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A di-functional and label-free carbon-based chem-nanosensor for real-time monitoring of pH fluctuation and quantitative determining of Curcumin

机译:用于实时监测pH波动和定量测定姜黄素的无官能和无标记的碳基化学传感器

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摘要

A nitrogen and sulfur dual-doped carbon nanodots (N,S-CNDs) sample was fabricated by an one-step hydrothermal treatment of acid fuchsin. The obtained N,S-CNDs possess yellow fluorescent, excellent water solubility, high fluorescence stability and religious biocompatibility, which can be used as a difunctional and label-free chem-nanosensor for the determination of pH and curcumin (Cur). When the pH is decreased from 8.0 to 4.4, the N,S-CNDs reveals an extraordinary emission escalation at emission wavelength (lambda(em)) of 543 nm, and the pK(a) value of the N,S-CNDs was calculated as 6.06. The N,S-CNDs displays a favourable linear relationship in the physiological pH range of 5.0-7.4, which is meaningful for the research of near-neutral cytosolic pH. Furthermore, the laser scanning confocal microscopic images of intracellular distribution and the determination of pH in HeLa cells were successfully carried out, implying that the N,S-CNDs possess excellent cell membrane permeability and are capable of being further applied to real-time pH fluctuations monitoring in live cells with negligible autofluorescence. More importantly, the fluorescence of N,S-CNDs may be dramatically quenched by Cur via a combination of electrostatic and hydrogen-bond interaction and fluorescence inner filter effect (FIFE). The limit of detection is as low as 81 nmol/L Cur, and the linearity range is 0.5-20 mu mol/L Cur. Ultimately, a satisfactory result was obtained when applying the as-constructed fluorescent chem-nanosensing system for the analyses of Cur in practical samples. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过酸紫红色的一步水热处理制备氮和硫和硫双掺杂碳纳多(N,S-CNDS)样品。得到的N,S-CND具有黄色荧光,优异的水溶性,高荧光稳定性和宗教生物相容性,其可用作不同的无标记的化学纳米体传感器,用于测定pH和姜黄素(CUR)。当pH从8.0降低到4.4时,N,S-CNDS在543nm的发射波长(Lambda(EM))下显示出非凡的排放升级,并且计算N,S-CND的PK(A)值为6.06。 N,S-CND在5.0-7.4的生理pH范围内显示出有利的线性关系,这对于近中立细胞溶质pH的研究是有意义的。此外,成功地进行了细胞内分布的激光扫描共聚焦微观图像和HeLa细胞中pH的测定,暗示N,S-CND具有优异的细胞膜渗透性,并且能够进一步应用于实时pH波动在具有可忽略的自发荧光的活细胞中监测。更重要的是,可以通过静电和氢键相互作用和荧光内滤效应(FIFE)的组合,通过Cur显着淬灭N,S-CNDS的荧光。检测极限低至81nmol / L Cur,线性范围为0.5-20μmmol/ l。最终,在应用AS构造的荧光化学纳米溶解系统时获得了令人满意的结果,以便在实际样品中分析Cur。 (c)2019年Elsevier B.V.保留所有权利。

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