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ISSN 1001-5256 (Print)
ISSN 2097-3497 (Online)
CN 22-1108/R
Issue 10
Oct.  2017
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Interaction between autophagy and lipid metabolism in cell models of nonalcoholic fatty liver disease

DOI: 10.3969/j.issn.1001-5256.2017.10.027
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  • Published Date: 2017-10-20
  • Objective To investigate the interaction between autophagy and lipid metabolism in nonalcoholic fatty liver disease ( NAFLD) .Methods Human hepatocytes ( steatosis) were cultured in vitro to establish a cell model of NAFLD. Rapamycin was used to induce autophagy and 3-methyladenine was used to inhibit autophagy. MTT colorimetry was used to measure cell viability. ELISA was used to measure the levels of triglyceride ( TG) , alanine aminotransferase ( ALT) , aspartate aminotransferase ( AST) , lactate dehydrogenase ( LDH) , gamma-glutamyl transpeptidase ( GGT) , and albumin ( Alb) . IF method was used to determine the location and distribution of LC3-II. Western blot was used to measure LC3-II/LC3-I ratio. An analysis of variance was used for comparison of continuous data between groups, and the SNK-q test was used for further comparison between two groups. Results Compared with the steatosis group, the induced autophagy group had significant reductions in absorbance and cell viability ( HL-7702 cells: q = 4. 160 and 4. 110, P < 0. 05; SK-HEP-1 cells: q = 4. 407 and 4. 032, P < 0. 05) . Compared with the control group, the steatosis group had significant increases in the levels of TG, ALT, AST, LDH, GGT, and Alb ( HL-7702 cells: q = 5. 316, 3. 730, 4. 013, 6. 967, 6. 192, and 5. 531, P < 0. 05; SK-HEP-1 cells: q = 4. 963, 3. 603, 4. 774, 7. 479, 6. 319, and 5. 193, P < 0. 05) . Compared with the steatosis group, the induced autophagy group had significant reductions in the levels of TG, ALT, AST, LDH, GGT, and Alb ( HL-7702 cells: q = 4. 978, 3. 695, 3. 960, 5. 130, 4. 695, and 3. 192, P < 0. 05; SK-HEP-1 cells: q = 3. 846, 5. 575, 4. 184, 5. 019, 4. 203, 3. 049, P < 0. 05) . The induced autophagy group had the highest percentage of LC3-II-positive HL-7702 cells ( 90. 1%) and LC3-II-positive SK-HEP-1 cells ( 80. 0%) , followed by the steatosis group ( 47. 2% LC3-II-positive HL-7702 cells and 48. 4% LC3-II-positive SK-HEP-1 cells) and the autophagy inhibition group ( 30. 2% LC3-II-positive HL-7702 cells and 45. 5% LC3-II-positive SK-HEP-1 cells) . The induced autophagy group had a significant increase in LC3-II/IC3-I ratio compared with the steatosis group ( HL-7702 cells: q = 6. 786, P < 0. 05;SK-HEP-1 cells: q = 5. 926, P < 0. 05) . Conclusion Upregulation of autophagy can promote the elimination of liver fat, while downregulation of autophagy can promote lipid accumulation.

     

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  • [1]CHANG BX, ZOU ZS, LI BS, et al.2015 The Japanese Society of Gastroenterology of Evidence-based clinical practice guidelines for nonalcoholic fatty liver disease/nonalcoholic steatohepatitis[J].J Clin Hepatol, 2015, 31 (7) :1027-1030. (in Chinese) 常彬霞, 邹正升, 李宝森, 等.2015年日本胃肠病学会非酒精性脂肪肝病/非酒精性脂肪肝炎的循证医学临床治疗指南[J].临床肝胆病杂志, 2015, 31 (7) :1027-1030.
    [2]MESHKANI R, ADELI K.Hepatic insulin resistance, metabolic syndrome and cardiovascular disease[J].Clin Biochem, 2009, 42 (6) :1331-1346.
    [3]GREEN DR, LEVINE B.To be or not to be?How selective autophagy and cell death govern death cell fate[J].Cell, 2014, 157 (1) :65-75.
    [4]MARTINEZ-LOPEZ N, SINGH R.Autophagy and lipid droplets in the liver[J].Annu Rev Nutr, 2015, 35:215-237.
    [5]ESKELINEN EL, SAFTIG P.Autophagy:a lysosomal degradation pathway with a central role in health and disease[J].Biochim Biophys Acta, 2009, 1793 (4) :664-673.
    [6]HIROSAKO K, IMASATO H, HIROTA Y, et al.3-Methyladenine specifically inhibits retrograde transport of cation-independent mannose 6-phosphate/insulin-like growth factor II receptor from the early endosome to the TGN[J].Biochem Biophys Res Commun, 2004, 316 (3) :845-852.
    [7]ROSENFELDT MT, RYAN KM.The multiple roles of autophagy in cancer[J].Carcinoqenesis, 2011, 32 (7) :955-963.
    [8]MIJALJICA D, PRESCOTT M, DEVENISH RJ.Autophagy in disease[J].Methods Mol Biol, 2010, 648:79-92.
    [9]CZAJA MJ.Autophagy in health and disease.2.Regulation of lipid metabolism and storage by autophagy:pathophysiological implications[J].Am J Physiol Cell Physiol, 2010, 298 (5) :c973-c978.
    [10]MARTINEZ-VICENTE M, TALLOCZY Z, WONG E, et al.Cargo recognition failure is responsible for inefficient autophagy in Huntington's disease[J].Nat Neurosci, 2010, 13 (5) :567-576.
    [11]YOSHIZAKI T, KUSUNOKI C, KONDO M, et al.Autophagy regulates inflammation in adipocytes[J].Biochem Biophys Res Commun, 2012, 417 (1) :352-357.
    [12]CHRISTIAN P, SACCO J, ADELI K.Autophagy:emerging roles in lipid homeostasis and metabolic control[J].Biochim Biophys Acta, 2013, 1831 (4) :819-824.
    [13]KIMURA S, FUJITA N, NODA T, et al.Monitoring autophagy inmammalian cultured cells through the dynamics of LC3[J].Methods Enzymol, 2009, 452:1-12.
    [14]KADOWAKI M, KARIM MR.Cytosolic LC3 ratio as a quantitative index of macroautophagy[J].Methods Enzymol, 2009, 452:199-213.
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