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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Dinuclear silver(I) complexes with a pyridine-based macrocyclic type of ligand as antimicrobial agents against clinically relevant species: the influence of the counteranion on the structure diversification of the complexes
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Dinuclear silver(I) complexes with a pyridine-based macrocyclic type of ligand as antimicrobial agents against clinically relevant species: the influence of the counteranion on the structure diversification of the complexes

机译:二核银(I)配合物用吡啶基大环型配体作为临床相关物种的抗微生物剂:对抗对复合物结构多样化的影响

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New dinuclear silver(i) complexes withN,N ',N '',N '''-tetrakis(2-pyridylmethyl)-1,4,8,11-tetraazacyclotetradecane (tpmc), [Ag-2(NO3)(tpmc)]NO3 center dot 1.7H(2)O (1), [Ag-2(CF3SO3)(2)(tpmc)] (2), and [Ag-2(tpmc)](BF4)(2) (3) were synthesized and characterized by NMR (H-1 and(13)C), IR and UV- Vis spectroscopy, cyclic voltammetry and molar conductivity measurements. The molecular structures of the complexes were determined by single-crystal X-ray diffraction analysis. The spectroscopic and crystallographic data showed that the structure of the complexes strongly depends on the nature of the counteranion of silver(i) salt used for their synthesis. The antimicrobial activity of complexes1-3was examined against Gram-positive and Gram-negative bacteria and different species of unicellular fungus Candida spp. The ability of these complexes to inhibit the formation of Candida biofilms and to eradicate the already formed biofilms was tested in the standard microtiter plate-based assay. In addition, a bioelectrochemical testing of the antimicrobial activity of complex 1 against early biofilm was also performed. The obtained results indicated that complexes 1-3 showed increased activity toward Gram-negative bacteria and Candida spp. and could inhibit the formation of biofilms. In most cases, these complexes had positive selectivity indices and showed similar or even better activity with respect to the clinically used silver(i) sulfadiazine (AgSD). The values of the binding constants for complexes 1-3 to bovine serum albumin (BSA) were found to be high enough to indicate their binding to this biomolecule, but not so high as to prevent their release upon arrival at the target site. Moreover, the positive values of partition coefficients for these complexes indicated their ability to be transported through the cell membrane. Once inside the cell, complexes 1-3 could induce the formation of the reactive oxygen species (ROS) in C. albicanscells and/or interact with DNA. Taken together, silver(i) complexes with the tpmc ligand could be considered as novel antimicrobial compounds with favourable pharmacological properties, being safer than AgSD.
机译:New incolcill(i)复合物用N,n',n',n'''-taktakis(2-吡啶基甲基)-1,4,8,11-四碱基克拉癸烷(tpmc),[ag-2(no3)(tpmc )] NO3中心点1.7H(2)O(1),[Ag-2(CF3SO3)(2)(2)(TPMC)](2)和[Ag-2(TPMC)](BF4)(2)(3通过NMR(H-1和(13)C),IR和UV-Vis光谱,循环伏安法和摩尔电导率测量合成并表征。通过单晶X射线衍射分析测定复合物的分子结构。光谱和晶体学数据显示,复合物的结构强烈取决于银(I)盐的抗衡性的性质。复合物1-3株对革兰氏阳性和革兰氏阴性细菌的抗微生物活性和不同种单细胞真菌念珠菌SPP。这些配合物抑制形成念珠菌生物膜的能力和消除已经形成的生物膜的能力在标准微量滴定板基测定中测试。此外,还进行了对生物膜早期复合物1的抗微生物活性的生物电化学测试。所得结果表明,复合物1-3显示出革兰阴性细菌和念珠菌SPP的活性增加。并且可以抑制生物膜的形成。在大多数情况下,这些配合物具有阳性选择性指标,并且在临床用过的银(I)磺胺嘧啶(AGSD)方面表现出类似或甚至更好的活动。发现复合物1-3至牛血清白蛋白(BSA)的结合常数的值足够高,以表明它们与该生物分子的结合,但不太高,以防止在到达靶位点时释放。此外,这些配合物的分配系数的正值表明它们能够通过细胞膜传送。一旦细胞内,配合物1-3可以诱导C. albicanscells和/或与DNA相互作用的反应性氧物质(ROS)的形成。与TPMC配体一起携带的银(I)复合物可以被认为是具有良好药理学性质的新型抗微生物化合物,比AGSD更安全。

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