Enhancing the antimycobacterial efficacy of pyridine-4-carbohydrazide: linkage to additional antimicrobial agents via oxocarboxylic acids†

IF 4.1 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY RSC medicinal chemistry Pub Date : 2024-10-16 DOI:10.1039/D4MD00663A
Václav Pflégr, Klára Konečná, Jiřina Stolaříková, Jan Ősterreicher, Ondřej Janďourek and Martin Krátký
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Abstract

This study evaluates the antimycobacterial potential of novel “mutual” bioactive amides, combining pyridine-4-carbohydrazide (isoniazid, INH) with various antimicrobial agents (sulphonamides, 4-aminosalicylic acid, thiosemicarbazide, diphenyl (thio)ethers) via oxocarboxylic acids. The aim was to enhance activity against both drug-susceptible and multidrug-resistant (MDR) Mycobacterium tuberculosis and non-tuberculous strains, while overcoming drug resistance through dual-action mechanisms. Many derivatives exhibited potent antimycobacterial activity, with minimum inhibitory concentrations (MICs) as low as ≤0.25 μM, outperforming INH, especially diphenyl (thio)ethers and biphenyl analogues. Additionally, the compounds were effective against M. kansasii (MICs ≤1 μM) and inhibited MDR strains at higher concentrations (≥8 μM). The cytotoxicity assay indicated a favourable safety profile, with no significant haemolysis at 125 μM, and some compounds were even protective. Selectivity for mycobacteria was confirmed by low inhibition of Gram-positive bacteria and inactivity against Gram-negative bacteria or fungi, highlighting the potential for further development as antimycobacterial agents.

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增强吡啶-4-甲酰肼的抗霉菌功效:通过氧羧酸与其他抗菌剂连接。
本研究评估了新型 "互作 "生物活性酰胺的抗结核潜力,这些酰胺通过氧羧酸将吡啶-4-甲酰肼(异烟肼,INH)与各种抗菌剂(磺胺类、4-氨基水杨酸、硫代氨基脲、二苯基(硫)醚)结合在一起。目的是提高对易服药和耐多药(MDR)结核分枝杆菌和非结核菌株的活性,同时通过双重作用机制克服耐药性。许多衍生物都表现出了强大的抗结核活性,最低抑菌浓度(MIC)低至≤0.25 μM,优于 INH,尤其是二苯基(硫)醚和联苯类似物。此外,这些化合物对堪萨斯霉菌有效(MIC ≤1 μM),在较高浓度(≥8 μM)下对 MDR 菌株也有抑制作用。细胞毒性试验表明,这些化合物具有良好的安全性,在 125 μM 的浓度下没有明显的溶血现象,有些化合物甚至具有保护作用。由于对革兰氏阳性菌的抑制作用较低,而对革兰氏阴性菌或真菌的抑制作用较弱,因此证实了该化合物对分枝杆菌的选择性,突出了其作为抗霉菌药物进一步开发的潜力。
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CiteScore
5.80
自引率
2.40%
发文量
129
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