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首页> 外文期刊>International Journal of Pharmaceutical Sciences Review and Research >Study of In-Vitro Anti-Cancer and Anti-Oxidative Properties of Aqueous Extract of Punica granatum Flowers
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Study of In-Vitro Anti-Cancer and Anti-Oxidative Properties of Aqueous Extract of Punica granatum Flowers

机译:石榴花水提取物的体外抗癌和抗氧化性能研究

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Differential Pulse Polarographic (DPP) wave was measured for atenolol in phosphate buffer solution pH 7.4 with a concentration of 1.12 ×10-5 M at 37 C°, using hanging dropping mercury electrode HDME as a working electrode, the study found that atenolol is an electrical active agents and has E1/2 0.112 V, the important part of the polarographic study is the interaction between drug - receptors. Two amino acids cysteine and tryptophan were selected as receptors, based on literature. After formation of molecular complexes for drug-receptor, a positive displacement in the value of the half-wave potential was noted, which refers to increasing on the energy gap of HOMO-LUMO molecular orbital's of the drug. By linking to the thermodynamic Keq and kinetic behavior, the rate constants of the forward k1 and reverse k-1 reaction was calculated for atenolol–receptor molecular complexes and through the half-life time was calculated. Gibbs free energy was calculated which gave a negative value for all the molecular complexes under study as an indicator of the spontaneous interaction. The chemical affinity was also calculated which gave a positive result as an indicator of the high tendency of molecules to associated with each other. A computational study using Gaussian software, DFT- 6311G for the formation of molecular complexes of atenolol with receptors, gave an indicated for a significant agreement between the behavior of complexes in theoretical study and polarographic study, depending on the value of the energy gap between the molecular orbitals HOMO-LUMO.
机译:使用悬滴汞电极HDME作为工作电极,在pH 7.4的磷酸盐缓冲溶液pH 7.4中以1.12×10-5 M的浓度测量了阿替洛尔的差分脉冲极谱波(DPP),研究发现阿替洛尔是一种电活性剂并具有E1 / 2 0.112 V,极谱研究的重要部分是药物-受体之间的相互作用。根据文献,选择两个氨基酸半胱氨酸和色氨酸作为受体。在形成用于药物受体的分子复合物之后,注意到半波电势值出现正位移,这是指药物的HOMO-LUMO分子轨道的能隙增加。通过联系热力学Keq和动力学行为,计算了阿替洛尔-受体分子复合物的正向k1和反向k-1反应的速率常数,并计算了半衰期。计算吉布斯自由能,该自由能给出了所研究的所有分子复合物的负值,作为自发相互作用的指标。还计算了化学亲和力,其给出了积极的结果,作为分子相互关联的高趋势的指标。使用高斯软件DFT- 6311G进行的阿替洛尔与受体分子复合物形成的计算研究表明,理论研究和极谱研究中复合物的行为之间存在着显着的一致性,这取决于两者之间的能隙值。分子轨道HOMO-LUMO。

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