Aktekin Mine Buga, Oksuz Zehra, Turkmenoglu Burcin, Istifli Erman Salih, Kuzucu Mehmet, Algul Oztekin
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Mersin University, Mersin, Turkey.
Department of Pharmacy Services, Vocational School of Health Services, Tarsus University, Mersin, Turkey.
Chem Biol Drug Des. 2024 Aug;104(2):e14601. doi: 10.1111/cbdd.14601.
Cumulative escalation in antibiotic-resistant pathogens necessitates the quest for novel antimicrobial agents, as current options continue to diminish bacterial resistance. Herein, we report the synthesis of di-heterocyclic benzazole structures (12-19) and their in vitro evaluation for some biological activities. Compounds 16 and 17 demonstrated potent antibacterial activity (MIC = 7.81 μg/mL) against Staphylococcus aureus, along with significant anti-biofilm activity. Noteworthy is the capability of Compound 17 to inhibit biofilm formation by at least 50% at sub-MIC (3.90 μg/mL) concentration. Furthermore, both compounds exhibited the potential to inhibit preformed biofilm by at least 50% at the MIC concentration (7.81 μg/mL). Additionally, Compounds 16 and 17 were examined for cytotoxic effects in HFF-1 cells, using the MTT method, and screened for binding interactions within the active site of S. aureus DNA gyrase using in silico molecular docking technique, employing AutoDock 4.2.6 and Schrödinger Glidse programs. Overall, our findings highlight Compounds 16 and 17 as promising scaffolds warranting further optimization for the development of effective antibacterial and anti-biofilm agents.
抗生素耐药病原体的累积增加使得寻找新型抗菌剂成为必要,因为现有的选择在持续降低细菌耐药性。在此,我们报告了二杂环苯并唑结构(12 - 19)的合成及其一些生物活性的体外评估。化合物16和17对金黄色葡萄球菌表现出强效抗菌活性(MIC = 7.81μg/mL),同时具有显著的抗生物膜活性。值得注意的是,化合物17在亚MIC(3.90μg/mL)浓度下能够抑制至少50%的生物膜形成。此外,这两种化合物在MIC浓度(7.81μg/mL)下均表现出抑制至少50%预先形成的生物膜的潜力。另外,使用MTT法检测了化合物16和17在HFF - 1细胞中的细胞毒性作用,并使用AutoDock 4.2.6和Schrödinger Glidse程序通过计算机模拟分子对接技术筛选了它们与金黄色葡萄球菌DNA促旋酶活性位点内的结合相互作用。总体而言,我们的研究结果突出了化合物16和17作为有前景的骨架,值得进一步优化以开发有效的抗菌和抗生物膜剂。