| 硫辛酸对高脂日粮小鼠脂代谢紊乱及氧化应激的调节作用
| Effects of Lipoic Acid on Lipid Metabolism Disorder and Oxidative Stress on Mice Feed High-Fat Diet
|
| DOI:10.3969/j.issn.1673-1689.2013.06.009
| 中文关键词: 高脂 硫辛酸 氧化应激 脂质代谢 肉碱棕榈酰转移酶 载脂蛋白
| 英文关键词: high fat LA oxidative stress lipid metabolism ApoE Cpt1a
| 基金项目:国家“十二五”科技支撑计划项目(2012BAD33B05)
| 作者
| 单位
| 李龙囡
| 江南大学食品学院,江苏无锡,214122
| 王艳艳
| 江南大学食品学院,江苏无锡,214122
| 尹彩娜
| 江南大学食品学院,江苏无锡,214122
| 王舒平
| 江南大学食品学院,江苏无锡,214122
| 孙进
| 江南大学食品学院,江苏无锡,214122
| 乐国伟
| 食品科学与技术国家重点实验室,江南大学,江苏无锡214122
江南大学食品学院,江苏无锡214122
| 施用晖
| 食品科学与技术国家重点实验室,江南大学,江苏无锡214122
江南大学食品学院,江苏无锡214122
|
| 摘要点击次数: 260
| 全文下载次数: 765
| 中文摘要:
| 为了研究硫辛酸(lipoic acid,LA)对高脂日粮小鼠体内氧化应激、脂类代谢及相关基因表达的影响。采用40只C57BL/6雄性小鼠,随机分为4组:对照组(正常日粮),高脂组(高脂日粮,含20%脂肪),LA组(高脂饲料分别添加0.05%、0.10%LA)。6周后测定小鼠血脂及血浆脂酶水平,全血、消化道及肝脏组织自由基(ROS)水平及肝脏抗氧化酶活性,并采用RT-PCR检测小鼠肝脏Cpt1a及ApoE的表达。结果表明,高脂日粮导致小鼠血脂显著升高、血浆脂蛋白脂酶(LPL)及肝脂酶(HL)活性显著降低(P
| 英文摘要:
| To explore the effects of lipoic acid(LA) on oxidative stress,the lipid metabolism,and the expression of related gene.C57BL / 6 were randomly divided into four groups,control group,high fat group(HF) and LA group(high fat plus 0.05%LA and 0.1%LA respectively).After 6 weeks,the lipid level,the activity of lipoproteinlipase(LPL) and hepaticlipase(HL) in plasma were determined.Reactive oxygen species(ROS) and the oxidative stress indices of whole blood,gastrointestinal system and liver were also examined.The expressions of ApoE and Cpt1a were analyzed by RT-PCR.Plasma lipid level significantly increased while the activity of LPL and HL significantly declined as induced by high fat diet,and all of them recovered when LA was added.In comparison to control,the ROS and MDA markedly increased while the antioxidant enzymes decreased in HF group,LA group showed the similar trend like control.The expression of Cpt1a decreased and ApoE increased in HF group,while LA group reserved all the changes above.Oxidative stress and lipid metabolism disorder were observed in mice feed high fat diet.LA can improve liver function by altering lipid metabolism through scavenging reactive oxygen species
| 查看全文 查看/发表评论 下载PDF阅读器
|
|