Laboratory of Molecular Imaging and Nanomedicine, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, MD, 20892, USA.
Adv Healthc Mater. 2018 Jul;7(14):e1800252. doi: 10.1002/adhm.201800252. Epub 2018 Jun 3.
Adding value to the intrinsic properties of quantum dots (QDs), a strategy to conjugate dyes on the surface of QDs offers new opportunities, since the coupling between QD and dyes can be designed to allow Förster resonance energy transfer (FRET) and/or electron transfer (eT). These processes are accompanied by the change of QD and/or dye fluorescence and subsequent photochemical reactions (e.g., generation of O ). Based on the change of fluorescence signals by the interaction with biomolecules, QD-dye conjugates are exploited as biosensors for the detection of pH, O , nicotinamide adenine dinucleotide (phosphate), ions, proteases, glutathione, and microRNA. QD-dye conjugates also can be modulated by the irradiation of external light; this concept is demonstrated for fluorescence super-resolution imaging as photoactivatable or photoswitchable probes. When QDs are conjugated with photosensitizing dyes, the QD-dye conjugates can generate O in a repetitive manner for better cancer treatment, and can also be available for approaches using two-photon excitation or bioluminescence resonance energy transfer mechanisms for deep tissue imaging. Here, the recent advances in QD-dye conjugates, where FRET or eT produces fluorescence readouts or photochemical reactions, are reviewed. Various QD-dye conjugate systems and their biosensing/imaging and photodynamic therapeutics are summarized.
为了增加量子点 (QD) 的固有性质的价值,一种在 QD 表面连接染料的策略提供了新的机会,因为 QD 和染料之间的耦合可以设计为允许Förster 共振能量转移 (FRET) 和/或电子转移 (eT)。这些过程伴随着 QD 和/或染料荧光的变化,以及随后的光化学反应(例如,生成 O )。基于与生物分子相互作用时荧光信号的变化,QD-染料缀合物被用作检测 pH、O 、烟酰胺腺嘌呤二核苷酸 (磷酸盐)、离子、蛋白酶、谷胱甘肽和 microRNA 的生物传感器。QD-染料缀合物也可以通过外部光的照射进行调节;这个概念通过荧光超分辨率成像中的光激活或光开关探针得到了证明。当 QD 与光敏染料连接时,QD-染料缀合物可以以重复的方式产生 O ,以更好地治疗癌症,并且也可用于使用双光子激发或生物发光共振能量转移机制进行深层组织成像的方法。在这里,综述了 FRET 或 eT 产生荧光读出或光化学反应的 QD-染料缀合物的最新进展。总结了各种 QD-染料缀合物系统及其在生物传感/成像和光动力治疗方面的应用。