Department of Biology, SSPC Pharma Research Centre, Maynooth University, Maynooth, Co. Kildare, Ireland.
School of School of Chemistry, University College Dublin, Belfield, Stillorgan, Dublin 4, Ireland.
Metallomics. 2022 Aug 3;14(8). doi: 10.1093/mtomcs/mfac046.
The antimicrobial properties of silver have been exploited for many centuries and continue to gain interest in the fight against antimicrobial drug resistance. The broad-spectrum activity and low toxicity of silver have led to its incorporation into a wide range of novel antimicrobial agents, including N-heterocyclic carbene (NHC) complexes. The antimicrobial activity and in vivo efficacy of the NHC silver(I) acetate complex SBC3, derived from 1,3-dibenzyl-4,5-diphenylimidazol-2-ylidene (NHC*), have previously been demonstrated, although the mode(s) of action of SBC3 remains to be fully elucidated. Label-free quantitative proteomics was applied to analyse changes in protein abundance in the pathogenic yeast Candida parapsilosis in response to SBC3 treatment. An increased abundance of proteins associated with detoxification and drug efflux were indicative of a cell stress response, whilst significant decreases in proteins required for protein and amino acid biosynthesis offer potential insight into the growth-inhibitory mechanisms of SBC3. Guided by the proteomic findings and the prolific biofilm and adherence capabilities of C. parapsilosis, our studies have shown the potential of SBC3 in reducing adherence to epithelial cells and biofilm formation and hence decrease fungal virulence.
银的抗菌特性已经被利用了几个世纪,并且在对抗抗菌药物耐药性方面继续引起关注。银的广谱活性和低毒性导致其被纳入各种新型抗菌剂中,包括 N-杂环卡宾 (NHC) 配合物。源自 1,3-二苄基-4,5-二苯基咪唑-2-亚基 (NHC*) 的 NHC 银 (I) 乙酸盐配合物 SBC3 的抗菌活性和体内功效先前已经得到证实,尽管 SBC3 的作用模式仍有待充分阐明。无标记定量蛋白质组学被应用于分析致病性酵母近平滑念珠菌对 SBC3 处理的反应中蛋白质丰度的变化。与解毒和药物外排相关的蛋白质丰度增加表明细胞应激反应,而蛋白质和氨基酸生物合成所需的蛋白质显著减少为 SBC3 的生长抑制机制提供了潜在的见解。根据蛋白质组学发现以及近平滑念珠菌丰富的生物膜和粘附能力,我们的研究表明 SBC3 具有降低对上皮细胞粘附和生物膜形成的潜力,从而降低真菌的毒力。