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A reversible calix[4]arene armed phenolphthalein based fluorescent probe for the detection of Zn2+ and an application in living cells

机译:一种可逆胶胶[4]芳烯武装酚酞素的荧光探针,用于检测Zn2 +和活细胞中的应用

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摘要

A reversible and easy assembled fluorescent sensor based on calix[4]arene and phenolphthalein (C4P) was developed for selective zinc ion (Zn2+) sensing in aqueous samples. The probe C4P demonstrated high selective and sensitive detection towards Zn2+ over other competitive metal ions. Interaction of Zn2+ with a solution of C4P resulted in a considerable increment in emission intensity at 440 nm (lambda(ex) = 365 nm) due to the suppression of photoinduced electron transfer (PET) process and the restriction of C=N isomerization. The binding constant (K-a) of C4P with Zn2+ was calculated to be 4.50 x 10(11) M-2 and also the limit of detection of C4P for Zn2+ was as low as 0.108 mu M (at 10(-7) M level). Moreover, the fluorescence imaging in the human colon cancer cells suggested that C4P had great potential to be used to examine Zn2+ in vivo.
机译:基于CALIX [4]芳烃和酚酞(C4P)的可逆且易于组装的荧光传感器用于在水性样品中的选择性锌离子(ZN2 +)。 探针C4p对其他竞争性金属离子的Zn2 +展示了高选择性和敏感的检测。 Zn2 +与C4P溶液的相互作用导致440nm的发射强度的相当大的增量,其由于抑制光致电子转移(PET)过程和C = N异构化的限制而导致的440nm(Lambda(ex)= 365nm)。 用Zn2 +的C4p的结合常数(Ka)计算为4.50×10(11)m-2,也是Zn2 +的C4p的检测极限低至0.108μm(10(-7)米) 。 此外,人结肠癌细胞中的荧光成像表明C4P具有巨大的潜力可用于检查体内Zn2 +。

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