1and HL2were synthesized and characterized by elemental analyses, IR,1H NMR & Metal based biologically active compounds: Design, synthesis, DNA binding and antidiabetic activity of 6-methyl-3-formyl chromone derived hydrazones and their metal (II) complexes
首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Metal based biologically active compounds: Design, synthesis, DNA binding and antidiabetic activity of 6-methyl-3-formyl chromone derived hydrazones and their metal (II) complexes
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Metal based biologically active compounds: Design, synthesis, DNA binding and antidiabetic activity of 6-methyl-3-formyl chromone derived hydrazones and their metal (II) complexes

机译:基于金属的生物活性化合物:6-甲基-3-甲酰基铬酮衍生的腙及其金属(II)配合物的设计,合成,DNA结合和抗糖尿病活性

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摘要

Two chromone hydrazone ligands HL1and HL2were synthesized and characterized by elemental analyses, IR,1H NMR &13C NMR, electronic absorption and mass spectra. The reactions of the chromone hydrazones with transition metals such as Ni, Cu, and Zn (II) salts of acetate afforded mononuclear metal complexes. Characterization and structure elucidation of the prepared chromone hydrazone metal (II) complexes were done by elemental, IR, electronic, EPR spectra and thermo gravimetric analyses as well as conductivity and magnetic susceptibility measurements. The spectroscopic data showed that the ligand acts as a mono basic bidentate with coordination sites are azomethine nitrogen and hydrazonic oxygen, and they exhibited distorted geometry. The biological studies involved antidiabetic activity i.e. enzyme inhibition of α-amylase and α-glucosidase, Calf Thymus - DNA (CT-DNA) interaction and molecular docking. Potential capacity of synthesized compounds to inhibit the α-amylase and α-glucosidase activity was assayed whereas DNA interaction studies were carried out with the help UV–Vis absorption titration and viscosity method. The docking studies of chromone hydrazones show that they are minor groove binders. Complexes were found to be good DNA - intercalates. Chromone hydrazones and its transition metal complexes have shown comparable antidiabetic activity with a standard drug acarbose.
机译:两种铬腙配体HL 1 和HL 2 由元素分析,IR , 1 h nmr& 13 c nmr,电子吸收和质谱。铬腙腙与过渡金属的反应,如Ni,Cu和Zn(II)酸盐得到单核金属配合物。制备的铬腙腙金属(II)配合物的表征和结构阐明通过元素,IR,电子,EPR光谱和热重量分析以及电导率和磁化率测量来完成。光谱数据表明,配体用作与配位位点的单碱基双齿作为氮杂胺氮和氢化氧,它们表现出变形的几何形状。生物学研究涉及抗糖尿病活性I.E.E.酶抑制α-淀粉酶和α-葡糖苷酶,小牛胸腺 - DNA(CT-DNA)相互作用和分子对接。测定合成化合物以抑制α-淀粉酶和α-葡糖苷酶活性的潜在能力,而DNA相互作用研究是用帮助UV-Vis吸收滴定和粘度法进行的。铬腙腙的对接研究表明它们是较小的槽粘合剂。复合物被发现是良好的DNA - 插入。铬腙腙及其过渡金属配合物已经显示出与标准药物氨基糖的可比抗糖尿病活性。

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