Kim Mi K, Jung Hye S, Yoon Chang S, Ko Jeong H, Chun Hye J, Kim Tae K, Kwon Min J, Lee Soon H, Koh Kyung S, Rhee Byung D, Park Jeong H
Department of Internal Medicine, Maryknoll Medical Center, Inje University, Pusanjin-Gu, Busan, South Korea.
Front Biosci (Elite Ed). 2010 Jun 1;2(3):810-7. doi: 10.2741/e142.
EGCG and quercetin are known as beneficial dietary flavonoid for various diseases including diabetes mellitus. But it is not certain whether they could protect pancreatic beta cell directly. We performed this study to test both EGCG and quercetin could directly protect beta cell line under oxidative stress, and verify the action mechanisms. The protective effect of quercetin on INS-1 cells against oxidative stress was concentration dependent, but EGCG showed specific concentration zone for the protection. The protective effect of EGCG was more pronounced in pre-treatment before oxidative stress, while quercetin showed dramatic improvement of viability in simultaneous incubation with H2O2. In EGCG pre-treatment, antioxidant enzymes and activity were decreased, but the phosphorylated PI3K and Akt were significantly increased. PI3K inhibitor significantly reduced cell viability in EGCG pre-treatment. In conclusion, EGCG and quercetin have protective effect on INS-1 cells against oxidative stress through both antioxidant effect and anti-apoptosis signaling. In EGCG, pre-treatment make its effect better by the enhancement of anti-apoptosis signaling. Quercetin protected INS-1 cells more in simultaneous incubation via strong antioxidant defense.
表没食子儿茶素没食子酸酯(EGCG)和槲皮素是已知的对包括糖尿病在内的各种疾病有益的膳食类黄酮。但它们是否能直接保护胰腺β细胞尚不确定。我们开展这项研究以测试EGCG和槲皮素能否在氧化应激下直接保护β细胞系,并验证其作用机制。槲皮素对INS-1细胞抗氧化应激的保护作用呈浓度依赖性,但EGCG显示出特定的保护浓度区间。EGCG的保护作用在氧化应激前预处理时更为明显,而槲皮素在与过氧化氢同时孵育时细胞活力有显著改善。在EGCG预处理中,抗氧化酶及其活性降低,但磷酸化的PI3K和Akt显著增加。PI3K抑制剂显著降低了EGCG预处理时的细胞活力。总之,EGCG和槲皮素通过抗氧化作用和抗凋亡信号传导对INS-1细胞抗氧化应激具有保护作用。在EGCG中,预处理通过增强抗凋亡信号传导使其效果更好。槲皮素通过强大的抗氧化防御在同时孵育时对INS-1细胞的保护作用更强。