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吡唑啉酮衍生物及其纳米银(I)配合物的合成与物理化学、DNA结合、抗肿瘤及理论研究

Synthesis of Pyrazolone Derivatives and Their Nanometer Ag(I) Complexes and Physicochemical, DNA Binding, Antitumor, and Theoretical Implementations.

作者信息

Althagafi Ismail, El-Metwaly Nashwa M, Elghalban Marwa G, Farghaly Thoraya A, Khedr Abdalla M

机构信息

Chemistry Department, College of Applied Sciences, Umm Al-Qura University, Mecca, Saudi Arabia.

Chemistry Department, Faculty of Science, Mansoura University, Mansoura, Egypt.

出版信息

Bioinorg Chem Appl. 2018 May 14;2018:2727619. doi: 10.1155/2018/2727619. eCollection 2018.

Abstract

Four pyrazolone derivatives and their corresponding silver complexes were synthesized and characterized. Based on elemental analysis, 1 : 2 (M : L) molar ratio was suggested for all inspected complexes. H, C NMR, mass, UV-Vis, TGA, and IR were the spectral tools used for describing the formulae. Moreover, XRD patterns and SEM pictures were used to evaluate the particle sizes which appeared strongly in nanometer range. CT-DNA study is the major consideration in this study, to test the interacting ability of all synthesized cationic complexes towards cell DNA. Each binding constant was computed and correlated with the Hammett sigma constant. Antitumor activity was examined upon three carcinoma cell lines (MCF-7, HepG2, and HCT116). The high efficiency was recorded towards MCF-7 (breast carcinoma) cell line. Kinetic studies yield essential parameters to assert on the rule of metal atom on thermal feature of organic compounds. Molecular modeling was implemented to optimize the structures of compounds. Also, molecular docking was achieved to obtain a clear view about proposed drug behavior within the affected cells. This was achieved through comparing the calculated internal energy values of all docking complexes. All the tested compounds displayed a significant interaction with breast cancer protein (strong matching with practical result) followed by DNA polymerase protein.

摘要

合成并表征了四种吡唑啉酮衍生物及其相应的银配合物。基于元素分析,建议所有检测到的配合物的摩尔比为1∶2(M∶L)。H、C NMR、质谱、紫外可见光谱、热重分析和红外光谱是用于描述化学式的光谱工具。此外,XRD图谱和SEM图片用于评估粒径,其在纳米范围内表现明显。CT-DNA研究是本研究的主要考量,以测试所有合成的阳离子配合物与细胞DNA的相互作用能力。计算每个结合常数并与哈米特sigma常数相关联。在三种癌细胞系(MCF-7、HepG2和HCT116)上检测抗肿瘤活性。对MCF-7(乳腺癌)细胞系记录到了高效性。动力学研究得出了重要参数,以确定金属原子对有机化合物热性质的影响规律。实施分子建模以优化化合物结构。此外,进行分子对接以清楚了解所提议药物在受影响细胞内的行为。这是通过比较所有对接配合物的计算内能值来实现的。所有测试化合物均与乳腺癌蛋白表现出显著相互作用(与实际结果高度匹配),其次是与DNA聚合酶蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d15/5976992/b1381b03baf2/BCA2018-2727619.sch.001.jpg

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