Key result
AAV-mediated liver-targeted LPL expression dose-dependently decreased plasma TG levels, decreased mortality, and reduced HTG-AP severity in Gpihbp1 -/- mice and rats.
Why the study?
To determine whether liver-targeted LPL expression could correct severe hypertriglyceridemia and hypertriglyceridemia-related acute pancreatitis in Gpihbp1 deficiency.
Does AAV-mediated hepatic LPL expression reduce hypertriglyceridemia and acute pancreatitis in Gpihbp1 deficient mice and rats?
Does AAV-mediated hepatic LPL expression reduce hypertriglyceridemia and acute pancreatitis in Gpihbp1 deficient mice and rats?
AAV-mediated liver-targeted LPL expression effectively reduces severe hypertriglyceridemia and associated acute pancreatitis in Gpihbp1 deficient animal models.
Hepatic LPL expression may correct HTG in Gpihbp1 deficiency; leaves open translation to human therapy.
GPIHBP1 plays an important role in the hydrolysis of triglyceride (TG) lipoproteins by lipoprotein lipases (LPLs). However, Gpihbp1 knockout mice did not develop hypertriglyceridemia (HTG) during the suckling period but developed severe HTG after weaning on a chow diet. It has been postulated that LPL expression in the liver of suckling mice may be involved. To determine whether hepatic LPL expression could correct severe HTG in Gpihbp1 deficiency, liver-targeted LPL expression was achieved via intravenous administration of the adeno-associated virus (AAV)-human LPL gene, and the effects of AAV-LPL on HTG and HTG-related acute pancreatitis (HTG-AP) were observed. Suckling Gpihbp1 −/− mice with high hepatic LPL expression did not develop HTG, whereas Gpihbp1 −/− rat pups without hepatic LPL expression developed severe HTG. AAV-mediated liver-targeted LPL expression dose-dependently decreased plasma TG levels in Gpihbp1 −/− mice and rats, increased post-heparin plasma LPL mass and activity, decreased mortality in Gpihbp1 −/− rat pups, and reduced the susceptibility and severity of both Gpihbp1 −/− animals to HTG-AP. However, the muscle expression of AAV-LPL had no significant effect on HTG. Targeted expression of LPL in the liver showed no obvious adverse reactions. Thus, liver-targeted LPL expression may be a new therapeutic approach for HTG-AP caused by GPIHBP1 deficiency.
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Yuan et al. (2023) studied Severe hypertriglyceridemia and acute pancreatitis in Gpihbp1 deficiency. AAV-mediated liver-targeted human LPL gene expression vs. No hepatic LPL expression / muscle expression of AAV-LPL was evaluated on Plasma TG levels, LPL mass and activity, mortality, and susceptibility/severity to HTG-AP. AAV-mediated liver-targeted LPL expression dose-dependently decreased plasma TG levels, decreased mortality, and reduced HTG-AP severity in Gpihbp1 -/- mice and rats.
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