Department of Biomedical Sciences, Toxicology Research Cluster, Marshall University Joan C. Edwards School of Medicine, Huntington, WV 25701, United States.
Department of Biomedical Sciences, Toxicology Research Cluster, Marshall University Joan C. Edwards School of Medicine, Huntington, WV 25701, United States.
Biomed Pharmacother. 2024 Jun;175:116666. doi: 10.1016/j.biopha.2024.116666. Epub 2024 Apr 27.
Flavored e-liquid use has become popular among e-cigarette users recently, but the effects of such products outside the lung are not well characterized. In this work, acute exposure to the popular flavoring cinnamaldehyde (CIN) was performed on human proximal tubule (HK-2) kidney cells. Cells were exposed to 0-100 µM CIN for 24-48 h and cellular stress responses were assessed. Mitochondrial viability via MTT assay was significantly decreased at 20 µM for 24 and 48 h exposure. Seahorse XFp analysis showed significantly decreased mitochondrial energy output at 20 µM by 24 h exposure, in addition to significantly reduced ATP Synthase expression. Seahorse analysis also revealed significantly decreased glycolytic function at 20 µM by 24 h exposure, suggesting inability of glycolytic processes to compensate for reduced mitochondrial energy output. Cleaved caspase-3 expression, a mediator of apoptosis, was significantly increased at the 24 h mark. C/EBP homologous protein (CHOP) expression, a mediator of ER-induced apoptosis, was induced by 48 h and subsequently lost at the highest concentration of 100 µM. This decrease was accompanied by a simultaneous decrease in its downstream target cleaved caspase-3 at the 48 h mark. The autophagy marker microtubule-associated protein 1 A/1B light chain 3 (LC3B-I and LC3B-II) expression was significantly increased at 100 µM by 24 h. Autophagy-related 7 (ATG7) protein and mitophagy-related proteins PTEN-induced putative kinase 1 (PINK1) and PARKIN expression were significantly reduced at 24 and 48 h exposure. These results indicate acute exposure to CIN in the kidney HK-2 model induces mitochondrial dysfunction and cellular stress responses.
调味电子烟液在电子烟使用者中越来越受欢迎,但此类产品对肺部以外器官的影响尚未得到充分研究。在这项工作中,我们对人体近端肾小管(HK-2)细胞进行了急性肉桂醛(CIN)暴露实验。将细胞暴露于 0-100µM 的 CIN 中 24-48 小时,评估细胞应激反应。MTT 检测显示,24 小时和 48 小时暴露于 20µM 的 CIN 可显著降低细胞线粒体活力。 Seahorse XFp 分析显示,24 小时暴露于 20µM 的 CIN 可显著降低线粒体能量输出,同时还显著降低 ATP 合酶表达。 Seahorse 分析还表明,24 小时暴露于 20µM 的 CIN 可显著降低糖酵解功能,表明糖酵解过程无法补偿减少的线粒体能量输出。凋亡介质 cleaved caspase-3 的表达在 24 小时标记时显著增加。内质网诱导凋亡的介质 C/EBP 同源蛋白(CHOP)的表达在 48 小时时被诱导,并在最高浓度 100µM 时丢失。这种减少伴随着其下游靶标 cleaved caspase-3 在 48 小时标记时的同时减少。自噬标志物微管相关蛋白 1A/1B 轻链 3(LC3B-I 和 LC3B-II)的表达在 24 小时时在 100µM 时显著增加。自噬相关蛋白 7(ATG7)和线粒体自噬相关蛋白 PTEN 诱导的假定激酶 1(PINK1)和 PARKIN 的表达在 24 小时和 48 小时暴露时均显著降低。这些结果表明,急性 CIN 暴露在肾脏 HK-2 模型中可诱导线粒体功能障碍和细胞应激反应。