Bavel Nicolas Van, Lai Patrick, Loebenberg Raimar, Prenner Elmar J
Department of Biological Sciences, University of Calgary, Calgary, AB, T2N 1N4, Canada.
Current address: Rane Pharmaceuticals, Edmonton, AB, T6E 5V2, Canada.
Nanomedicine (Lond). 2022 Dec;17(30):2231-2243. doi: 10.2217/nnm-2022-0232. Epub 2023 Feb 28.
Vaping has given rise to e-cigarette or vaping product use-associated lung injury. Model lung surfactant films were used to assess the impact of vape additives (vitamin E, vitamin E acetate, tetrahydrocannabinol, cannabidiol). This work builds upon our previous findings, by incorporating cholesterol, to understand the interplay between the additives and the sterol in surfactant function. Compression-expansion cycles of lipid monofilm at the air-water interface and Brewster angle microscopy allowed elucidating the effects of vape additives. Vape additives at 5 mol% inhibited proper lipid packing and reduced film stability. Cholesterol enhanced the additive effects, resulting in significantly destabilized films and altered domains. The observed impact could signify dysfunctional lung surfactant and impaired lung function.
吸电子烟已引发与电子烟或电子烟产品使用相关的肺损伤。使用模型肺表面活性剂膜来评估电子烟添加剂(维生素E、维生素E醋酸酯、四氢大麻酚、大麻二酚)的影响。这项工作基于我们之前的研究结果,通过加入胆固醇来了解添加剂与表面活性剂功能中甾醇之间的相互作用。气-水界面脂质单分子膜的压缩-膨胀循环和布鲁斯特角显微镜技术有助于阐明电子烟添加剂的作用。5摩尔%的电子烟添加剂会抑制脂质的正常堆积并降低膜的稳定性。胆固醇增强了添加剂的作用,导致膜显著不稳定并改变了区域。观察到的影响可能意味着肺表面活性剂功能失调和肺功能受损。