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首页> 外文期刊>Applied Organometallic Chemistry >Fluorescent UO2(II) and ZrO(II) complexes: Synthesis, structural characterization, fluorescence, DNA binding studies and biological applications in cell probing
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Fluorescent UO2(II) and ZrO(II) complexes: Synthesis, structural characterization, fluorescence, DNA binding studies and biological applications in cell probing

机译:荧光UO2(II)和Zro(II)配合物:细胞探测中的合成,结构表征,荧光,DNA结合研究和生物学应用

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A new series of UO2(II) and ZrO(II) azo-complexes based on 5-nitro-8-hydroxyquinoline; [UO2(H2L1)(NO3)EtOH] (1), [ZrO(H2L1)(NO3)H2O] (2), [UO2(HL2)(NO3)EtOH]3H(2)O (3), [ZrO(HL2)(NO3)EtOH] (4), [UO2(HL3)(NO3)(H2O)(3)]2H(2)O (5) and [ZrO(HL3)(NO3)EtOH] (6); have been synthesized. The structure of these complexes has been characterized using elemental analysis, thermal analysis, molar conductance, UV-vis, IR, electron impact mass, X-ray powder diffraction and NMR spectra. The results revealed the formation of non-electrolyte mononuclear complexes via the N atom of the azo group or of the quinoline ring and the oxygen atom of the deprotonated OH. Fluorescence properties of the synthesized complexes have been examined and the fluorescence quantum yield (phi(f)) has been determined. The complexes have been tested as cell staining and imaging under the fluorescent microscope. The data showed that complexes 1 and 2 efficiently stain the nuclei in addition to some focal cytoplasmic areas. Other than complexes 3 and 4 exclusively stained the nuclei. On the other hand, complexes 5 and 6 stained the cytoplasm exclusively. It has been demonstrated that complex 4 was the most effective in cell staining. The binding constant (Kb) with DNA was calculated using UV-vis absorption titration and fluorescence spectral methods. It was concluded that complex 4 can be used effectively as fluorescent probes in studying cell biology.
机译:一种新的UO2(II)和Zro(II)偶氮配合物,基于5-硝基-8-羟基喹啉; [UO 2(H2L1)(NO 3)EtOH](1),[ZrO(H2L1)(NO 3)H 2 O](2),[UO 2(HL2)(NO 3)EtOH] 3H(2)O(3),[ZrO( HL2)(NO 3)EtOH](4),[UO 2(HL 3)(NO 3)(H 2 O)(3)] 2H(2)O(5)和[ZrO(HL 3)(NO 3)EtOH](6);已经合成了。这些配合物的结构已经使用元素分析,热分析,摩尔电导,UV-Vis,IR,电子冲击质量,X射线粉末衍射和NMR光谱。结果表明,通过偶氮基或喹啉环的N原子和喹啉环的N原子和去质子化的氧原子形成非电解质单核复合物。已经研究了合成复合物的荧光性质,并确定了荧光量子产率(PHI(F))。复合物已被测试为荧光显微镜下的细胞染色和成像。除了一些焦细胞形成区域之外,数据显示复合物1和2还有效地染色核。除复合物3和4之外完全染成核。另一方面,复合物5和6专门染色细胞质。已经证明,复杂的4是细胞染色中最有效的。使用UV-Vis吸收滴定和荧光光谱方法计算具有DNA的结合常数(KB)。结论是,复合物4可以有效地用于研究细胞生物学中的荧光探针。

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