Department of Pharmacy, Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan 250021, Shandong, P.R. China.
Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong University, No. 44 West Wenhua Road, Jinan, 250012, Shandong, P.R. China.
Med Chem. 2024;20(7):689-693. doi: 10.2174/0115734064252833231129062005.
serovar Typhimurium, an anaerobic enteric pathogene, could cause human and animal diseases ranging from mild gastroenteritis to whole body serious infections.
The goal of this paper was to synthesize new 6-amido-3-carboxypyridazine derivatives with different lengths of side chains with the aim of getting potent antibacterial agents.
Synthesized compounds were analyzed by analytical techniques, such as H NMR, C NMR spectra, and mass spectrometry. We designed a series of novel 6-amido-3-carboxypyridazines using FA as the lead compound with the scaffold hopping strategy and their inhibitory activity against the effectors of type III secretion system (T3SS) using SDS-PAGE and western blot analysis for two rounds. Also, the preliminary mechanism of action of this series of compounds on T3SS was performed using real-time qPCR.
Nine 6-amido-3-carboxypyridazines was synthesized. The inhibitory activities evaluated showed that compound 2i was the most potent T3SS inhibitor, which demonstrated potent inhibitory activities on the secretion of the T3SS SPI-1 effectors in a dose-dependent manner. The transcription of SPI-1 may be affected by compound 2i through the regulatory pathway.
The novel synthetic 6-amido-3-carboxypyridazines could act as potent leads for the development of novel antibacterial agents.
鼠伤寒沙门氏菌是一种厌氧肠道病原体,可引起人类和动物的疾病,从轻度肠胃炎到全身严重感染不等。
本文的目的是合成具有不同侧链长度的新型 6-酰胺基-3-羧基哒嗪衍生物,以期获得有效的抗菌剂。
通过分析技术,如 1 H NMR、13 C NMR 谱和质谱对合成的化合物进行分析。我们使用 FA 作为先导化合物,采用支架跳跃策略设计了一系列新型 6-酰胺基-3-羧基哒嗪,并通过 SDS-PAGE 和 Western blot 分析进行了两轮筛选,以评估其对 III 型分泌系统(T3SS)效应物的抑制活性。此外,还通过实时 qPCR 对该系列化合物对 T3SS 的初步作用机制进行了研究。
合成了 9 个 6-酰胺基-3-羧基哒嗪。评价的抑制活性表明,化合物 2i 是最有效的 T3SS 抑制剂,它能以剂量依赖的方式有效抑制 T3SS SPI-1 效应物的分泌。化合物 2i 可能通过调控途径影响 SPI-1 的转录。
新型合成的 6-酰胺基-3-羧基哒嗪可能成为开发新型抗菌剂的有效先导化合物。