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Ga3+ 的抗菌活性受到配体络合以及细菌碳源的影响。

The antibacterial activity of Ga3+ is influenced by ligand complexation as well as the bacterial carbon source.

机构信息

Department of Chemistry, Umeå University, SE-90187 Umeå, Sweden.

出版信息

Antimicrob Agents Chemother. 2011 Dec;55(12):5568-80. doi: 10.1128/AAC.00386-11. Epub 2011 Sep 26.

Abstract

Gallium ions have previously been shown to exhibit antibacterial and antibiofilm properties. In this study, we report differential bactericidal activities of two gallium complexes, gallium desferrioxamine B (Ga-DFOB) and gallium citrate (Ga-Cit). Modeling of gallium speciation in growth medium showed that DFOB and citrate both can prevent precipitation of Ga(OH)(3), but some precipitation can occur above pH 7 with citrate. Despite this, Ga-Cit 90% inhibitory concentrations (IC(90)) were lower than those of Ga-DFOB for clinical isolates of Pseudomonas aeruginosa and several reference strains of other bacterial species. Treatment with Ga compounds mitigated damage inflicted on murine J774 macrophage-like cells infected with P. aeruginosa PAO1. Again, Ga-Cit showed more potent mitigation than did Ga-DFOB. Ga was also taken up more efficiently by P. aeruginosa in the form of Ga-Cit than in the form of Ga-DFOB. Neither Ga-Cit nor Ga-DFOB was toxic to several human cell lines tested, and no proinflammatory activity was detected in human lung epithelial cells after exposure in vitro. Metabolomic analysis was used to delineate the effects of Ga-Cit on the bacterial cell. Exposure to Ga resulted in lower concentrations of glutamate, a key metabolite for P. aeruginosa, and of many amino acids, indicating that Ga affects various biosynthesis pathways. An altered protein expression profile in the presence of Ga-Cit suggested that some compensatory mechanisms were activated in the bacterium. Furthermore, the antibacterial effect of Ga was shown to vary depending on the carbon source, which has importance in the context of medical applications of gallium.

摘要

镓离子先前已被证明具有抗菌和抗生物膜特性。在这项研究中,我们报告了两种镓配合物,镓去铁胺 B(Ga-DFOB)和柠檬酸镓(Ga-Cit)的杀菌活性差异。生长介质中镓形态的建模表明,DFOB 和柠檬酸都可以防止 Ga(OH)(3)沉淀,但在 pH 值高于 7 时,柠檬酸可能会发生一些沉淀。尽管如此,Ga-Cit 的 90%抑制浓度(IC(90))仍低于 Ga-DFOB 对铜绿假单胞菌临床分离株和其他几种参考菌株的抑制浓度。用 Ga 化合物处理可减轻铜绿假单胞菌 PAO1 感染的小鼠 J774 巨噬样细胞造成的损伤。同样,Ga-Cit 的缓解效果比 Ga-DFOB 更有效。以 Ga-Cit 形式摄取的 Ga 也比 Ga-DFOB 更有效。Ga-Cit 和 Ga-DFOB 均未对测试的几种人细胞系造成毒性,体外暴露后也未在人肺上皮细胞中检测到促炎活性。代谢组学分析用于描绘 Ga-Cit 对细菌细胞的影响。暴露于 Ga 会导致谷氨酸(铜绿假单胞菌的关键代谢物)和许多氨基酸的浓度降低,表明 Ga 会影响各种生物合成途径。存在 Ga-Cit 时的蛋白质表达谱发生改变表明,细菌中激活了一些补偿机制。此外,Ga 的抗菌作用因碳源而异,这在镓的医学应用方面具有重要意义。

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