基础医学与临床 ›› 2009, Vol. 29 ›› Issue (1): 52-58.

• 研究论文 • 上一篇    下一篇

槲皮素对小鼠体内和体外NIH-3T3细胞的抗氧化作用及其机理

宫璀璀 郑乃刚 吴景兰 何培霞 王一菱   

  1. 中国人民解放军第153医院检验中心 郑州大学分子细胞生物学研究中心 郑州大学分子细胞生物学研究中心 中国人民解放军第153医院检验中心 郑州大学分子细胞生物学研究中心
  • 收稿日期:2008-04-21 修回日期:2008-07-18 出版日期:2009-01-25 发布日期:2009-01-25
  • 通讯作者: 宫璀璀

Effect and its underlying mechanism of antioxidant quercetin in the mice in vivo and NIH-3T3 cells in vitro

Cui-cui GONG, Nai-gang ZHENG, Jing-lan WU, Pei-xia HE, Yi-ling WANG   

  1. Laboratory Medicine Center, the PLA No. 153 Hospital Molecular Cell Biology Research Center, Zhengzhou University Molecular Cell Biology Research Center, Zhengzhou University Laboratory Medicine Center, the PLA No. 153 Hospital Molecular Cell Biology Research Center, Zhengzhou University
  • Received:2008-04-21 Revised:2008-07-18 Online:2009-01-25 Published:2009-01-25
  • Contact: Cui-cui GONG,

摘要: 目的 比较槲皮素对小鼠体内和体外H2O2处理前/后的NIH-3T3细胞抗氧化效应的差异并探讨其作用机理。方法 将NIH-3T3细胞分为4组,槲皮素前保护组(Qb):槲皮素后保护组(Qa):H2O2组 (H2O2)和对照组(C)。 用试剂盒检测细胞内T-AOC、SOD、GSH-Px、GSH、MDA、NOS和NO2-/NO3-的水平;MTT和TUNEL法检测细胞凋亡率和生存率;免疫印迹和免疫组化技术检测细胞的cyclin D1、PTEN、NF-kB、HSP-70、Bcl-2、Bax、 及caspase-3的表达。另将20只Wistar大鼠等分为对照组和实验组,检测槲皮素灌胃前、后1、2及24h血浆内T-AOC、SOD、GSH-Px、GSH、MDA、NOS和NO2-/NO3-的水平。结果H2O2组细胞凋亡率增高,cyclin D1、PTEN及Bcl-2的表达下调;Bax、HSP-70、NF-kB及caspase-3的表达上调;T-AOC,SOD,GSH-Px及GSH水平降低,NOS、NO2-/NO3-及MDA增高。动物灌胃后1h/2h血浆中T-AOC、SOD、GSH-Px、GSH,NOS及NO2-/NO3-的水平增高,MDA降低;24h后基本恢复。结论 槲皮素在体内外皆可通过调节抗氧化酶体系发挥抗氧化作用,其效应依据H2O2处理与否和处理前/后等细胞的异质性而呈现一定差异。

Abstract: Objective To compare the difference in quercetin against oxidative stress response between in mouse plasma and in H2O2-pre-/post-treated NIH-3T3 cells, and to explore the underlying mechanism for the quercetin antioxidant. Methods The cultured NIH-3T3 cells were randomly divided into 4 groups: quercetin (Q) pre-protective group (Qb) firstly treated with quercetin for 24h followed by incubation with H2O2 for 30 min; post- protective group (Qa) firstly treated with H2O2 for 30 min followed by incubation with quercetin for 24h; H2O2 group (H2O2) after exposure with H2O2 for 30 min, incubated with DMEM medium and the control group (C) only cultured with DMEM medium. The survival rate and apoptotic rate were detected respectively with MTT and TUNEL in NIH-3T3 cell suspension samples. The expression of cyclin D1, PTEN, NF-kB, HSP-70, Bcl-2, Bax and caspase-3 was examined with immunocytochemistry and immunoblotting. Besides, 20 Wistar rats were divided into control group and experimental group, the latter was given with quercetin in the doze of 0.13mmol/kg. The levels of T-AOC,SOD,GSH-Px,GSH,MDA, NOS and NO2-/NO3- were detected both in the cleaved NIH-3T3 cells in vitro and in the plasma in vivo from both experimental and control animals prior to and post-1 h, 2h and after 24 h. Results When the Qb group was compared with H2O2 or Qa group, the survival rate was higher and the apoptotic rate was lower. When the H2O2 group was compared with C group,the expression of cyclin D1、PTEN or Bcl-2 was down-regulated;while that of Bax、HSP-70、NF-kB or caspase-3 was up-regulated; the level of T-AOC,SOD,GSH-Px or GSH was decreased; that of NOS、NO2-/NO3- or MDA enhanced in the cleft NIH-3T3 cells. When the Qb group was compared with Qa or H2O2 group, the reversed H2O2 effects, especially elevated the decreased A-TOC and GSH-Px and depressed the enhanced MDA effects by H2O2, were more marked. When the plasma level of the anti-oxidative enzyme system prior to- compared with post-1h and 2h-treatment with Q, the level of T-AOC, SOD, GSH-Px and GSH, especially the former two, were higher; MDA, lower; NOS or NO2-/NO3- promoted. However, the above parameters basically became normal 24h after treatment with Q. Conclusions Quercetin could down-regulate the promoted expression of HSP70, NOS, NO2-/NO3- and NF-kB etc. in H2O2-treatment NIH-3T3 cells. Qb could reverse the H2O2 damage effects more markedly, including up-regulation of PTEN expression, inhibiting PI3k/Akt signal transduction, inactivating NF-kB expression, and depressing Bcl2/Bax ratio and apoptosis through modulating cyclin D1 expression level. Moreover, the quercetin could exert anti-oxidant protective effect through modulating the anti-oxidative enzyme system both in vivo and in vitro. However, based on the cell heterogeneity in none- or pre/post-H2O2-treatment state, a difference in quercetin antioxidant response exhibited.