Key result
Liver-specific suppression of ANGPTL4 improved obesity-associated diabetes, reduced circulating triglycerides, and mitigated atherosclerosis in mice without causing deleterious systemic inflammation.
Why the study?
To investigate how ANGPTL4 regulates hepatic lipid and glucose metabolism.
Does liver-specific suppression of ANGPTL4 improve obesity-associated diabetes and mitigate atherosclerosis in mice?
Does liver-specific suppression of ANGPTL4 improve obesity-associated diabetes and mitigate atherosclerosis in mice?
Liver-specific suppression of ANGPTL4 represents a promising therapeutic strategy for treating obesity-associated diabetes and atherosclerosis without the adverse effects of systemic inhibition.
ANGPTL4 modulation of lipid partitioning may alter metabolic tissue function in animals; leaves open human therapeutic relevance.
Angiopoietin-like 4 (ANGPTL4) is a major regulator of lipoprotein lipase (LPL) activity, which is responsible for maintaining optimal levels of circulating triacylglycerol (TAG) for distribution to different tissues including the adipose tissues (ATs), heart, muscle and liver. Dysregulation of trafficking and portioning of fatty acids (FA) can promote ectopic lipid accumulation in metabolic tissues such as the liver, ultimately leading to systemic metabolic dysfunction. To investigate how ANGPTL4 regulates hepatic lipid and glucose metabolism, we generated liver-specific ANGPTL4 knockout mice ( LKO ). Using metabolic turnover studies, we demonstrate that hepatic ANGPTL4 deficiency facilitates catabolism of TAG-rich lipoprotein (TRL) remnants in the liver via increased hepatic lipase (HL) activity, which results in a significant reduction in circulating TAG and cholesterol levels. Deletion of hepatocyte ANGPTL4 protects against diet-induce obesity, glucose intolerance, liver steatosis, and atherogenesis. Mechanistically, we demonstrate that absence of ANGPTL4 in hepatocytes promotes FA uptake which results in increased FA oxidation, ROS production, and AMPK activation. Finally, we demonstrate the utility of a targeted pharmacologic therapy that specifically inhibits ANGPTL4 in the liver and protects against diet-induced obesity, dyslipidemia, glucose intolerance, and liver damage without causing any of the deleterious effects previously observed with neutralizing antibodies.
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Singh et al. (2020) studied Obesity-associated diabetes and atherosclerosis. Liver-specific suppression of ANGPTL4 (genetic knockout or GalNac-conjugated ASO) vs. Wild-type mice or GalNac-control ASO was evaluated on Metabolic parameters including circulating lipids, glucose tolerance, and atherosclerosis. Liver-specific suppression of ANGPTL4 improved obesity-associated diabetes, reduced circulating triglycerides, and mitigated atherosclerosis in mice without causing deleterious systemic inflammation.
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