-13009, France,Institut Paoli-Calmettes, Marseille, F-13009, France,Aix-Marseille Univ, Marseille, F-13284, France,CNRS, UMR7258, CRCM, Marseille, F-13009, France;

    INSERM, U1068, CRCM, Marseille, F-13009, France,Institut Paoli-Calmettes, Marseille, F-13009, France,Aix-Marseille Univ, Marseille, F-13284, France,CNRS, UMR7258, CRCM, Marseille, F-13009, France;

    Laboratory of Research in Nanosciences (LRN-EA4682), University of Reims Champagne-Ardenne, 51100 Reims, France;

    Laboratory of Research in Nanosciences (LRN-EA4682), University of Reims Champagne-Ardenne, 51100 Reims, France;

    European Technological Platform Semiconductor Nanocrystals, Institute of Molecular Medicine, Trinity College Dublin, James's Street, Dublin 8, Ireland,Laboratory of Nano-Bioengineering, Moscow Engineering Physics Institute, 31 Kashirskoe sh., 115409 Moscow, Russian Federation;

    Laboratory of Research in Nanosciences (LRN-EA4682), University of Reims Champagne-Ardenne, 51100 Reims, France;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    single-domain antibodies; nanobodies; quantum dots; immunohistochemistry; imaging; diagnostics; nanoprobe;

    机译:单域抗体;纳米抗体量子点;免疫组化;成像诊断;纳米探针;

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