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Regulation of diurnal variation of cholesterol 7?-hydroxylase (CYP7A1) activity in healthy subjects
J. Kovář, M. Leníček, M. Zimolová, L. Vítek, M. Jirsa, J. Piťha
Language English Country Czech Republic
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NR8987
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- MeSH
- Enzyme Activation MeSH
- Anticholesteremic Agents administration & dosage MeSH
- Cholestenones blood MeSH
- Cholesterol 7-alpha-Hydroxylase metabolism MeSH
- Cholesterol blood MeSH
- Cholestyramine Resin administration & dosage MeSH
- Circadian Rhythm physiology MeSH
- Adult MeSH
- Financing, Organized MeSH
- Gastrointestinal Agents administration & dosage MeSH
- Insulin blood MeSH
- Clinical Trials as Topic MeSH
- Blood Glucose metabolism MeSH
- Chenodeoxycholic Acid metabolism MeSH
- Fatty Acids, Nonesterified blood MeSH
- Humans MeSH
- Reference Values MeSH
- Triglycerides blood MeSH
- Bile Acids and Salts metabolism MeSH
- Check Tag
- Adult MeSH
- Humans MeSH
- Male MeSH
Cholesterol 7?-hydroxylase (CYP7A1), the key regulatory enzyme of bile acid synthesis, displays a pronounced diurnal variation. To better understand the regulation of CYP7A1 activity, three daylong examinations were carried out in 12 healthy men. The concentrations of 7?-hydroxycholest-4-en-3-one (C4), a surrogate marker of CYP7A1 activity, bile acids (BA), insulin, glucose, nonesterified fatty acids, triglycerides, and cholesterol were measured in serum in 90-min intervals from 7 AM till 10 PM. To lower and to increase BA concentration during the study, the subjects received cholestyramine and chenodeoxycholic acid (CDCA), respectively, in two examinations. No drug was used in the control examination. There was a pronounced diurnal variation of C4 concentration with a peak around 1 PM in most of the subjects. The area under the curve (AUC) of C4 concentration was five times higher and three times lower when subjects were treated with cholestyramine and CDCA, respectively. No relationship was found between AUC of C4 and AUC of BA concentration, but AUC of C4 correlated positively with that of insulin. Moreover, short-term treatment with cholestyramine resulted in about 10 % suppression of glycemia throughout the day. Our results suggest that insulin is involved in the regulation of diurnal variation of CYP7A1 activity in humans.
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Lit.: 16
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- $a Cholesterol 7?-hydroxylase (CYP7A1), the key regulatory enzyme of bile acid synthesis, displays a pronounced diurnal variation. To better understand the regulation of CYP7A1 activity, three daylong examinations were carried out in 12 healthy men. The concentrations of 7?-hydroxycholest-4-en-3-one (C4), a surrogate marker of CYP7A1 activity, bile acids (BA), insulin, glucose, nonesterified fatty acids, triglycerides, and cholesterol were measured in serum in 90-min intervals from 7 AM till 10 PM. To lower and to increase BA concentration during the study, the subjects received cholestyramine and chenodeoxycholic acid (CDCA), respectively, in two examinations. No drug was used in the control examination. There was a pronounced diurnal variation of C4 concentration with a peak around 1 PM in most of the subjects. The area under the curve (AUC) of C4 concentration was five times higher and three times lower when subjects were treated with cholestyramine and CDCA, respectively. No relationship was found between AUC of C4 and AUC of BA concentration, but AUC of C4 correlated positively with that of insulin. Moreover, short-term treatment with cholestyramine resulted in about 10 % suppression of glycemia throughout the day. Our results suggest that insulin is involved in the regulation of diurnal variation of CYP7A1 activity in humans.
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