Yan Suzhen, Kowah Jamal A H, Long Qingfeng, Liu Qian, Zhang Hanqing, Lu Siying, Wang Lisheng, Yu Haixia
School of Medicine, Guangxi University Nanning 530004 China
School of Chemistry and Chemical Engineering, Guangxi University Nanning 530004 China.
RSC Adv. 2025 May 19;15(21):16510-16524. doi: 10.1039/d5ra01689d. eCollection 2025 May 15.
To address the urgent need for novel antibacterial drugs, herein, a series of 27 novel matrine derivatives incorporating hydroxamic acid and benzene sulfonamide moieties were designed and synthesized. Antimicrobial testing demonstrated exceptional inhibitory activity against , with the most potent compound (10g) showing a MIC value of 0.062 mg mL, which was significantly lower than that of the clinical antibiotic fluconazole (8.590 mg mL). 3D-QSAR analysis identified the phenylsulfonyl group as crucial for activity, particularly when substituted with a 4-(CH) group. The hydroxamic acid moiety was also found to contribute positively to the antifungal effects. Mechanistic studies indicated that these compounds act by both preventing biofilm formation and disrupting established biofilms. Furthermore, molecular docking studies of compounds 9j and 10g with fungal proteins (PDB: 2QZX) revealed that their antifungal activity involves multiple interactions, including hydrogen bonding, hydrophobic interactions, and van der Waals forces. These findings position compound 10g as a particularly promising lead candidate for the development of new antifungal agents.
为满足对新型抗菌药物的迫切需求,本文设计并合成了一系列27种含异羟肟酸和苯磺酰胺基团的新型苦参碱衍生物。抗菌测试表明,这些衍生物对(此处原文缺失具体菌种)具有优异的抑制活性,其中最有效的化合物(10g)的最低抑菌浓度(MIC)值为0.062 mg/mL,显著低于临床抗生素氟康唑的MIC值(8.590 mg/mL)。三维定量构效关系(3D-QSAR)分析确定苯磺酰基对活性至关重要,尤其是当被4-(CH)基团取代时。还发现异羟肟酸部分对抗真菌效果有积极贡献。机理研究表明,这些化合物通过防止生物膜形成和破坏已形成的生物膜发挥作用。此外,化合物9j和10g与真菌蛋白(PDB:2QZX)的分子对接研究表明,它们的抗真菌活性涉及多种相互作用,包括氢键、疏水相互作用和范德华力。这些发现使化合物10g成为开发新型抗真菌药物特别有前景的先导候选物。