Department of Biotechnology , Bangalore University , Jnana Bharathi Campus, Bengaluru 560 056 , India.
Department of Biochemistry , Indian Institute of Science , Bengaluru 560 012 , India.
J Agric Food Chem. 2018 Oct 31;66(43):11362-11371. doi: 10.1021/acs.jafc.8b04850. Epub 2018 Oct 19.
Lycopene (LYC) has been correlated with the reduction of certain cancers and chronic diseases. However, the existence and biofunctionality of degraded, oxidized, and biotransformed LYC products in vivo have not been revealed. Therefore, this study aimed to screen and elucidate the potential bioactive lycopene-derived products in breast-cancer and non-cancerous cells. LYC-oxidation or -cleavage products were generated using KMnO. These oxidation products were separated as fractions I-III by silica column chromatography using gradient solvent systems. Further, LC-MS/MS (ESI) was used to elucidate their possible fragmentation patterns and structures. Fraction II showed higher cytotoxicity (IC value of 64.5 μM), cellular uptake, and apoptosis-inducing activity in MCF-7 cells. This fraction consists of major peak m/ z 323, identified as apo-8,6'-carotendial. The cytotoxicity-inducing activity may be due to partial ROS generation with mitochondrial dysfunction. Further, the role of apo-8,6'-carotendial in the induction of apoptosis is demonstrated for the first time. These results illustrated that LYC-oxidation derivatives or metabolites are involved in growth inhibition of cancer cells. Exploration of specific oxidized-carotenoid products will give further insight into the field of nutritional biochemistry.
番茄红素(LYC)已被证实与降低某些癌症和慢性病的风险有关。然而,体内降解、氧化和生物转化的 LYC 产物的存在和生物功能尚未被揭示。因此,本研究旨在筛选和阐明乳腺癌和非癌细胞中潜在的生物活性番茄红素衍生产物。使用 KMnO4 生成 LYC 氧化或裂解产物。这些氧化产物通过硅胶柱层析使用梯度溶剂系统分离为三个馏分(I-III)。进一步,使用 LC-MS/MS(ESI)阐明其可能的碎片模式和结构。馏分 II 在 MCF-7 细胞中显示出更高的细胞毒性(IC 值为 64.5 μM)、细胞摄取和诱导细胞凋亡活性。该馏分包含主要峰 m/z 323,鉴定为 apo-8,6'-carotendial。细胞毒性诱导活性可能是由于线粒体功能障碍导致部分 ROS 生成。此外,apo-8,6'-carotendial 在诱导细胞凋亡中的作用首次得到证实。这些结果表明,LYC 氧化衍生物或代谢物参与癌细胞的生长抑制。对特定氧化类胡萝卜素产物的探索将进一步深入了解营养生物化学领域。