Beta-Caryophyllene Induces Significant Changes in the Lipid Bilayer at Room and Physiological Temperatures: ATR-FTIR Spectroscopy Studies

I. Yakimov, I. Kolmogorov, I. Le-Deygen
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Abstract

Beta-caryophyllene (BCP) is a natural bicyclic sesquiterpene with high biological activity. Potentially, it can be used in the treatment of a wide range of neurological diseases. However, to date, there are practically no data on the interaction of BCP with biological membranes. In the present work, we studied for the first time the interaction of BCP with model membranes—liposomes based on egg yolk phosphatidylcholine (Egg PC) with a variable cholesterol content (from 0 to 25 w.%). Using ATR-FTIR spectroscopy, we have shown that the membrane rigidity and cholesterol content dramatically affect the nature of the interaction of BCP with the bilayer both at room temperature and at physiological temperatures. The incorporation of BCP into the thickness of the bilayer leads to changes in the subpolar region of the bilayer, and at a high cholesterol content, it can provoke the formation of defects in the membrane.
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β-石竹烯在室温和生理温度下诱导脂质双层发生显著变化的ATR-FTIR光谱研究
β-石竹烯(BCP)是一种具有较高生物活性的天然双环倍半萜。它有可能用于治疗广泛的神经系统疾病。然而,到目前为止,实际上还没有关于BCP与生物膜相互作用的数据。在本工作中,我们首次研究了BCP与模型膜的相互作用——基于蛋黄磷脂酰胆碱(egg PC)的脂质体,其胆固醇含量可变(从0到25wt%),我们已经表明,在室温和生理温度下,膜刚性和胆固醇含量显著影响BCP与双层相互作用的性质。BCP结合到双层的厚度中导致双层的亚极区发生变化,并且在高胆固醇含量下,它可以引起膜中缺陷的形成。
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