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Photosensitization of InP/ZnS quantum dots for anti-cancer and antimicrobial applications

机译:InP / ZnS量子点的光敏性,用于抗癌和抗菌应用

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Cadmium-free quantum dots (QDs), such as those made from InP, show similar optical properties to those containing toxic heavy metals and thus provide a promising alternative for imaging and therapeutics. The band gap of InP is similar to that of CdTe, so photosensitization of InP QDs with porphyrins or other dyes should lead to generation of reactive oxygen species, useful for targeted destruction of malignant cells or pathogenic bacteria. Here we show the results of measurements of singlet oxygen and superoxide generation from InP QDs with single and double ZnS shells compared with CdTe and CdSe/ZnS. Reactive oxygen species are measured using colorimetric or fluorescent reporter assays and spin-trap electron paramagnetic resonance (EPR) spectroscopy. We find that the size of the InP QDs and the thickness of the ZnS shell both strongly influence ROS generation. These results suggest future approaches to the design of therapeutic nanoparticles.
机译:诸如由InP制成的无镉量子点(QDs)与包含有毒重金属的量子点具有相似的光学特性,因此为成像和治疗提供了有希望的替代方法。 InP的带隙与CdTe的带隙相似,因此用卟啉或其他染料对InP QD进行光敏化应导致产生活性氧,可用于对恶性细胞或致病细菌的靶向破坏。在这里,我们显示了与CdTe和CdSe / ZnS相比,具有单个和两个ZnS壳的InP QD产生单线态氧和超氧化物的测量结果。使用比色法或荧光报告剂测定法和自旋陷阱电子顺磁共振(EPR)光谱法测量活性氧种类。我们发现InP QD的大小和ZnS壳的厚度都强烈影响ROS的产生。这些结果表明治疗纳米颗粒设计的未来方法。

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