Alkyl Pyridinol Compounds Exhibit Antimicrobial Effects against Gram-Positive Bacteria.

IF 4.3 2区 医学 Q1 INFECTIOUS DISEASES Antibiotics-Basel Pub Date : 2024-09-20 DOI:10.3390/antibiotics13090897
Juan Canchola, Gracious Yoofi Boafo Donkor, Patrick Ofori Tawiah, Ayoola Fasawe, Emmanuel Ayim, Martin F Engelke, Jan-Ulrik Dahl
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Abstract

Background/Objectives. The rise of antibiotic-resistant pathogens represents a significant global challenge in infectious disease control, which is amplified by the decline in the discovery of novel antibiotics. Staphylococcus aureus continues to be a highly significant pathogen, causing infections in multiple organs and tissues in both healthcare institutions and community settings. The bacterium has become increasingly resistant to all available antibiotics. Consequently, there is an urgent need for novel small molecules that inhibit the growth or impair the survival of bacterial pathogens. Given their large structural and chemical diversity, as well as often unique mechanisms of action, natural products represent an excellent avenue for the discovery and development of novel antimicrobial treatments. Anaephene A and B are two such naturally occurring compounds with significant antimicrobial activity against Gram-positive bacteria. Here, we report the rapid syntheses and biological characterization of five novel anaephene derivatives, which display low cytotoxicity against mammalian cells but potent antibacterial activity against various S. aureus strains, including methicillin-resistant S. aureus (MRSA) and the multi-drug-resistant community-acquired strain USA300LAC. Methods. A Sonogashira cross-coupling reaction served as the key step for the synthesis of the alkyl pyridinol products. Results/Conclusions. Using the compound JC-01-074, which displays bactericidal activity already at low concentrations (MIC: 16 μg/mL), we provide evidence that alkyl pyridinols target actively growing and biofilm-forming cells and show that these compounds cause disruption and deformation of the staphylococcal membrane, indicating a membrane-associated mechanism of action.

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烷基吡啶醇化合物对革兰氏阳性细菌具有抗菌作用。
背景/目标。抗生素耐药性病原体的增加是传染病控制领域面临的一项重大全球性挑战,而新型抗生素发现的减少又加剧了这一挑战。金黄色葡萄球菌仍然是一种非常重要的病原体,可引起医疗机构和社区环境中多个器官和组织的感染。这种细菌对所有现有抗生素的耐药性越来越强。因此,我们迫切需要能抑制细菌病原体生长或影响其生存的新型小分子。鉴于天然产品在结构和化学上的多样性,以及通常独特的作用机制,它们是发现和开发新型抗菌疗法的绝佳途径。Anaephene A 和 B 就是这样两种天然存在的化合物,对革兰氏阳性细菌具有显著的抗菌活性。在此,我们报告了五种新型茴香衍生物的快速合成和生物学特性,这些衍生物对哺乳动物细胞的细胞毒性较低,但对多种金黄色葡萄球菌菌株(包括耐甲氧西林金黄色葡萄球菌(MRSA)和多重耐药社区获得性菌株 USA300LAC)具有很强的抗菌活性。研究方法合成烷基吡啶醇产品的关键步骤是 Sonogashira 交叉偶联反应。结果/结论。化合物 JC-01-074 在低浓度(MIC:16 μg/mL)时就已显示出杀菌活性,我们利用该化合物提供了烷基吡啶醇以生长活跃和形成生物膜的细胞为目标的证据,并表明这些化合物会导致葡萄球菌膜的破坏和变形,这表明了一种膜相关的作用机制。
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来源期刊
Antibiotics-Basel
Antibiotics-Basel Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
7.30
自引率
14.60%
发文量
1547
审稿时长
11 weeks
期刊介绍: Antibiotics (ISSN 2079-6382) is an open access, peer reviewed journal on all aspects of antibiotics. Antibiotics is a multi-disciplinary journal encompassing the general fields of biochemistry, chemistry, genetics, microbiology and pharmacology. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of papers.
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