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首页> 外文期刊>Journal of Molecular Structure >Imidazolinium chloride salts bearing wingtip groups: Synthesis, molecular docking and metabolic enzymes inhibition
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Imidazolinium chloride salts bearing wingtip groups: Synthesis, molecular docking and metabolic enzymes inhibition

机译:亚咪唑啉氯化物盐轴承翼面组:合成,分子对接和代谢酶抑制

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A series of symmetrical imidazolinium chloride salts bearing secondary N-alkyl substituents were synthesized in good yield by the reaction of N,N'-dialkylethane-1,2-diamines and HC(OEt)(3) in the presence of NH4Cl. These salts were characterized by spectroscopic methods. All compounds were tested as enzyme inhibitory agents. These novel symmetrical imidazolinium chloride salts derivatives (3a-h) effectively inhibited the cytosolic hCA I and hCA II, BChE, alpha-glycosidase and AChE with K-i values in the range of 18.41-121.73 nM for hCA I, 12.50-63.12 nM for hCA II, 3.72-34.58 nM for AChE, 5.50-32.36 nM for BChE, and 94.72-364.51 nM for alpha-glycosidase, respectively. CA isoenzymes play a crucial roles including acid-base balance homeostasis by excreting and secreting protons (H+) due to the CO2 hydration, HCO3- reabsorption mechanisms, and renal NH4+ output. Also, the molecular modeling is an implementation for estimation of the binding proximity of symmetrical imidazolinium chloride salts bearing secondary wingtip groups and their inhibition mechanisms and kinetics in atomic levels at the catalytic domains. (C) 2018 Elsevier B.V. All rights reserved.
机译:在NH 4 Cl存在下,通过N,N'-二烷基乙烷-1,2-二胺和HC(OET)(3)的反应,合成携带二次正烷基取代基的一系列对称咪唑啉鎓盐。这些盐的特征在于光谱方法。将所有化合物作为酶抑制剂测试。这些新型对称咪唑氯化唑盐衍生物(3A-H)有效地抑制了胞质HCA I和HCA II,BCHE,α-糖苷酶和Ki值的疼痛,在18.41-121.73nm的HCl I,12.50-63.12nm的HCA的范围内II,3.72-34.58 nm用于疼痛,5.50-32.36nm,分别为α-糖苷酶94.72-364.51nm。 Ca同工酶通过CO 2水合,HCO3-重吸收机制和肾NH4 +输出,通过排出和分泌质子(H +)来发挥包括酸碱平衡稳态的关键作用。此外,分子建模是估计催化结构域在催化结构域的原子水平抑制对称咪唑氯化物盐的结合接近且抑制机制和动力学的实现。 (c)2018年elestvier b.v.保留所有权利。

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