首页> 外文期刊>Chemistry Select >Supramolecular Salts of Fe(II)/Co(II)/Ni(II)/Cu(II)/Zn(II)1,10-Phenanthroline Cations and Similar Complex Tartratostannate(IV)Anions:From Structural Features to Antimicrobial Activity and Enzyme Activation
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Supramolecular Salts of Fe(II)/Co(II)/Ni(II)/Cu(II)/Zn(II)1,10-Phenanthroline Cations and Similar Complex Tartratostannate(IV)Anions:From Structural Features to Antimicrobial Activity and Enzyme Activation

机译:Fe(II)/CO(II)/Ni(II)/Cu(II)/Zn(II)的超分子盐(II)/Zn(II)1,10-磷酸阳离子和类似的复合物tartratostannate(IV)阴离子(IV)阴离子:从结构特征到抗菌活性和抗菌活性和酶 激活

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In the present study authors establish the influence of complex cation on the structure formation,crystal packing,antimicrobial activity and enzyme activation of the previously described isostructural [M(phen)3]2[Sn2(μ-Tart)2(H2Tart)2] complexes(M-(II)=Fe(1),Co(2),Ni(3),Cu(4),Zn(5)).Despite the similarity of composition and structure,compounds 1-5 showed different level of antimicrobial activity.A certain pattern in their effectiveness-decreasing of minimal concentrations,resembles the Irving-Williams series(Fe(II)Zn(II))and,according to the crystal field theory,correlates with the thermodynamic stability of octahedral cations [M(phen)3]2+.Quantum chemical calculations of cations revealed the insights of the"cations-cell membranes"interactions and allowed authors to conclude that the cations in compounds 4 and 5 are the most lipophilic,have the highest affinity to the lipophilic cell membrane and,as a result,are more bioactive.It was established that compounds 1-5 had a different influence on the activity of studied α-L-rhamnosidases Penicillium tardum IMB F-100074 and Penicillium restrictum IMB F-100139.Correlation of these results with the crystal voids calculations and Hirshfeld surface analysis allow authors to suggest that presence of the bigger number of water molecules,generation of the branched network of hydrogen bonds and formation of active intermediate complex"enzyme-effector-substrate",leads to the biggest intensification of activation properties for the compounds 2 and 5.
机译:在本研究中,作者建立了复杂阳离子对先前描述的等值构造的结构形成,晶体堆积,抗菌活性和酶激活的影响[M(phen)3] 2 [Sn2(μ-tart)2(H2TART)2]复合物(M-(II)= Fe(1),Co(2),Ni(3),Cu(4),Zn(5))。尽管组成和结构相似,但化合物1-5显示出不同的水平抗微生物活性。在其有效性最低浓度的有效性中,类似于Irving-Williams系列(Fe(II) zn(ii)),并根据对于晶体场理论,与八面体阳离子的热力学稳定性相关[M(phen)3] 2+。阳离子的Quantum化学计算揭示了“阳离子 - 细胞膜”相互作用的见解,并允许作者得出结论,结论说明阳离子的阳离子化合物4和5是最大的亲脂性,对亲脂细胞膜具有最高的亲和力,结果是更生物活性。它已确定化合物1-5对所研究的α-l-rhamnosidases Penicillium tardum imb F-100074和限制性限制性IMB IMB F-100139的活性有不同的影响水分子的数量,氢键的分支网络的产生以及活跃的中间复合物“酶 - 效应 - 底物”的形成,导致化合物2和5的激活特性的最大强化。

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