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Antibacterial Activity and Membrane-Disruptive Mechanism of 3-p-trans-Coumaroyl-2-hydroxyquinic Acid a Novel Phenolic Compound from Pine Needles of Cedrus deodara against Staphylococcus aureus

机译:雪松杜鹃松针中的新型酚类化合物3-p-trans-Coumaroyl-2-hydroxyquinic acid对金黄色葡萄球菌的抗菌活性和膜破坏机理。

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摘要

Recently, we reported that a novel phenolic compound isolated from Cedrus deodara, 3-p-trans-coumaroyl-2-hydroxyquinic acid (CHQA), exhibits a potent antioxidant activity. The present study aimed to evaluate the antibacterial activity of CHQA against eleven food-borne pathogens and to elucidate its mechanism of action against Staphylococcus aureus. The results from minimum inhibitory concentration (MIC) determinations showed that CHQA exhibited moderate inhibitory effects on all of the tested pathogens with MIC values ranging from 2.5–10 mg/mL. Membrane potential measurements and flow cytometric analysis demonstrated that CHQA damaged the cytoplasmic membrane of S. aureus, causing a significant membrane hyperpolarization with a loss of membrane integrity. Moreover, CHQA induced an increase in membrane fluidity and conformational changes in membrane protein of S. aureus, suggesting that CHQA probably acts on the cell membrane by interactions with membrane lipid and protein. Transmission electron microscopic observations further confirmed that CHQA disrupted the cell membrane of S. aureus and caused severe morphological changes, which even led to leakage of intracellular constituents. These findings indicated that CHQA could have the potential to serve as a natural antibacterial agent to control and prevent the growth of pathogens in food and in food-processing environments.
机译:最近,我们报道了一种从雪松(Cedrus deodara)分离的新型酚类化合物3-p-trans-coumaroyl-2-hydroxyquinic acid(CHQA),具有强大的抗氧化活性。本研究旨在评估CHQA对11种食源性病原体的抗菌活性,并阐明其对金黄色葡萄球菌的作用机理。最低抑菌浓度(MIC)测定的结果表明,CHQA对所有测试病原体均表现出中等抑菌作用,MIC值范围为2.5-10 mg / mL。膜电位测量和流式细胞仪分析表明,CHQA破坏了金黄色葡萄球菌的细胞质膜,导致明显的膜超极化,并丧失了膜的完整性。此外,CHQA诱导金黄色葡萄球菌的膜流动性增加和膜蛋白的构象变化,这表明CHQA可能通过与膜脂质和蛋白的相互作用作用于细胞膜。透射电子显微镜观察进一步证实CHQA破坏金黄色葡萄球菌的细胞膜并引起严重的形态变化,甚至导致细胞内成分的泄漏。这些发现表明,CHQA可以作为天然抗菌剂来控制和预防食品和食品加工环境中病原体的生长。

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