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熊果酸和齐墩果酸对脂质膜的影响:对耐甲氧西林金黄色葡萄球菌及膜模型的研究

Effect of Ursolic and Oleanolic Acids on Lipid Membranes: Studies on MRSA and Models of Membranes.

作者信息

Verstraeten Sandrine, Catteau Lucy, Boukricha Laila, Quetin-Leclercq Joelle, Mingeot-Leclercq Marie-Paule

机构信息

Université Catholique de Louvain, Louvain Drug Research Institute, Pharmacologie Cellulaire et Moléculaire, Avenue E. Mounier 73, UCL B1.73.05, 1200 Brussels, Belgium.

Université Catholique de Louvain, de Duve Institute, Cellular Biology, Avenue Hippocrate 75, UCL B1.75.02, 1200 Brussels, Belgium.

出版信息

Antibiotics (Basel). 2021 Nov 11;10(11):1381. doi: 10.3390/antibiotics10111381.

Abstract

is an opportunistic pathogen and the major causative agent of life-threatening hospital- and community-acquired infections. A combination of antibiotics could be an opportunity to address the widespread emergence of antibiotic-resistant strains, including Methicillin-Resistant (MRSA). We here investigated the potential synergy between ampicillin and plant-derived antibiotics (pentacyclic triterpenes, ursolic acid (UA) and oleanolic acid (OA)) towards MRSA (ATCC33591 and COL) and the mechanisms involved. We calculated the Fractional Inhibitory Concentration Index (FICI) and demonstrated synergy. We monitored fluorescence of Bodipy-TR-Cadaverin, propidium iodide and membrane potential-sensitive probe for determining the ability of UA and OA to bind to lipoteichoic acids (LTA), and to induce membrane permeabilization and depolarization, respectively. Both pentacyclic triterpenes were able to bind to LTA and to induce membrane permeabilization and depolarization in a dose-dependent fashion. These effects were not accompanied by significant changes in cellular concentration of pentacyclic triterpenes and/or ampicillin, suggesting an effect mediated through lipid membranes. We therefore focused on membranous effects induced by UA and OA, and we investigated on models of membranes, the role of specific lipids including phosphatidylglycerol and cardiolipin. The effect induced on membrane fluidity, permeability and ability to fuse were studied by determining changes in fluorescence anisotropy of DPH/generalized polarization of Laurdan, calcein release from liposomes, fluorescence dequenching of octadecyl-rhodamine B and liposome-size, respectively. Both UA and OA showed a dose-dependent effect with membrane rigidification, increase of membrane permeabilization and fusion. Except for the effect on membrane fluidity, the effect of UA was consistently higher compared with that obtained with OA, suggesting the role of methyl group position. All together the data demonstrated the potential role of compounds acting on lipid membranes for enhancing the activity of other antibiotics, like ampicillin and inducing synergy. Such combinations offer an opportunity to explore a larger antibiotic chemical space.

摘要

是一种机会致病菌,是危及生命的医院获得性感染和社区获得性感染的主要病原体。联合使用抗生素可能是应对包括耐甲氧西林金黄色葡萄球菌(MRSA)在内的抗生素耐药菌株广泛出现的一个契机。我们在此研究了氨苄西林与植物源抗生素(五环三萜、熊果酸(UA)和齐墩果酸(OA))对MRSA(ATCC33591和COL)的潜在协同作用及其相关机制。我们计算了分数抑菌浓度指数(FICI)并证明了协同作用。我们监测了Bodipy-TR-尸胺、碘化丙啶和膜电位敏感探针的荧光,以确定UA和OA分别与脂磷壁酸(LTA)结合、诱导膜通透性增加和去极化的能力。两种五环三萜均能与LTA结合,并以剂量依赖的方式诱导膜通透性增加和去极化。这些效应并未伴随着五环三萜和/或氨苄西林细胞浓度的显著变化,表明其作用是通过脂质膜介导的。因此,我们聚焦于UA和OA诱导的膜效应,并在膜模型上研究了包括磷脂酰甘油和心磷脂在内的特定脂质的作用。通过分别测定DPH荧光 anisotropy/Laurdan广义极化、钙黄绿素从脂质体释放、十八烷基罗丹明B荧光猝灭和脂质体大小的变化,研究了其对膜流动性、通透性和融合能力的影响。UA和OA均表现出与膜刚性增加、膜通透性增加和融合相关的剂量依赖性效应。除了对膜流动性的影响外,UA的效应始终高于OA,表明甲基位置的作用。所有数据共同证明了作用于脂质膜的化合物在增强其他抗生素(如氨苄西林)活性和诱导协同作用方面的潜在作用。这种联合用药为探索更大的抗生素化学空间提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ef5/8615140/d3971bfab2f2/antibiotics-10-01381-g001.jpg

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