盐酸胡芦巴碱的抗菌活性及其对生物膜形成和毒力的群体感应调控分子机制
Antimicrobial Activity of Trigonelline Hydrochloride Against and Its Quorum-Sensing Regulated Molecular Mechanisms on Biofilm Formation and Virulence.
作者信息
Kar Amiya, Mukherjee Samir Kumar, Barik Subhasis, Hossain Sk Tofajjen
机构信息
Department of Microbiology, University of Kalyani, Kalyani 741235, India.
Department of In Vitro Carcinogenesis and Cellular Chemotherapy, Chittaranjan National Cancer Institute, Kolkata, West Bengal 700026, India.
出版信息
ACS Infect Dis. 2024 Feb 9;10(2):746-762. doi: 10.1021/acsinfecdis.3c00617. Epub 2024 Jan 17.
, a vivid biofilm-producing bacterium, is considered a dreadful opportunistic pathogen, and thus, management of biofilm-associated infections due to multidrug resistant strains by traditional drugs currently is of great concern. This study was aimed to assess the impact of trigonelline hydrochloride, a pyridine alkaloid, on PAO1, in search of an alternative therapeutant. The effect of trigonelline on colony morphology and motility was studied along with its role on biofilm and expression virulence factors. Trigonelline influenced the colony structure, motility, biofilm architecture, and the production of virulence factors in a dose-dependent manner. Alterations in quorum sending (QS)-regulated gene expression after treatment and molecular docking analysis for certain regulator proteins confirmed its effect on the QS-system network by affecting Las, Rhl, and Pqs signaling pathways and as possible molecular targets. Thus, trigonelline might be considered as a potential chemical lead to manage biofilm-associated pathogenesis or to develop other analogues with enhanced pharmacokinetic actions.
作为一种能产生生物膜的活泼细菌,被认为是一种可怕的机会致病菌,因此,目前传统药物对耐多药菌株引起的生物膜相关感染的治疗备受关注。本研究旨在评估吡啶生物碱盐酸胡芦巴碱对铜绿假单胞菌PAO1的影响,以寻找替代治疗剂。研究了盐酸胡芦巴碱对菌落形态和运动性的影响及其对生物膜和毒力因子表达的作用。盐酸胡芦巴碱以剂量依赖的方式影响菌落结构、运动性、生物膜结构和毒力因子的产生。处理后群体感应(QS)调控基因表达的变化以及对某些调节蛋白的分子对接分析证实了其通过影响Las、Rhl和Pqs信号通路以及作为可能的分子靶点对QS系统网络的作用。因此,盐酸胡芦巴碱可被视为管理生物膜相关发病机制或开发具有增强药代动力学作用的其他类似物的潜在化学先导物。