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基于吩嗪的钌(II)配合物的抗菌、抗生物膜和协同作用。

Anti-bacterial, anti-biofilm and synergistic effects of phenazine-based ruthenium(II) complexes.

机构信息

Bioinorganic Group, Department of Organic and Inorganic Chemistry, Federal University of Ceará, Fortaleza, CE, 60451-970, Brazil.

Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois, 61801, USA.

出版信息

Dalton Trans. 2024 Jul 30;53(30):12627-12640. doi: 10.1039/d4dt01033g.

Abstract

Antimicrobial resistance has become a global threat to human health, which is coupled with the lack of novel drugs. Metallocompounds have emerged as promising diverse scaffolds for the development of new antibiotics. Herein, we prepared some metal compounds mainly focusing on -Ru(bpy)(dppz)(SO)(NO) (PR02, bpy = 2,2'-bipyridine, dppz = dipyrido[3,2-:2',3'-]phenazine), in which phenazinic and nitric oxide ligands along with sulfite conferred some key properties. This compound exhibited a redox potential for bound NO of -0.252 V ( Ag|AgCl) and a high pH for nitrosyl-nitro conversion of 9.16, making the nitrosyl ligand the major species. These compounds were still able to bind to DNA structures. Interestingly, reduced glutathione (GSH) was unable to promote significant NO/HNO release, an uncommon feature of many similar systems. However, this reducing agent was essential to generate superoxide radicals. Antimicrobial studies were carried out using six bacterial strains, where none or very low activity was observed for Gram-negative bacteria. However, PR02 and PR (-[Ru(bpy)(dppz)Cl]) showed high antibacterial activity in some Gram-positive strains (MBC for up to 4.9 μmol L), where the activity of PR02 was similar to or at least 4-fold better than that of PR. Besides, PR02 showed capacity to inhibit bacterial biofilm formation, a major health issue leading to bacterial tolerance to antibiotics. Interestingly, we also showed that PR02 can function in synergism with the known antibiotic ampicillin, improving their action up to 4-fold even against resistant strains. Altogether, these results showed that PR02 is a promising antimicrobial nitrosyl ruthenium compound combining features beyond its killing action, which deserves further biological studies.

摘要

抗微生物耐药性已成为对人类健康的全球性威胁,而新型药物的缺乏更是雪上加霜。金属配合物已成为开发新型抗生素的有前途的多样化支架。在此,我们主要制备了一些金属化合物,重点是-Ru(bpy)(dppz)(SO)(NO)(PR02,bpy=2,2'-联吡啶,dppz=二吡啶并[3,2-a:2',3'-c]吩嗪),其中吩嗪和一氧化氮配体以及亚硫酸盐赋予了一些关键性质。该化合物的结合态一氧化氮的氧化还原电位为-0.252 V(Ag|AgCl),亚硝酰基-硝基转化的 pH 值为 9.16,使亚硝酰基配体成为主要物种。这些化合物仍能与 DNA 结构结合。有趣的是,还原型谷胱甘肽(GSH)不能促进大量 NO/HNO 释放,这是许多类似系统的一个不常见特征。然而,这种还原剂对于生成超氧自由基是必不可少的。使用六种细菌菌株进行了抗菌研究,其中革兰氏阴性菌没有或仅有很低的活性。然而,PR02 和 PR(-[Ru(bpy)(dppz)Cl])在一些革兰氏阳性菌株中表现出很高的抗菌活性(MBC 高达 4.9 μmol L),其中 PR02 的活性与 PR 相似或至少好 4 倍。此外,PR02 表现出抑制细菌生物膜形成的能力,这是导致细菌对抗生素产生耐药性的主要健康问题。有趣的是,我们还表明 PR02 可以与已知的抗生素氨苄西林协同作用,甚至对耐药菌株的作用提高了 4 倍。总的来说,这些结果表明 PR02 是一种有前途的结合了其杀菌作用以外的特性的含亚硝酰基的钌抗菌化合物,值得进一步的生物学研究。

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