BACKGROUND/AIM: Hepatic bile acid synthesis is the main mechanism whereby the organism can degrade cholesterol. Plasma levels of 7alpha-hydroxy-4-cholesten-3-one have been reported to reflect bile acid synthesis and the expression or activity of the limiting enzyme of the main biosynthetic pathway, cholesterol 7alpha-hydroxylase. Aim of this study was to correlate the levels of this metabolite with the rates of cholesterol 7alpha-hydroxylation in vivo, a direct measurement of bile acid synthesis, in hyperlipidemic patients. DESIGN: Concentrations of 7alpha-hydroxy-4-cholesten-3-one were assayed by gas-liquid chromatography: mass spectrometry in plasma samples obtained in 18 patients with primary hyperlipoproteinemia who previously underwent...
Elevated lipid levels in the bloodstream, in particular high levels of LDL cholesterol, are a major...
The effects of newly synthesized cholesterol availability on bile acid synthesis are largely unknown...
Background No information is available on the hepatic and extrahepatic pathways of bile acid synthe...
BACKGROUND/AIM: Hepatic bile acid synthesis is the main mechanism whereby the organism can degrade c...
BACKGROUND AND AIMS: The first step in the alternative pathway of bile acid biosynthesis is the 27-h...
AbstractCirculating levels of 7α-hydroxy-4-cholesten-3-one have been compared with activities of the...
AbstractA method for analysis of 7α-hydroxy-4-cholesten-3-one in plasma is described. Following soli...
Little is known about the relationships between hyperlipidemia and bile acid metabolism. However, hy...
Background: Cholesterol elimination occurs through bile acid synthesis that starts within the liver ...
Over the last few years important progress has been made on the quantitation of cholesterol 7 alpha-...
BACKGROUND. The first step in the alternate biosynthetic pathway of bile acid synthesis from cholest...
7 alpha-Hydroxylation of cholesterol is a stereospecific reaction consisting of the replacement of t...
The rates of cholesterol 7-alpha-hydroxylation (the first and rate-limiting step of bile acid synthe...
Background: Bile acid synthesis accounts for more than 95% of total cholesterol catabolism per day. ...
An increased level of plasma cholesterol is associated with premature development of atherosclerosis...
Elevated lipid levels in the bloodstream, in particular high levels of LDL cholesterol, are a major...
The effects of newly synthesized cholesterol availability on bile acid synthesis are largely unknown...
Background No information is available on the hepatic and extrahepatic pathways of bile acid synthe...
BACKGROUND/AIM: Hepatic bile acid synthesis is the main mechanism whereby the organism can degrade c...
BACKGROUND AND AIMS: The first step in the alternative pathway of bile acid biosynthesis is the 27-h...
AbstractCirculating levels of 7α-hydroxy-4-cholesten-3-one have been compared with activities of the...
AbstractA method for analysis of 7α-hydroxy-4-cholesten-3-one in plasma is described. Following soli...
Little is known about the relationships between hyperlipidemia and bile acid metabolism. However, hy...
Background: Cholesterol elimination occurs through bile acid synthesis that starts within the liver ...
Over the last few years important progress has been made on the quantitation of cholesterol 7 alpha-...
BACKGROUND. The first step in the alternate biosynthetic pathway of bile acid synthesis from cholest...
7 alpha-Hydroxylation of cholesterol is a stereospecific reaction consisting of the replacement of t...
The rates of cholesterol 7-alpha-hydroxylation (the first and rate-limiting step of bile acid synthe...
Background: Bile acid synthesis accounts for more than 95% of total cholesterol catabolism per day. ...
An increased level of plasma cholesterol is associated with premature development of atherosclerosis...
Elevated lipid levels in the bloodstream, in particular high levels of LDL cholesterol, are a major...
The effects of newly synthesized cholesterol availability on bile acid synthesis are largely unknown...
Background No information is available on the hepatic and extrahepatic pathways of bile acid synthe...