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Updated: May 13, 2026

Optimized Analysis of In Vivo and In Vitro Hepatic Steatosis
Published on: March 12, 2017
Inactivation of hepatic microsomal triglyceride transfer protein protects mice from diet-induced gallstones
Ludwig Amigo1, Juan Castro, Juan Francisco Miquel
1Departamento de Gastroenterología, Facultad de Medicina Pontificia Universidad Católica, Santiago, Chile.
Background & Aims:
Microsomal triglyceride transfer protein (MTTP) is critical for the production of very-low-density lipoproteins (VLDL). The current studies were undertaken to examine the in vivo role of MTTP in hepatic cholesterol and fatty acid metabolism, as well as in biliary lipid secretion. We also tested whether MTTP plays a role in diet-induced cholelithiasis in mice.
Methods:
We used mice in which Mttp had been inactivated in the liver (Mttp(Delta/Delta) mice). We measured several parameters of cholesterol metabolism, fatty acid synthesis, and biliary lipid levels in mice fed a normal or a lithogenic diet. We also assessed the incidence of diet-associated gallstones.
Results:
Hepatic Mttp inactivation markedly decreased plasma triglyceride and cholesterol levels and increased biliary cholesterol and bile acid output. Hepatic cholesterogenesis and fatty acid synthesis were significantly decreased in Mttp(Delta/Delta) mice compared with control mice. The incidence of gallstones decreased from 90% in control mice to 33% in Mttp(Delta/Delta) mice after 8 weeks of a lithogenic diet (P < .0001). The mechanism of the protective effect appears to be increased biliary phospholipid output in Mttp(Delta/Delta) mice, leading to significant unsaturation of gallbladder bile.
Conclusions:
These results indicate that modulation of Mttp expression in the liver affects hepatic lipid synthesis and storage as well as biliary lipid secretion. Our findings further indicate that inhibition of hepatic MTTP activity decreases the risk of experimental cholelithiasis by favoring phospholipid output into the bile.
Insights
Inhibiting microsomal triglyceride transfer protein (MTTP) in the liver reduces cholesterol and fatty acid synthesis, and significantly lowers the risk of gallstones by increasing bile phospholipid output.
Area of Science:
- Hepatology
- Lipid Metabolism
- Gastroenterology
Background:
- Microsomal triglyceride transfer protein (MTTP) is essential for very-low-density lipoprotein (VLDL) production.
- Understanding MTTP's role in hepatic lipid metabolism and biliary secretion is crucial.
Purpose of the Study:
- To investigate the in vivo function of MTTP in liver cholesterol and fatty acid metabolism.
- To determine MTTP's role in biliary lipid secretion and diet-induced cholelithiasis in mice.
Main Methods:
- Utilized liver-specific Mttp knockout mice (Mttp(Delta/Delta)).
- Assessed cholesterol metabolism, fatty acid synthesis, and biliary lipid levels under normal and lithogenic diets.
- Evaluated the incidence of diet-associated gallstones.
Main Results:
- Mttp inactivation in the liver reduced plasma triglycerides and cholesterol.
- Increased biliary cholesterol and bile acid output observed in Mttp(Delta/Delta) mice.
- Significantly decreased gallstone incidence (90% to 33%) in Mttp(Delta/Delta) mice on a lithogenic diet.
Conclusions:
- Liver MTTP modulation impacts hepatic lipid synthesis, storage, and biliary lipid secretion.
- Inhibiting hepatic MTTP activity reduces experimental cholelithiasis risk.
- Increased biliary phospholipid output is a key mechanism for gallstone prevention.
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