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首页> 外文期刊>Saudi Pharmaceutical Journal >Siphonocholin isolated from red sea sponge Siphonochalina siphonella attenuates quorum sensing controlled virulence and biofilm formation
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Siphonocholin isolated from red sea sponge Siphonochalina siphonella attenuates quorum sensing controlled virulence and biofilm formation

机译:红海海绵中梭氏菌中赤素素锡碧侬赤素骨芝麻氏菌衰减法定感测控制的毒力和生物膜形成

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Increasing incidence of multi-drug resistant bacterial pathogens, especially in clinical settings, has been developed into a grave health situation. The drug resistance problem demands the necessity for alternative unique therapeutic policies. One such tactic is targeting the quorum sensing (QS) controlled virulence and biofilm production. In this study, we evaluated a marine steroid Siphonocholin (Syph-1) isolated from Siphonochalina siphonella against Chromobacterium violaceum (CV) 12472, Pseudomonas aeruginosa (PAO1), Methicillin-resistant Staphylococcus aureus (MRSA) and Acinetobacter baumannii (BAA) for biofilm and pellicle formation inhibition, and anti-QS property. MIC of Syph-1 against MRSA, CV, PAO1 was found as 64?μg/mL and 256?μg/mL against BAA. At selected sub-MICs, Syph-1 significantly (P?≤?0.05) decreased the production of QS regulated virulence functions of CV12472 (violacein) and PAO1 [elastase, total protease, pyocyanin, chitinase, exopolysaccharides, and swarming motility]. The Syph-1 significantly decreased (p?=?0.005) biofilm formation ability of tested bacterial pathogens, at sub-MIC level (PAO1??MRSA??CV??BAA) and pellicle formation in A. baumannii (at 128?μg/mL). Molecular docking and simulation results indicated that Siph-1 was bound at the active site of BfmR N-terminal domain with high affinity. This study highlights the anti-QS and anti-biofilm activity of Syph-1 against bacterial pathogens reflecting its broad spectrum anti-infective potential.
机译:增加了多种耐药细菌病原体的发病率,特别是在临床环境中,已经发展成为严重的健康状况。耐药性问题需要替代独特的治疗政策的必要性。一种这样的策略是靶向仲裁感测(QS)受控毒力和生物膜生产。在这项研究中,我们评估了从患有Siphonochalina siphonella患者的海洋类固醇Siphonocholin(SYPH-1),反对富喉菌(CV)12472,假单胞菌铜绿假单胞菌(PAOU1),耐植物抗性金黄色葡萄球菌(MRSA)和Baumannii(BAA)的甲氧胞素抗性葡萄球菌(Baauman),以及薄膜形成抑制和抗QS性能。抗MRSA,CV,PAO1的MIC为64Ωμg/ mL和256Ω·μg/ mL对BAA。在所选亚MICS中,SAM-1显着(p?≤≤0.05)降低了CV12472(violacein)和Pao1 [弹性蛋白酶,总蛋白酶,碧糖素,丁质酶,外核糖酶,外核糖和蜂拥而至的QS调节毒力功能的产生。 Syph-1在亚麦麦米水平(Pao1?> MRSA?CV?>β>βba)和薄膜形成(Pao1 = 0.005)生物膜形成能力,在亚麦米米麦水平下显着降低(p?= 0.005)生物膜形成能力。 128?μg/ ml)。分子对接和仿真结果表明,具有高亲和力的BFMR N-末端结构域的活性位点的SIPH-1结合。本研究突出了抗QS和抗生物膜活性的含量对反射其广谱抗感染潜力的细菌病原体。

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