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Facile and large-scale synthesis of graphene quantum dots for selective targeting and imaging of cell nucleus and mitochondria

机译:轻松大规模地合成石墨烯量子点,用于细胞核和线粒体的选择性靶向和成像

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Graphene quantum dots (GQDs) have good biocompatibility, high luminescence, and low photobleaching properties, which make them promising alternatives to fluorescent dyes for cell imaging. However, most of the reported GQDs lack targeted selectivity that limits their applications in biomedicine. To overcome the drawback, novel GQDs modified with polyethyleneimine (PEI) or (3-carboxyl) phenyl bromide phosphine (TPP) were originally synthesized via a facile, low-cost, environmentally friendly, and large-scale preparation method. The GQDs-PEI was synthesized by a simple hydrothermal process, and then TPP was conjugated to the GQDs-PEI via the amide linkage. The physicochemical, optical, biocompatible, and targeted imaging properties were evaluated systematically. The results indicated that the average sizes of the as-produced GQDs-PEI and GQDs-TPP were 3.75 and 3.25 nm, respectively. More significantly, the two composites had excellent optical property, low cytotoxicity and selective targeting and imaging properties for cell nucleus or mitochondria, suggesting their promising applications as the cell nucleus imaging or mitochondria imaging in vivo and in vitro for diagnosis and therapy of some related diseases.
机译:石墨烯量子点(GQD)具有良好的生物相容性,高发光性和低光漂白特性,这使其成为细胞成像中荧光染料的理想替代品。但是,大多数报道的GQD缺乏针对性的选择性,这限制了它们在生物医学中的应用。为了克服该缺点,最初通过一种简便,低成本,环境友好的大规模制备方法合成了用聚乙烯亚胺(PEI)或(3-羧基)苯基溴化膦(TPP)改性的新型GQD。通过简单的水热法合成了GQDs-PEI,然后通过酰胺键将TPP偶联到GQDs-PEI上。系统地评估了物理化学,光学,生物相容性和靶向成像性能。结果表明,所产生的GQDs-PEI和GQDs-TPP的平均尺寸分​​别为3.75nm和3.25nm。更重要的是,这两种复合材料具有优异的光学性能,低细胞毒性以及对细胞核或线粒体的选择性靶向和成像性能,表明它们在体内和体外作为细胞核成像或线粒体成像在诊断和治疗某些相关疾病方面的应用前景广阔。

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