Department of Sciences and Technologies, University of Sannio, Via Francesco de Sanctis, 82100 Benevento, Italy.
Department of Experimental and Clinical Biomedical Sciences, University of Florence, Viale Morgagni 50, 50134 Firenze, Italy.
Cells. 2022 Dec 10;11(24):3992. doi: 10.3390/cells11243992.
Oil production waste products (OPWPs) derive from olive mill and represent a crucial environmental problem due to their high polyphenolic content able to pollute the ground. One option to reduce the OPWPs' environmental impact is to exploit polyphenols' biological properties. We sought to analyze the transcriptomic variations of colorectal cancer cells exposed to the OPWPs extracts and hydroxytyrosol, the major component, to recognize unknown and ill-defined characteristics. Among the top affected pathways identified by GSEA, we focused on oxidative phosphorylation in an in vitro system. Colorectal cancer HCT116 and LoVo cells treated with hydroxytyrosol or OPWPs extracts showed enhancement of the respiratory chain complexes' protein levels, ATP production and membrane potential, suggesting stimulation of mitochondrial functions. The major proteins involved in mitochondrial biogenesis and fusion events of mitochondrial dynamics were positively affected, as by Western blot, fostering increase of the mitochondrial mass organized in a network of elongated organelles. Mechanistically, we proved that PPARγ mediates the effects as they are mimicked by a specific ligand and impaired by a specific inhibitor. OPWP extracts and hydroxytyrosol, thus, promote mitochondrial functionality via a feed-forward regulatory loop involving the PPARγ/PGC-1α axis. These results support their use in functional foods and as adjuvants in cancer therapy.
橄榄油生产废弃物(OPWPs)来源于橄榄油厂,由于其高多酚含量而成为一个重要的环境问题,能够污染土壤。利用多酚的生物特性来减少 OPWPs 对环境的影响是一种选择。我们试图分析暴露于 OPWPs 提取物和羟基酪醇(主要成分)的结肠癌细胞的转录组变化,以识别未知和未定义的特征。在 GSEA 确定的受影响最大的途径中,我们在体外系统中重点研究了氧化磷酸化。用羟基酪醇或 OPWPs 提取物处理的结肠癌细胞 HCT116 和 LoVo 显示呼吸链复合物蛋白水平、ATP 产生和膜电位增强,表明刺激了线粒体功能。涉及线粒体生物发生和线粒体动力学融合事件的主要蛋白质受到正向影响,如通过 Western blot 检测,促进了由拉长细胞器网络组成的线粒体质量的增加。从机制上讲,我们证明了 PPARγ 介导了这些作用,因为它们可以被特定的配体模拟,被特定的抑制剂破坏。因此,OPWPs 提取物和羟基酪醇通过涉及 PPARγ/PGC-1α 轴的正反馈调节环促进线粒体功能。这些结果支持将其用于功能性食品和癌症治疗的辅助剂。