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基于特异性生物分子识别的双光子比率荧光传感器用于活细胞中铜离子的选择性和灵敏检测。

Two-photon ratiometric fluorescent sensor based on specific biomolecular recognition for selective and sensitive detection of copper ions in live cells.

机构信息

Department of Chemistry, Tongji University , Siping Road 1239, Shanghai 200092, P. R. China.

出版信息

Anal Chem. 2013 Dec 17;85(24):11936-43. doi: 10.1021/ac403527c. Epub 2013 Nov 27.

DOI:10.1021/ac403527c
PMID:24256150
Abstract

In this work, we develop a ratiometric two-photon fluorescent probe, ATD@QD-E2Zn2SOD (ATD = amino triphenylamine dendron, QD = CdSe/ZnSe quantum dot, E2Zn2SOD = Cu-free derivative of bovine liver copper-zinc superoxide dismutase), for imaging and sensing the changes of intracellular Cu(2+) level with clear red-to-yellow color change based on specific biomolecular recognition of E2Zn2SOD for Cu(2+) ion. The inorganic-organic nanohybrided fluorescent probe features two independent emission peaks located at 515 nm for ATD and 650 nm for QDs, respectively, under two-photon excitation at 800 nm. Upon addition of Cu(2+) ions, the red fluorescence of QDs drastically quenches, while the green emission from ATD stays constant and serves as a reference signal, thus resulting in the ratiometric detection of Cu(2+) with high accuracy by two-photon microscopy (TPM). The present probe shows high sensivity, broad linear range (10(-7)-10(-3) M), low detection limit down to ∼10 nM, and excellent selectivity over other metal ions, amino acids, and other biological species. Meanwhile, a QD-based inorganic-organic probe demonstrates long-term photostability, good cell-permeability, and low cytotoxicity. As a result, the present probe can visualize Cu(2+) changes in live cells by TPM. To the best of our knowledge, this is the first report for the development of a QD-based two-photon ratiometric fluorescence probe suitable for detection of Cu(2+) in live cells.

摘要

在这项工作中,我们开发了一种比率型双光子荧光探针,ATD@QD-E2Zn2SOD(ATD = 氨基三苯基胺树枝状大分子,QD = CdSe/ZnSe 量子点,E2Zn2SOD = 牛肝铜锌超氧化物歧化酶的无铜衍生物),用于成像和感测细胞内 Cu(2+) 水平的变化,其基于 E2Zn2SOD 对 Cu(2+) 离子的特异性生物分子识别,具有清晰的红-黄颜色变化。这种无机-有机纳米杂化荧光探针具有两个独立的发射峰,在 800nm 双光子激发下,分别位于 515nm(ATD)和 650nm(QD)。加入 Cu(2+) 离子后,QD 的红色荧光猝灭,而 ATD 的绿色发射保持不变,用作参考信号,从而通过双光子显微镜(TPM)实现了 Cu(2+) 的高准确性比率检测。该探针具有高灵敏度、宽线性范围(10(-7)-10(-3) M)、低检测限低至 ∼10 nM,对其他金属离子、氨基酸和其他生物物种具有优异的选择性。同时,基于 QD 的无机-有机探针表现出长期的光稳定性、良好的细胞通透性和低细胞毒性。因此,该探针可以通过 TPM 可视化活细胞中的 Cu(2+) 变化。据我们所知,这是第一个开发基于 QD 的双光子比率荧光探针用于检测活细胞中 Cu(2+) 的报告。

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