TY - JOUR
T1 - Transgenic Overexpression of CTRP3 Prevents Alcohol-Induced Hepatic Triglyceride Accumulation
AU - Trogen, Greta
AU - Bacon, Joshua
AU - Li, Ying
AU - Wright, Gary L.
AU - Degroat, Ashley
AU - Hagood, Kendra L.
AU - Warren, Zachary
AU - Forsman, Allan
AU - Kilaru, Aruna
AU - Clark, W. Andrew
AU - Peterson, Jonathan M.
PY - 2018/5/15
Y1 - 2018/5/15
N2 - This study tested the ability of a novel adipose tissue derived cytokine, C1q TNF Related Protein 3 (CTRP3), to prevent alcohol-induced hepatic lipid accumulation, or alcoholic fatty liver disease (ALD). Previous work has demonstrated that CTRP3 is effective at preventing high fat diet-induced fatty liver, however, the potential of CTRP3 to inhibit ALD has not been explored. To test the potential protective effects of CTRP3, transgenic mice overexpressing CTRP3 (Tg) or wildtype littermates (WT) were subjected to one of two different models of ALD. In the first model, known as the NIAAA model, mice were fed control or alcohol-containing liquid diets (5% v/v) for 10 days followed by a single gavage of ethanol (5 g/kg). In the second model, the chronic model, mice were fed control or alcohol-containing diets for 6 weeks with no gavage. This study found that CTRP3 reduced triglyceride accumulation in the chronic model of alcohol consumption by ~50%, whereas no reduction was observed in the NIAAA model. Further analysis of isolated primary hepatocytes from WT and Tg mice demonstrated that CTRP3 increased oxygen consumption in the presence of fatty acids, indicating that CTRP3 increases hepatic fatty acid utilization. In conclusion, this study indicates that CTRP3 attenuates hepatic triglyceride accumulation in response to long-term chronic but not short-term alcohol consumption.
AB - This study tested the ability of a novel adipose tissue derived cytokine, C1q TNF Related Protein 3 (CTRP3), to prevent alcohol-induced hepatic lipid accumulation, or alcoholic fatty liver disease (ALD). Previous work has demonstrated that CTRP3 is effective at preventing high fat diet-induced fatty liver, however, the potential of CTRP3 to inhibit ALD has not been explored. To test the potential protective effects of CTRP3, transgenic mice overexpressing CTRP3 (Tg) or wildtype littermates (WT) were subjected to one of two different models of ALD. In the first model, known as the NIAAA model, mice were fed control or alcohol-containing liquid diets (5% v/v) for 10 days followed by a single gavage of ethanol (5 g/kg). In the second model, the chronic model, mice were fed control or alcohol-containing diets for 6 weeks with no gavage. This study found that CTRP3 reduced triglyceride accumulation in the chronic model of alcohol consumption by ~50%, whereas no reduction was observed in the NIAAA model. Further analysis of isolated primary hepatocytes from WT and Tg mice demonstrated that CTRP3 increased oxygen consumption in the presence of fatty acids, indicating that CTRP3 increases hepatic fatty acid utilization. In conclusion, this study indicates that CTRP3 attenuates hepatic triglyceride accumulation in response to long-term chronic but not short-term alcohol consumption.
KW - hepatic triglyceride accumulation
KW - adipokines
KW - alcoholic steatosis
KW - adipokines; alcoholic steatosis
UR - https://dc.etsu.edu/etsu-works/2776
UR - https://doi.org/10.1152/ajpendo.00050.2018
UR - https://dc.etsu.edu/etsu-works/4743
UR - https://dc.etsu.edu/etsu-works/5590
U2 - 10.1152/ajpendo.00050.2018
DO - 10.1152/ajpendo.00050.2018
M3 - Article
VL - 315
JO - American Journal of Physiology-Endocrinology and Metabolism
JF - American Journal of Physiology-Endocrinology and Metabolism
ER -