Department of Medical Microbiology, School of Medicine, Wuhan University, Wuhan 430071, People's Republic of China.
Food Chem Toxicol. 2013 Sep;59:428-37. doi: 10.1016/j.fct.2013.06.025. Epub 2013 Jun 26.
Urolithins were the metabolites of ellagic acid by intestinal flora in gastrointestinal tract. In previous research, it was found that urolithins could mainly inhibit prostate cancer and colon cancer cell growth. However, there is no report about bladder cancer therapy of urolithins. In this paper, three urolithin-type compounds (urolithin A, urolithin B, 8-OMe-urolithin A) and ellagic acid were evaluated for antiproliferative activity in vitro against human bladder cancer cell lines T24. The IC₅₀ values for T24 cell inhibition were 43.9, 35.2, 46.3 and 33.7 μM for urolithin A, urolithin B, 8-OMe-urolithin A and ellagic acid, respectively. After the administration of urolithins and ellagic acid, we found these compounds could increase mRNA and protein expression of Phospho-p38 MAPK, and decrease mRNA and protein expression of MEKK1 and Phospho-c-Jun in T24 cells. Caspase-3 was also activated and PPAR-γ protein expression increased in drug-induced apoptosis. And what's more, the antioxidant assay afforded by three urolithins and EA treatments were associated with decreases in the intracellular ROS and MDA levels, and increased SOD activity in H₂O₂-treated T24 cells. The results suggested that these compounds could inhibit cell proliferation by p38-MAPK and/or c-Jun medicated caspase-3 activation and reduce the oxidative stress status in bladder cancer.
原花青素是肠道菌群在胃肠道中代谢鞣花酸的产物。在之前的研究中,发现原花青素主要可以抑制前列腺癌和结肠癌细胞的生长。然而,目前还没有关于原花青素治疗膀胱癌的报道。本文评估了三种原花青素类化合物(原花青素 A、原花青素 B、8-OMe-原花青素 A)和鞣花酸对体外人膀胱癌 T24 细胞系的增殖活性。T24 细胞抑制的 IC₅₀ 值分别为 43.9、35.2、46.3 和 33.7 μM 用于原花青素 A、原花青素 B、8-OMe-原花青素 A 和鞣花酸。在给予原花青素和鞣花酸后,我们发现这些化合物可以增加 T24 细胞中磷酸化 p38 MAPK 的 mRNA 和蛋白表达,降低 MEKK1 和磷酸化 c-Jun 的 mRNA 和蛋白表达。Caspase-3 也被激活,药物诱导的细胞凋亡中 PPAR-γ 蛋白表达增加。此外,三种原花青素和 EA 处理的抗氧化测定与 H₂O₂处理的 T24 细胞中细胞内 ROS 和 MDA 水平降低以及 SOD 活性增加有关。结果表明,这些化合物可以通过 p38-MAPK 和/或 c-Jun 介导的 caspase-3 激活抑制细胞增殖,并降低膀胱癌中的氧化应激状态。