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杯[6]芳烃的1,3,5-三氨基喹啉共轭物通过光谱法对Zn(2+)和Cu(2+)的结合及比率双离子识别及其通过显微镜观察的超分子特征

Binding and ratiometric dual ion recognition of Zn(2+) and Cu(2+) by 1,3,5-tris-amidoquinoline conjugate of calix[6]arene by spectroscopy and its supramolecular features by microscopy.

作者信息

Mummidivarapu V V Sreenivasu, Bandaru Sateesh, Yarramala Deepthi S, Samanta Kushal, Mhatre Darshan S, Rao Chebrolu Pulla

机构信息

Bioinorganic Laboratory, Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai, Maharashtra 400 076, India.

出版信息

Anal Chem. 2015;87(9):4988-95. doi: 10.1021/acs.analchem.5b00905. Epub 2015 Apr 23.

Abstract

Lower rim amide linked 8-amino quinoline and 8-amino naphthalene moiety 1,3,5-triderivatives of calix[6]arene L1 and L2 have been synthesized and characterized. While the L1 acts as a receptor molecule, the L2 acts as a control molecule. The complexation between L1 and Cu(2+) or Zn(2+) was delineated by the absorption and electrospray ionization (ESI) MS spectra. The binding ability of these molecules toward biologically important metal ions was studied by fluorescence and absorption spectroscopy. The derivative L1 detects Zn(2+) by bringing ratiometric change in the fluorescence signals at 390 and 490 nm, but in the case of Cu(2+), it is only the fluorescence quenching of 390 nm band that is observed, while no new band is observed at 390 nm. The stoichiometry of both the complexes is 1:1 and was confirmed in both the cases by measuring the ESI mass spectra. The isotopic peak pattern observed in the ESI MS confirmed the presence of Zn(2+) or Cu(2+) present in the corresponding complex formed with L1. Among these two ions, the Cu(2+) exhibits higher sensitivity. The density-functional theory (DFT) studies revealed the conformational changes in the arms and also revealed the coordination features in the case of the metal complexes. The arm conformational changes upon Zn(2+) binding were supported by nuclear Overhauser effect spectrometry (NOESY) studies. The stronger binding of Cu(2+) over that of Zn(2+) observed from the absorption study was further supported by the complexational energies computed from the computational data. While the L1 exhibited spherical particles, upon complexation with Cu(2+), it exhibits chain like morphological features in scanning electron microscopy (SEM) but only small aggregates in the case of Zn(2+). Thus, even the microscopy data can differentiate the complex formed between L1 and Cu(2+) from that formed with Zn(2+).

摘要

已合成并表征了杯[6]芳烃L1和L2的下缘酰胺连接的8-氨基喹啉和8-氨基萘部分的1,3,5-三衍生物。L1作为受体分子,而L2作为对照分子。通过吸收光谱和电喷雾电离(ESI)质谱描绘了L1与Cu(2+)或Zn(2+)之间的络合作用。通过荧光光谱和吸收光谱研究了这些分子对生物重要金属离子的结合能力。衍生物L1通过使390和490nm处的荧光信号产生比例变化来检测Zn(2+),但对于Cu(2+),仅观察到390nm波段的荧光猝灭,而在390nm处未观察到新的波段。两种配合物的化学计量比均为1:1,并且通过测量ESI质谱在两种情况下均得到证实。在ESI质谱中观察到的同位素峰模式证实了与L1形成的相应配合物中存在Zn(2+)或Cu(2+)。在这两种离子中,Cu(2+)表现出更高的灵敏度。密度泛函理论(DFT)研究揭示了臂的构象变化,并且还揭示了金属配合物情况下的配位特征。核Overhauser效应光谱法(NOESY)研究支持了Zn(2+)结合后臂的构象变化。从吸收研究中观察到的Cu(2+)比Zn(2+)更强的结合能力进一步得到了从计算数据计算出的络合能的支持。虽然L1呈现球形颗粒,但与Cu(2+)络合后,在扫描电子显微镜(SEM)中它呈现链状形态特征,而与Zn(2+)络合时仅呈现小聚集体。因此,即使是显微镜数据也可以区分L1与Cu(2+)形成的配合物和与Zn(2+)形成的配合物。

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