华南预防医学 ›› 2013, Vol. 39 ›› Issue (3): 1-6.doi: 10.13217/j.scjpm.2013.01.001

• 论著 •    下一篇

甜菜碱对脂肪变性HepG2细胞Hcy、SAM/SAH及脂代谢相关基因mRNA表达的影响

陈力,王丽君,谭耀宗,周静雅,朱惠莲   

  1. 中山大学公共卫生学院,广东 广州510080
  • 收稿日期:2013-03-13 出版日期:2013-06-20 发布日期:2014-01-26
  • 通讯作者: 朱惠莲 E-mail:zhuhl@mail.sysu.edu.cn
  • 作者简介:陈力(1986—),女,在读硕士研究生,研究方向:营养与慢病
  • 基金资助:
    国家自然科学基金(编号:81273050?81072302);达能营养中心膳食营养研究与宣教基金(2011)

Effect of betaine on homocysteine concentration, SAM/SAH ratio and lipid metabolism related genes mRNA expression in steatotic HepG2 cells

CHEN Li, WANG Li-jun, TANG Yao-zong, ZHOU Jing-ya, ZHU Hui-lian   

  1. Nutrition and Food Hygiene Faculty of Public School, Sun Yat Sen University
  • Received:2013-03-13 Online:2013-06-20 Published:2014-01-26
  • Contact: ZHU Hui-lian E-mail:zhuhl@mail.sysu.edu.cn

摘要: 目的 探讨甜菜碱对脂肪变性HepG2细胞同型半胱氨酸(Hcy)水平、S-腺苷蛋氨酸/S-腺苷同型半胱氨酸(SAM/SAH)比值及脂代谢相关基因mRNA表达的影响。方法 60 mg/L油酸作用24 h诱导非酒精性脂肪变性HepG2细胞模型,分别按脂肪变性模型组、2.5、5、10 mmol/L甜菜碱组进行干预,同时设空白对照组,每组设3个复孔。各组细胞培养24 h后油红O-苏木素染色观察细胞脂滴形成情况,酶法测定甘油三酯( TG )浓度,高效液相色谱法(HPLC)测定Hcy浓度和SAM/SAH比值,RT-PCR检测MTP、APOB及DGAT2 mRNA的表达。结果 与空白对照组比较,脂肪变性模型组的培养基中Hcy浓度上升( P < 0.05 );而甜菜碱各剂量组与空白对照组比较则差异均无统计学意义( 均P > 0.05 )。与空白对照组比较,脂肪变性模型组的细胞内和培养基中TG浓度上升( 均P < 0.01 );细胞内的SAM/SAH比值( P < 0.05 )、APOB的mRNA水平( P < 0.01 )均下降。与脂肪变性模型组的比较,2.5和10mmol/L甜菜碱组细胞内TG浓度均有所增加( 均P < 0.05 ),5 mmol/L甜菜碱组培养基中TG浓度有所增加( P < 0.01 );10 mmol/L甜菜碱组的SAM/SAH比值明显上升( P < 0.01 );5、10 mmol/L甜菜碱组的APOB mRNA水平明显上升( 均P < 0.01 );甜菜碱各剂量组中DAGT2的mRNA表达水平均有所上升( 均P < 0.05 )。结论 甜菜碱能降低脂肪变性HepG2细胞培养基Hcy的浓度,增高细胞内SAM/SAH比值,增加APOB的mRNA表达,可能提高细胞脂质清除能力,但同时增加了DGAT2 mRNA的表达,可能促进TG合成。

Abstract: Objective To observe the effects of betaine on the Hcy concentration, SAM/SAH ratio , and the RNA expression of lipid metabolism related genes in steatotic hepatocytes. Methods A hepatocyte steatosis model was established using 60 mg/L oleic acid and HepG2 cells. Steatosis HepG2cells were cultured in medium containing 0, 2.5, 5, and 10 mmol/L betaine for 24 h, respectively. The control group was cultured in regular medium containing no oleic acid and betaine. There were 3 subunits of every group. Lipid droplets in hepatocytes were observed after oil red O-hematoxylin staining. TG concentration was determined by enzymic method. Hcy level and SAM/SAH ratio were detected by HPLC while the expression of APOB, MTP, and DGAT2 mRNA were detected by RT-PCR. Results Compared with the control group, the model cells had higher Hcy in the medium (P<0.05), and higher TG was observed in both cells and medium (P<0.01). But the cellular SAM/SAH (P<0.05) and APOB mRNA expression (P<0.01) was lower. Compared with the model group, the 2.5 and 10 mmol/L betaine groups had higher TG incells (all P<0.05), while the 5 mmol/L betaine group had higher TG in medium (P<0.01). The SAM/SAH ratio in 10 mmol/L betaine group and the APOB mRNA expression in 5 and 10 mmol/L betaine groups were increased compared with the model cells (all P<0.01). The DGAT2 mRNA expression was higher in betaine groups than both the control group and model group (all P<0.05). Conclusion Betaine can decrease Hcy concentration in the steatotic hepatocytes’ medium and increase SAM/SAH ratio steatotic hepatocytes. Betaine enhanced TG excretion by increasing the APOB mRNA expression. Simultaneously, betaine increased the DGAT2 mRNA expression, which might increase the synthesis of TG.

中图分类号: 

  • R589.2