期刊文献+

蛋氨酸限制对高脂饮食小鼠骨骼的改善作用

Effects of Methionine Restriction on Bone of Mice Fed with High Fat Diet
下载PDF
导出
摘要 研究蛋氨酸限制对高脂饮食小鼠的股骨强度、氧化还原状态和微结构等骨骼生长状况的影响。将54只C57BL/6小鼠随机分为3组:正常对照组(4%脂肪+0.86%蛋氨酸,CON)、高脂组(20%脂肪+0.86%蛋氨酸,HF)与高脂蛋氨酸限制组(20%脂肪+0.17%蛋氨酸,MR)。分别饲喂11、22周后,测定小鼠股骨干重、骨长度、骨密度、骨矿物质含量、骨强度与氧化还原状态,观测22周小鼠的股骨微结构。结果显示:22周的MR小鼠体重与对照组接近;与HF组相比,MR组小鼠的股骨干重、骨长度与骨矿物质含量在11周后显著降低(P<0.05),但22周后上述指标均提高,与HF组、对照组接近(P>0.05),且骨矿物质含量显著高于HF组(P<0.05),骨小梁厚度与松质骨体积显著增加;尽管MR骨强度显著低于HF组,但单位体重骨强度在11周、22周后均显著高于HF组(P<0.05)。MR饮食改善了骨骼氧化还原状态(P<0.05),增加骨矿物质含量,使单位骨强度增加,骨性能提升。由此得出结论:长期MR饮食可控制体重,改善骨微结构与骨性能。 To investigate the effects of methionine restricted diet on the bone strength,redox state and femur microstructure of mice.54 mice(C57BL/6) were randomly divided into normal control group(4% fat,0.86% methionine,CON),high-fat group(20% fat,0.86% methionine,HF),and high-fat with methionine restriction(MR) group(20% fat,0.17% methionine,MR).After 11 and 22 weeks,the femur dry weight,femur length,bone mineral density,bone mineral content,bone strength of femur and redox state were determined,and the femoral micro-structures of 22 weeks mice were observed.Results showed that the weight of MR mice at 22 weeks was similar to that of CON group.Compared with HF group,the femur dry weight,femur length and bone mineral content in MR group decreased significantly at 11 weeks(P < 0.05),but increased to be similar to HF group and control group(P > 0.05) at 22 weeks,and the bone mineral content was significantly higher than HF group(P < 0.05),the trabecular thickness and cancellous bone volume increased significantly;although the bone strength of MR group was significantly lower than HF group,the bone strength/body weight at 11 and 22 weeks was higher than that of HF group(P < 0.05).MR diet improved the redox state of the bones(P < 0.05),increased the content of bone mineral,increased the bone strength/body weight and enhanced the bone quality.Conclusion:Long-term MR diet could control body weight,could improve the femoral micro-structure and the bone quality.
作者 郭海涛 王雅楠 张佳红 施用晖 乐国伟 GUO Haitao;WANG Yanan;ZHANG Jiahong;SHI Yonghui;LE Guowei(School of Food Science and Technology,Jiangnan University,Wuxi 214122,China;State Key Laboratory of Food Science and Technology,Jiangnan University,Wuxi 214122,China)
出处 《食品与生物技术学报》 CAS CSCD 北大核心 2019年第8期91-96,共6页 Journal of Food Science and Biotechnology
基金 国家“十二五”科技支撑计划项目(2012BAD33B05)
关键词 小鼠 蛋氨酸限制 股骨微结构 骨量 氧化还原状态 mice methionine restriction femoral micro-structure bone mass redox state
  • 相关文献

参考文献1

二级参考文献15

  • 1Xiao Y,Cui J,Li Y X,et al.Dyslipidemic high -fat diet affects adversely bone metabolism in mice associated with impaired anti oxidant capacity[J].Nutrition,2011,27(2):214-220.
  • 2Pirih F,Lu J,Ye F,et al.Adverse effects of hyperlipidemia on bone regeneration and strength[J].Journal of Bone and Mineral Research,2012,27(2):309-318.
  • 3Tian J,Dang H N,Yong J,et al.Oral treatment with γ-aminobutyric acid improves glucose tolerance and insulin sensitivity by inhibiting inflammation in high fat diet-fed mice[J].PloS One,2011,6(9):e25338.
  • 4Xie Z,Xia S,Le G W.Gamma-aminobutyric acid improves oxidative stress and function of the thyroid in high-fat diet fed mice[J].Journal of Functional Foods,2014(8):76-86.
  • 5Muhammad S I,Maznah I,Mahmud R,et al.Upregulation of genes related to bone formation by γ-amino butyric acid and γ-oryzanol in germinated brown rice is via the activation of GABAB -receptors and reduction of serum IL-6 in rats[J].Clinical Interventions in Aging,2013(8):1259.
  • 6Rojo A I,Sagarra M R,Cuadrado A.GSK -3βdown -regulates the transcription factor Nrf2 after oxidant damage:relevance to exposure of neuronal cells to oxidative stress[J].Journal of Neurochemistry,2008,105(1):192-202.
  • 7Jain A K,Jaiswal A K.GSK-3β acts upstream of Fyn kinase in regulation of nuclear export and degradation of NF-E2 related factor 2[J].Journal of Biological Chemistry,2007,282(22):16502-16510.
  • 8Lu F F,Su P,Liu F,et al.Activation of GABAB receptors inhibits protein kinase B/Glycogen Synthase Kinase 3 signaling[J].Molecular Brain,2012,5(1);41.
  • 9Takahata Y,Takarada T,Hinoi E,et al.Osteoblastic 7-aminobutyric acid,type B receptors negatively regulate osteoblastogenesis toward disturbance of osteoclastogenesis mediated by receptor activator of nuclear factor kB ligand in mouse bone[J].Journal of Biological Chemistry,2011,286(38):32906-32917.
  • 10Eastell R,Hannon R A.Biomarkers of bone health and osteoporosis risk[J].Proceedings of the Nutrition Society,2008,67:157-162.

共引文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部