Key result
Unlike wild-type mice, ApoE knockouts fail to suppress cholesterol absorption on a high-cholesterol diet.
Why the study?
Does apolipoprotein E regulate dietary cholesterol absorption and biliary cholesterol excretion in response to dietary cholesterol?
Does apolipoprotein E regulate dietary cholesterol absorption and biliary cholesterol excretion in response to dietary cholesterol?
ApoE plays a critical role in decreasing dietary cholesterol absorption and increasing biliary cholesterol excretion in response to dietary cholesterol, suggesting a mechanism for accelerated atherogenesis in its absence.
ApoE-dependent suppression of cholesterol absorption in mice; leaves open its contribution to human atherogenesis and dietary lipid management.
The present study examined the role of apolipoprotein E (apoE) in the regulation of dietary cholesterol absorption and biliary cholesterol excretion. Increasing dietary cholesterol from 0.02% to 0.5% in C57BL/6 wild-type mice decreased the percentage of dietary cholesterol that is absorbed by 25%, and this decrease was associated with a 2-fold increase in gallbladder biliary cholesterol concentration. In contrast, increasing dietary cholesterol from 0. 02% to 0.5% in C57BL/6 apoE knockout mice produced no significant suppression of the percentage dietary cholesterol absorption and increased gallbladder biliary cholesterol concentration only 16%. Whereas in wild-type mice, the increase in dietary cholesterol increased the hepatic excretion of biliary cholesterol 4-fold, there was only a 2-fold increase in apoE knockout mice. On both the low- and the high-cholesterol diets, whole liver and isolated hepatocyte cholesterol content was higher in the apoE knockout mice. These results suggest that, in response to dietary cholesterol, apoE may play a critical role in decreasing the percentage absorption of dietary cholesterol and increasing biliary cholesterol excretion. These observations suggest a mechanism whereby the absence of apoE contributes to the propensity for tissue cholesterol deposition and accelerated atherogenesis in apoE knockout mice.
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Ephraim Sehayek (2000) studied Cholesterol metabolism. Apolipoprotein E knockout vs. Wild-type mice was evaluated on Percentage of dietary cholesterol absorbed and biliary cholesterol excretion. In response to increased dietary cholesterol, apolipoprotein E knockout mice showed no significant suppression of cholesterol absorption compared to a 25% decrease in wild-type mice.
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