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黄腐酚可减轻HT29原发性结肠癌细胞中的炎症并降低细胞代谢。

Xanthohumol reduces inflammation and cell metabolism in HT29 primary colon cancer cells.

作者信息

Torrens-Mas Margalida, Alorda-Clara Marina, Martínez-Vigara Maria, Roca Pilar, Sastre-Serra Jorge, Oliver Jordi, Pons Daniel Gabriel

机构信息

Translational Research in Aging and Longevity (TRIAL) Group, Vascular and Metabolic Pathologies Group, Instituto de Investigación Sanitaria de las Islas Baleares (IdISBa), Palma, Spain.

Grupo Multidisciplinar de Oncología Traslacional, Institut Universitari d'Investigació en Ciències de la Salut (IUNICS) Universitat de les Illes Balears, Palma, Spain.

出版信息

Int J Food Sci Nutr. 2022 Jun;73(4):471-479. doi: 10.1080/09637486.2021.2012561. Epub 2021 Dec 8.

Abstract

Xanthohumol (XN) is a prenylated flavonoid known for its antioxidant and anti-inflammatory effects and has been studied as an anti-cancer agent. In this study, we aimed at analysing the effect of XN on a primary colorectal adenocarcinoma cell line, HT29, on cell viability, inflammatory and antioxidant gene expression, and metabolism. For this purpose, cells were treated with 10 nM and 10 µM XN, and cell viability, HO production, lipid peroxidation and gene expression of inflammatory, antioxidant, and mitochondrial-related genes, as well as protein levels of metabolic enzymes, were determined. Results showed no significant effects on cell viability and a general decrease in pro-inflammatory, antioxidant and mitochondrial biogenesis gene expression with the lower concentration of XN. Furthermore, glucose and oxidative metabolism enzymes were also reduced. These results suggest that XN treatment, at low doses, could stop the proliferation and progression of HT29 cells by downregulating inflammatory signals and cell metabolism.

摘要

黄腐酚(XN)是一种异戊烯基黄酮,以其抗氧化和抗炎作用而闻名,并且已作为一种抗癌剂进行研究。在本研究中,我们旨在分析XN对原发性结肠直肠腺癌细胞系HT29的细胞活力、炎症和抗氧化基因表达以及代谢的影响。为此,用10 nM和10 μM的XN处理细胞,并测定细胞活力、HO产生、脂质过氧化以及炎症、抗氧化和线粒体相关基因的表达,以及代谢酶的蛋白质水平。结果表明,对细胞活力无显著影响,且较低浓度的XN可使促炎、抗氧化和线粒体生物发生基因表达普遍下降。此外,葡萄糖和氧化代谢酶也减少。这些结果表明,低剂量的XN处理可通过下调炎症信号和细胞代谢来阻止HT29细胞的增殖和进展。

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