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首页> 外文期刊>ACS Omega >Two-Photon Fluorescent Molybdenum Disulfide Dots for Targeted Prostate Cancer Imaging in the Biological II Window
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Two-Photon Fluorescent Molybdenum Disulfide Dots for Targeted Prostate Cancer Imaging in the Biological II Window

机译:二光子荧光二硫化钼点用于生物学II窗口中的靶向前列腺癌成像

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Molybdenum disulfide (MoS_(2)) quantum dots (QDs) derived from this two-dimensional (2D) transition metal dichalcogenide are emerging zero-dimensional materials that possess very good optical properties. Bioimaging using light in the biological II window (950–1350 nm) is a next-generation approach that will allow clinicians to achieve deeper tissue imaging with better image contrast and reduced phototoxicity and photobleaching. This article reports the development of a water-soluble, zero-dimensional antibody-conjugated transition metal dichalcogenide MoS_(2) QD-based two-photon luminescence (TPL) probe for the targeted bioimaging of cancer cells in the biological II window. The data indicates that MoS_(2) QDs exhibit an extremely high two-photon absorption cross-section (σ = 58960 GM) and two-photon brightness (4.7 × 10~(3) GM) because of the quantum confinement and edge effects. Experimental data show that anti-PSMA antibody-attached MoS_(2) QDs can be used for selective two-photon imaging of live prostate cancer cells using 1064 nm light because of the high two-photon brightness, very good photostability, and very good biocompatibility of these MoS_(2) QDs. The data demonstrate that the bioconjugated MoS_(2) QDs can distinguish targeted and nontargeted cells. This study illuminates the high two-photon brightness mechanism of MoS_(2) QDs and provides a zero-dimensional transition metal dichalcogenide-based selective TPL agent for high-efficiency live cell imaging.
机译:从该二维(2D)过渡金属二卤化二硫衍生的二硫化钼(MoS_(2))量子点(QD)是新兴的零维材料,具有非常好的光学性能。在生物II窗口(950-1350 nm)中使用光进行生物成像是下一代的方法,它将使临床医生能够获得更深的组织成像,并具有更好的图像对比度,并减少光毒性和光漂白。本文报道了一种水溶性,零维抗体结合的过渡金属二卤化二硫化钼基于MoS_(2)QD的双光子发光(TPL)探针的开发,该探针可用于生物学II窗口中癌细胞的靶向生物成像。数据表明,由于量子限制和边缘效应,MoS_(2)QDs具有极高的双光子吸收截面(σ= 58960 GM)和双光子亮度(4.7×10〜(3)GM)。实验数据表明,由于具有高双光子亮度,非常好的光稳定性和非常好的生物相容性,抗PSMA抗体连接的MoS_(2)QD可以用于使用1064 nm光的活前列腺癌细胞的选择性双光子成像。这些MoS_(2)QD。数据表明,生物共轭的MoS_(2)QD可以区分目标细胞和非目标细胞。这项研究阐明了MoS_(2)量子点的高双光子亮度机制,并提供了一种基于零维过渡金属二硫化二硫的选择性TPL剂,用于高效活细胞成像。

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