Yakavets Ilya, Francois Aurelie, Guiot Maelle, Lequeux Nicolas, Fragola Alexandra, Pons Thomas, Bezdetnaya Lina, Marchal Frédéric
Research Department, Institut de Cancérologie de Lorraine, Université de Lorraine, CNRS UMR7039 CRAN, 6 avenue de Bourgogne, 54519 Vandœuvre-lès-Nancy, France.
Laboratoire de Physique et d'Étude des matériaux (LPEM, UMR 8213), ESPCI Paris, PSL University, CNRS, Sorbonne University, 10, rue Vauquelin, 75005 Paris, France.
Cancers (Basel). 2020 Dec 11;12(12):3727. doi: 10.3390/cancers12123727.
The efficient intraoperative identification of cancers requires the development of the bright, minimally-toxic, tumor-specific near-infrared (NIR) probes as contrast agents. Luminescent semiconductor quantum dots (QDs) offer several unique advantages for in vivo cellular imaging by providing bright and photostable fluorescent probes. Here, we present the synthesis of ZnCuInSe/ZnS core/shell QDs emitting in NIR (~750 nm) conjugated to NAVPNLRGDLQVLAQKVART (A20FMDV2) peptide for targeting integrin-rich head and neck squamous cell carcinoma (HNSCC). Integrin is usually not detectable in nonpathological tissues, but is highly upregulated in HNSCC. QD-A20 showed integrin-specific binding in two-dimension (2D) monolayer and three-dimension (3D) spheroid in vitro HNSCC models. QD-A20 exhibit limited penetration (ca. 50 µm) in stroma-rich 3D spheroids. Finally, we demonstrated the potential of these QDs by time-gated fluorescence imaging of stroma-rich 3D spheroids placed onto mm-thick tissue slices to mimic imaging conditions in tissues. Overall, QD-A20 could be considered as highly promising nanoprobes for NIR bioimaging and imaging-guided surgery.
术中高效识别癌症需要开发明亮、低毒、肿瘤特异性的近红外(NIR)探针作为造影剂。发光半导体量子点(QD)通过提供明亮且光稳定的荧光探针,在体内细胞成像方面具有若干独特优势。在此,我们展示了发射近红外光(~750 nm)的ZnCuInSe/ZnS核壳量子点与NAVPNLRGDLQVLAQKVART(A20FMDV2)肽共轭的合成,该肽用于靶向富含整合素的头颈部鳞状细胞癌(HNSCC)。整合素在非病理组织中通常不可检测,但在HNSCC中高度上调。QD - A20在体外HNSCC模型的二维(2D)单层和三维(3D)球体中表现出整合素特异性结合。QD - A20在富含基质的3D球体中的穿透深度有限(约50 µm)。最后,我们通过对放置在毫米厚组织切片上的富含基质的3D球体进行时间分辨荧光成像,展示了这些量子点的潜力,以模拟组织中的成像条件。总体而言,QD - A20可被视为用于近红外生物成像和成像引导手术的极有前景的纳米探针。