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Mitochondria-targetable carbon quantum dots for differentiating cancerous cells from normal cells

机译:Mitochondria-targetable碳量子点区分癌细胞和正常细胞

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摘要

In this study, a series of fluorescent carbon quantum dots (or carbon dots, CDs) with inherent mitochondrial targeting/imaging and cancerous/normal cell differentiation capabilities were prepared by a one-pot solvothermal treatment of glycerol and a silane molecule. Glycerol acted as a solvent and carbon source, and the silane molecule acted as a passivation agent. The as-prepared CDs could specifically and stably (for at least 24 h) visualize mitochondria of various types of cells without the introduction of mitochondria-targeting ligands (such as triphenylphosphonium). In addition, the CDs exhibited extraordinary features including facile synthesis, good water solubility, favorable biocompatibility, and excellent photostability as compared to commercial mitochondrial probes. Moreover, the CDs could efficiently distinguish cancerous cells from normal cells with high fluorescence contrast due to differences in their mitochondrial membrane potentials and substance uptake efficiencies. More importantly, to the best of our knowledge, the present study provides the first example of using CDs to distinguish cancerous cells from normal cells. The remarkable features of mitochondria-targeted imaging and cancerous cell recognition make the CDs an excellent fluorescent probe for various biomedical applications.
机译:在这项研究中,一系列的荧光碳量子点(或碳点、cd)固有的线粒体靶向/成像和癌/正常细胞分化功能是由一个锅甘油和硅烷solvothermal治疗分子。源和硅烷分子充当了钝化剂。明确和稳定(至少24小时)想象各种类型的细胞的线粒体没有引入鼓励了线粒体靶向配体(如triphenylphosphonium)。表现出非凡的特性包括肤浅合成,水溶性好,有利生物相容性和优良的耐光性而商业线粒体探针。此外,cd可以有效的区分癌细胞与正常细胞高由于差异荧光对比线粒体膜电位和物质吸收效率。我们所知,目前的研究提供了第一个例子使用cd来区分癌细胞与正常细胞。mitochondria-targeted成像和功能癌细胞识别使CDs极好的各种荧光探针生物医学应用。

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