首页> 外文期刊>ACS applied materials & interfaces >Antimicrobial Amino-Functionalized Nitrogen-Doped Graphene Quantum Dots for Eliminating Multidrug-Resistant Species in Dual-Modality Photodynamic Therapy and Bioimaging under Two-Photon Excitation
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Antimicrobial Amino-Functionalized Nitrogen-Doped Graphene Quantum Dots for Eliminating Multidrug-Resistant Species in Dual-Modality Photodynamic Therapy and Bioimaging under Two-Photon Excitation

机译:抗微生物氨基官能化氮掺杂石墨烯量子点,用于消除双模光动力治疗中的多药物抗性物种,双光子激励下的消除

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摘要

Developing a nanomaterial, for use in highly efficient dual-modality two photon photodynamic therapy (PDT) involving reactive oxygen species (ROS) generation and for use as a two-photon imaging contrast probe, is currently desirable. Here, graphene quantum dots (GQDs) doped with nitrogen and functionalized with an amino group (amino-N-GQDs) serving as a photosensitizer in PDT had the superior ability to generate ROS as compared to unmodified GQDs. Multidrug-resistant (MDR) species were completely eliminated at an ultralow energy (239.36 nJ pixel(-1)) through only 12 s two-photon excitation (TPE) in the near-infrared region (800 nm). Furthermore, the amino-N-GQDs had an absorption wavelength of approximately 800 nm, quantum yield of 0.33, strong luminescence, an absolute cross section of approximately 54 356 Goeppert-Mayer units, a lifetime of 1.09 ns, a ratio of the radiative to nonradiative decay rates of approximately 0.49, and high two-photon stability under TPE. These favorable properties enabled the amino-N-GQDs to act as a two-photon contrast probe for tracking and localizing analytes through in-depth two-photon imaging in a three-dimensional biological environment and concurrently easily eliminating MDR species through PDT.
机译:开发纳米材料,用于高效的双模型两种光子光动力治疗(PDT)涉及反应性氧物质(ROS)产生并用作双光子成像对比探针,是期望的。这里,用氮气掺杂氮气和用氨基(氨基-N-GQDS)官能化的石墨烯量子点(GQDS)具有在PDT中的光敏剂中的优异能力,与未修饰的GQD相比产生ROS。通过在近红外区域(800nm)中仅通过12 s的双光子激发(TPE)在超级能量(239.36 nj像素(-1))处完全消除多药(MDR)物种。此外,氨基-N-GQD具有约800nm的吸收波长,量子产率为0.33,强烈的发光,绝对横截面约为54 356个流氓 - Mayer单位,寿命为1.09ns,辐射的比率为1.09 ns在TPE下的非衰减速率约为0.49,以及高的双光子稳定性。这些有利的性质使氨基-N-GQD能够充当双光子对比度探针,用于通过三维生物环境中的深入的双光子成像跟踪和定位分析物,并同时通过PDT易于消除MDR种类。

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