首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Spectroscopic studies on the interaction between carbaryl and calf thymus DNA with the use of ethidium bromide as a fluorescence probe
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Spectroscopic studies on the interaction between carbaryl and calf thymus DNA with the use of ethidium bromide as a fluorescence probe

机译:使用溴化乙锭作为荧光探针对西维因与小牛胸腺DNA之间相互作用的光谱学研究

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The interaction between carbaryl and calf thymus DNA (ctDNA) was investigated under simulated physiological conditions (Tris-HCl buffer of pH 7.4) using ethidium bromide (EB) dye as a probe by UV-vis absorption, fluorescence and circular dichroism (CD) spectroscopy, as well as DNA melting studies and viscosity measurements. It can be concluded that carbaryl molecules could intercalate into the base pairs of DNA as evidenced by hyperchromic effect of absorption spectra, decreases in iodide fluorescence quenching effect, induced CD spectral changes, and significant increases in melting temperature and relative viscosity of DNA. The binding constants and thermodynamic parameters of carbaryl with DNA were obtained by the fluorescence quenching method. Furthermore, a chemometrics approach, parallel factor analysis (PARAFAC), was applied to resolve the measured three-way synchronous fluorescence spectral data matrix of the competitive interaction between carbaryl and EB with DNA, and the results provided simultaneously the concentration profiles and corresponding pure spectra for three reaction components (carbaryl, EB and DNA-EB complex) of the kinetic system at equilibrium. This PARAFAC analysis demonstrated the intercalation of carbaryl to the DNA helix by substituting for EB in the DNA-EB complex.
机译:在溴化乙锭(EB)染料作为探针的模拟生理条件下(pH 7.4的Tris-HCl缓冲液),通过紫外可见吸收,荧光和圆二色谱(CD)光谱研究了西维因与小牛胸腺DNA(ctDNA)之间的相互作用,以及DNA熔解研究和粘度测量。可以得出结论,如吸收光谱的增色效应所证实的,西维因分子可以插入DNA的碱基对中,碘化物荧光猝灭作用的降低,诱导的CD光谱的变化,以及DNA的解链温度和相对粘度的显着提高。通过荧光猝灭法获得了甲萘威与DNA的结合常数和热力学参数。此外,采用化学计量学方法,并行因子分析(PARAFAC)来解决测得的西维因和EB与DNA竞争性相互作用的三向同步荧光光谱数据矩阵,结果同时提供了浓度曲线和相应的纯光谱平衡时动力学系统的三个反应成分(甲萘威,EB和DNA-EB络合物)。 PARAFAC分析表明,通过在DNA-EB复合物中取代EB,将甲芳基插入到DNA螺旋中。

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