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首页> 外文期刊>Journal of Medicinal Chemistry >Interaction of tea tree oil with model and cellular membranes
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Interaction of tea tree oil with model and cellular membranes

机译:茶树油与模型膜和细胞膜的相互作用

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Tea tree oil (TTO) is the essential oil steam-distilled from Melaleuca alternifolia, a species of northern New South Wales, Australia. It exhibits a broad-spectrum antimicrobial activity and an antifungal activity. Only recently has TTO been shown to inhibit the in vitro growth of multidrug resistant (MDR) human melanoma cells. It has been suggested that the effect of TTO on tumor cells could be mediated by its interaction with the plasma membrane, most likely by inducing a reorganization of lipid architecture. In this paper we report biophysical and structural results obtained using simplified planar model membranes (Langmuir films) mimicking lipid "rafts". We also used flow cytometry analysis (FCA) and freeze-fracturing transmission electron microscopy to investigate the effects of TTO on actual MDR melanoma cell membranes. Thermodynamic (compression isotherms and adsorption kinetics) and structural (Brewster angle microcopy) investigation of the lipid monolayers clearly indicates that TTO interacts preferentially with the less ordered DPPC "sea" and that it does not alter the more ordered lipid "rafts". Structural observations, performed by freeze fracturing, confirm that TTO interacts with the MDR melanoma cell plasma membrane. Moreover, experiments performed by FCA demonstrate that TTO does not interfere with the function of the MDR drug transporter P-gp. We therefore propose that the effect exerted on MDR melanoma cells is mediated by the interaction with the fluid DPPC phase, rather than with the more organized "rafts" and that this interaction preferentially influences the ATP-independent antiapoptotic activity of P-gp likely localized outside "rafts".
机译:茶树油(TTO)是从澳大利亚新南威尔士州北部的千层白千层蒸制而成的精油。它具有广谱抗菌活性和抗真菌活性。直到最近,TTO才显示出能够抑制多药耐药(MDR)人黑素瘤细胞的体外生长。已经提出,TTO对肿瘤细胞的作用可以通过其与质膜的相互作用来介导,最有可能通过诱导脂质结构的重组来介导。在本文中,我们报告了使用模拟脂质“筏”的简化平面模型膜(Langmuir膜)获得的生物物理和结构结果。我们还使用流式细胞仪分析(FCA)和冷冻断裂透射电子显微镜来研究TTO对实际MDR黑色素瘤细胞膜的影响。对脂质单层的热力学(压缩等温线和吸附动力学)和结构(布鲁斯特角显微镜)研究清楚地表明,TTO优先与较少有序的DPPC“海”相互作用,并且不会改变较有序的脂质“筏”。通过冷冻压裂进行的结构观察证实,TTO与MDR黑色素瘤细胞质膜相互作用。此外,FCA进行的实验表明TTO不会干扰MDR药物转运蛋白P-gp的功能。因此,我们建议对MDR黑色素瘤细胞施加的作用是通过与液体DPPC相的相互作用来介导的,而不是与更有组织的“筏”相互作用,并且这种相互作用优先影响可能独立于外界的P-gp的不依赖于ATP的抗凋亡活性“筏”。

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