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Bioimaging of a fluorescence rhodamine-based probe for reversible detection of Hg (II) and its application in real water environment

机译:基于荧光氟胺的探针的生物模拟,用于可逆检测HG(II)及其在实际水环境中的应用

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摘要

Mercury is a typical serious pollutant certified by relevant authorities, it is harmful not only to biological health but also to the ecological environment and its superior detection approach remains challenging. About this research, a novel reversible fluorescent probe(RBST) based on 2-Thiopheneacetyl chloride and Rhodamine B was designed,synthesized and established to develop as a chemosensor. Its sensing behavior, especially for various common metal ions, was detected by UV-vis spectrum and fluorescence spectrum. RBST displayed a satisfactory sensitivity and selectivity fluorescent response towards Hg2+ in a solution of EtOH/H2O (2,1, v/v), giving a higher combining constant of 3.03 x 10(4) M-1 and a lower detection limit of 0.11 mu M respectively. Fluorescence quenched presented a reversible behavior with a certain amount of S2- was added under the condition of containing Hg2+. Besides, the practicality of the probe in sensing Hg2+ in real water samples was further proved. Results of this study suggested that the fluorescent reversible probe excels in biological applications and can be applied in MCF-7 cells, zebrafish and soybean rhizome tissues to detect Hg2+.
机译:水星是一个典型的严重污染物,有关当局认证,它不仅对生物健康有害,而且对生态环境有害,而且其优越的检测方法仍然具有挑战性。关于该研究,设计了一种基于2-硫代苯乙酰氯和罗丹明B的新型可逆荧光探针(RBST),合成并建立为化学传感器。通过UV-Vis光谱和荧光光谱检测其对各种常见金属离子的感测行为。 RBST在EtOH / H 2 O(2,1,V / V)的溶液中展示了令人满意的灵敏度和选择性荧光反应,其溶液中的溶液(2,1,v / v),具有3.03×10(4)m-1的较高组合常数,检测限为0.11亩m分别。荧光猝灭呈现在含Hg2 +的条件下加入一定量的S2的可逆行为。此外,进一步证明了在实际水样中感测HG2 +的探针的实用性。该研究的结果表明,荧光可逆探针在生物应用中擅长,可应用于MCF-7细胞,斑马鱼和大豆根茎组织以检测Hg2 +。

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