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首页> 外文期刊>Journal of Solution Chemistry >Mixed Ligand Complex Formation of Cetirizine Drug with Bivalent Transition Metal(II) Ions in the Presence of 2-Aminomethylbenzimidazole: Synthesis, Structural, Biological, pH-Metric and Thermodynamic Studies
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Mixed Ligand Complex Formation of Cetirizine Drug with Bivalent Transition Metal(II) Ions in the Presence of 2-Aminomethylbenzimidazole: Synthesis, Structural, Biological, pH-Metric and Thermodynamic Studies

机译:在2-氨基甲基苯并咪唑存在下西替利嗪药物与二价过渡金属离子的混合配体络合物形成:合成,结构,生物学,pH计量和热力学研究

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摘要

Mononuclear copper(II), cobalt(II) and nickel(II) complexes of cetirizine (CTZ = 2-[2-[4-[(4-chlorophenyl)phenyl methyl]-piperazine-1-yl]-ethoxy]acetic acid) in the presence of 2-aminomethyl-benzimidazole center dot 2HCl (AMBI), as a representative example of heterocyclic bases, were synthesized and studied by different physical techniques. All mixed-ligand complexes have been fully characterized with the help of elemental analyses, molecular weight determinations, molar conductance, magnetic moments and spectroscopic data. The formulae of the isolated complexes are [M(AMBI)(CTZ)(NO3)(H2O)2]center dot nH(2)O where AMBI is the neutral bidentate 2-aminomethylbenzimidazole, CTZ the deprotonated cetirizine and n = 1 for Co(II) or 0 for Cu(II) and Ni(II) complexes. The measured molar conductance values in DMSO indicate that the complexes are non-electrolytes. The formation equilibria of the ternary complexes have been investigated. Ternary complexes are formed by a simultaneous mechanism. Stoichiometry and stability constants for the complexes formed are reported. The concentration distribution of the complexes in solution was evaluated as a function of pH. The thermodynamic parameters were calculated from the temperature dependence of the equilibrium constants and are discussed. The synthesized metal chelates have been screened for their antimicrobial activities against the selected types of Gram-positive (G(+)) and Gram-negative (G(-)) bacteria. They were found to be more active against Gram positive than Gram negative bacteria. The antimicrobial activity in terms of metal ions obeys this order: Cu(II)>Ni(II)>Co(II).
机译:西替利嗪的单核铜(II),钴(II)和镍(II)配合物(CTZ = 2- [2- [4-[(4-氯苯基)苯基甲基]-哌嗪-1-基]-乙氧基]乙酸在2-氨基甲基-苯并咪唑中心点2HCl(AMBI)的存在下,作为杂环碱的代表性实例,通过不同的物理技术进行合成和研究。在元素分析,分子量测定,摩尔电导,磁矩和光谱数据的帮助下,所有混合配体络合物均得到了充分表征。分离的配合物的分子式为[M(AMBI)(CTZ)(NO3)(H2O)2]中心点nH(2)O,其中AMBI为中性双齿2-氨基甲基苯并咪唑,CTZ为去质子化的西替利嗪,n = 1(对于Co (II)或Cu(II)和Ni(II)配合物为0。 DMSO中测得的摩尔电导值表明该络合物是非电解质。已经研究了三元配合物的形成平衡。三元复合物是通过同时机制形成的。报告了形成的配合物的化学计量和稳定性常数。评价溶液中复合物的浓度分布与pH的关系。根据平衡常数的温度依赖性计算热力学参数并进行讨论。已经筛选了合成的金属螯合物对所选类型的革兰氏阳性(G(+))和革兰氏阴性(G(-))细菌的抗菌活性。发现它们对革兰氏阳性细菌的活性高于对革兰氏阴性细菌的活性。就金属离子而言,抗菌活性遵循以下顺序:Cu(II)> Ni(II)> Co(II)。

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