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Graphene quantum dot based 'switch-on' nanosensors for intracellular cytokine monitoring

机译:基于石墨烯量子点纳米传感器“接通”胞内细胞因子监测

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摘要

The detection of cytokines in body fluids, cells, tissues and organisms continues to attract considerable attention due to the importance of these key cell signalling molecules in biology and medicine. We report a graphene quantum dot (GQD) based aptasensor able to specifically detect ultra-small amounts of cytokine molecules intracellularly. Graphene quantum dots modified with cytokine aptamers (Ap-GQDs) and epitope modified GQDs (Ep-GQDs) were prepared; both are normally fluorescent at sufficient dilution. However, the fluorescence of the conjugates of Ap-GQDs and Ep-GQDs is quenched due to aggregation between Ap-GQDs and Ep-GQDs. After incubation of the cytokine-secreting cells with the conjugates of Ap-GQDs and Ep-GQDs, the cytokines secreted in cells compete for binding with the epitope which is then displaced. The ensuing binding of cytokines with the aptamers results in the disaggregation of Ap-GQDs and Ep-GQDs, and the recovery of fluorescence. The conjugates of Ap-GQDs and Ep-GQDs were used as nanosensors for monitoring intracellular cytokine IFN-gamma secretion with very high sensitivity (2 pg mL(-1)). The disaggregation based sensing strategy in this nanosensor design is simple and universal; similar nanosensors can be used for the detection of a broad spectrum of cell-secreted molecules. Such nanosensors will serve as potential biomaterials for in vivo devices to monitor a variety of biological phenomena, in particular to understand cytokine secretion pathways in live cells.
机译:细胞因子的检测体液、细胞组织和生物继续吸引着相当大的关注的重要性这些关键细胞信号分子生物学和药品。(基于GQD) aptasensor能够明确细胞因子检测超微量的分子细胞。寡核苷酸适配子与细胞因子(Ap-GQDs)和表位修改GQDs (Ep-GQDs)准备;通常荧光足够的稀释。然而,的轭合物的荧光Ap-GQDs Ep-GQDs淬火是由于聚合Ap-GQDs和Ep-GQDs之间。孵化cytokine-secreting细胞的配合Ap-GQDs Ep-GQDs,细胞因子分泌细胞中争夺绑定与抗原决定基然后流离失所。随后的绑定与寡核苷酸适配子的细胞因子结果Ap-GQDs和崩溃的Ep-GQDs和荧光的恢复。配合Ap-GQDs和Ep-GQDs用作纳米传感器监测细胞内细胞因子IFN-gamma分泌高灵敏度(2pg毫升(1))。在这个纳米传感器设计简单、策略普遍的;广泛的的检测细胞分泌的分子。作为体内潜在的生物材料设备监控各种各样的生物现象,特别是了解细胞因子在活细胞分泌途径。

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