首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >In Situ Neutral System Synthesis Spectroscopic and Biological Interpretations of Magnesium(II) Calcium(II) Chromium(III) Zinc(II) Copper(II) and Selenium(IV) Sitagliptin Complexes
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In Situ Neutral System Synthesis Spectroscopic and Biological Interpretations of Magnesium(II) Calcium(II) Chromium(III) Zinc(II) Copper(II) and Selenium(IV) Sitagliptin Complexes

机译:在原位中性系统合成光谱和生物学解释的镁(II)钙(II)铬(III)锌(II)铜(II)和硒(IV)SitaGliptin复合物

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摘要

Magnesium(II), calcium(II), chromium(III), zinc(II), copper(II), and selenium(IV) sitagliptin (STG) complexes—with the general formulas [Mg(STG)2(Cl)2]·6H2O, [Ca(STG)2(Cl)2], [Cr(STG)2(Cl)2]Cl.6H2O, [Zn(STG)2(Cl)2], [Cu(STG)2(Cl)2]·2H2O, and [Se(STG)2(Cl)2]Cl2, respectively—were designed and synthesized by the chemical reactions between metal(II, III, and IV) chloride salts with an STG ligand in situ methanol solvent in a 1:2 stoichiometric ratio (metal:ligand). Tentative structures of the complexes were proposed based on elemental analysis, molar conductance, magnetic moments, thermogravimetric analysis, and spectral (infrared, electronic, and 1H NMR) data. The particle size and morphological investigation were checked on the bases of scanning electron microscopy, transmission electron microscopy, and X-ray powder diffraction analyses. All the Mg2+, Ca2+, Cr3+, Zn2+, Cu2+, and Se4+ complexes were found to be six-coordinated, wherein the STG ligands act as bidentate chelating agents. This study demonstrates that pancreatic tissues are affected by the induction of experimental diabetes mellitus and clarifies the potential of the synthesized STG complexes, which was found to more significantly improve insulin secretion and the pancreatic and glycometabolic complications of diabetic rats than STG alone.
机译:镁(II),钙(II),铬(III),锌(II),铜(II)和硒(IV)SITAGLIPTIN(STG)配合物 - 用通式式[Mg(STG)2(CL)2 ]·6H2O,[Ca(STG)2(CL)2],[Cr(STG)2(Cl)2] Cl.6H 2 O,[Zn(STG)2(Cl)2],[Cu(STG)2( Cl)2]·2H 2 O,和[SE(STG)2(CL)2] Cl2分别由金属(III,III和IV)之间的化学反应与原位甲醇的STG配体之间的氯化物盐之间的化学反应设计和合成溶剂在1:2化学计量比(金属:配体)中。基于元素分析,摩尔电导,磁矩,热重分析和光谱(红外,电子和1H NMR)数据,提出了复合物的暂定结构。检查扫描电子显微镜,透射电子显微镜和X射线粉末衍射分析的碱基粒度和形态学研究。发现所有Mg 2 +,Ca2 +,Cr3 +,Zn2 +,Cu2 +和SE4 +络合物六配位,其中STG配体充当双齿螯合剂。本研究表明,胰腺组织受到实验糖尿病诱导的影响,并阐明了合成的STG复合物的潜力,该潜力被发现更显着改善胰岛素分泌和糖尿病大鼠的胰腺和糖甲醛并发症而不是单独的STG。

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