Malik Moumita, Das Sharmistha, Paul Payel, Chakraborty Poulomi, Roy Ritwik, Maity Alakesh, Das Awantika, Dasgupta Monikankana, Trivedi Saranya, Tribedi Prosun
Microbial Ecology Research Laboratory, Department of Biotechnology, The Neotia University, Sarisha, India.
Microbiology Department, Suraksha Diagnostic Pvt. Ltd. Newtown, Kolkata, India.
Biofouling. 2024 Nov;40(10):862-881. doi: 10.1080/08927014.2024.2422874. Epub 2024 Nov 4.
, an opportunistic pathogen often causes biofilm-linked infections. A combinatorial approach involving tetracycline (antibiotic) and cuminaldehyde (phytochemical) was explored to combat this infectious pathogen. The results showed that both tetracycline and cuminaldehyde individually demonstrated antibacterial effects. However, when the compounds were applied together, there was a significant increase in their antimicrobial potential. The determined fractional inhibitory concentration index of 0.43 indicated a synergistic interaction between the two compounds. Furthermore, a series of experiments demonstrated that the combined application of cuminaldehyde and tetracycline could lead to a significant enhancement of their antibiofilm potential. This enhanced antibiofilm potential was attributed to the accumulation of reactive oxygen species and increased cell membrane permeability. Besides, this combinatorial application reduced the secretion of various virulence factors from . Therefore, this combined approach holds promise for effectively treating biofilms.
是一种机会致病菌,常引起与生物膜相关的感染。探索了一种涉及四环素(抗生素)和枯茗醛(植物化学物质)的联合方法来对抗这种传染性病原体。结果表明,四环素和枯茗醛单独使用时均显示出抗菌作用。然而,当将这两种化合物一起应用时,它们的抗菌潜力显著增加。所测定的分数抑制浓度指数为0.43,表明这两种化合物之间存在协同相互作用。此外,一系列实验表明,枯茗醛和四环素的联合应用可导致其抗生物膜潜力显著增强。这种增强的抗生物膜潜力归因于活性氧的积累和细胞膜通透性的增加。此外,这种联合应用减少了 中各种毒力因子的分泌。因此,这种联合方法有望有效治疗 生物膜。 (原文中部分处有缺失信息未完整表述,所以译文也存在相应不完整情况)