Effect of Dietary Phosphatidylinositol on Cholesterol Metabolism in Zucker (fa/fa) Rats
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概要
- 論文の詳細を見る
Recent studies have shown that dietary phospholipids, especially phosphatidylcholine and phosphatidylserine, have various beneficial biological effects. However, there are not enough data concerning the physiological function of dietary phosphatidylinositol (PI). The metabolic syndrome, a cluster of metabolic abnormalities such as dyslipidemia, diabetes mellitus, and hypertension, is widespread and increasingly prevalent diseases in industrialized countries. In the present study, we evaluated that the effect of dietary PI on cholesterol metabolism in metabolic syndrome model Zucker (fa/fa) rats. For 4 weeks, rats were fed semisynthetic diets containing either 7% soybean oil or 5% soybean oil plus 2% PI. Dietary PI prevented the mild hypercholesterolemia and hepatic cholesterol accumulation in Zucker (fa/fa) rats. These effects were attributable to an increased fecal bile acid excretion and to the tendencies of decreased ACAT1 mRNA level and increased CYP7A1 mRNA level in the liver. Additionally, dietary PI markedly increased microsomal PI content in the liver of Zucker (fa/fa) rats. Our study suggests that dietary PI normalizes cholesterol metabolism through the enhancement of fecal bile acid excretion in the metabolic syndrome model rats.
- 日本油化学会の論文
著者
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Shirouchi Bungo
Laboratory of Nutrition Biochemistry, Department of Applied Biochemistry and Food Science, Saga Univ
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Furuya Kenta
Laboratory of Nutrition Biochemistry, Department of Applied Biochemistry and Food Science, Saga Univ
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Nagao Koji
Department Of Applied Biological Sciences Saga University
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Nagao Koji
Laboratory Of Nutrition Biochemistry Department Of Applied Biological Sciences Saga University
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INOUE Nao
Laboratory of Nutrition Biochemisty, Department of Applied Biological Sciences, Saga University
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Otsubo Kazumasa
Asahi Kasei Pharma Corporation
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Yanagita Teruyoshi
Laboratory Of Nutrition Biochemistry Department Of Applied Biological Sciences Saga University
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Nasu Masaaki
Asahi Kasei Pharma Corporation
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Furuya Kenta
Department Of Applied Biochemistry And Food Science Saga University
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Inafuku Masashi
Laboratory of Nutrition Biochemistry, Department of Applied Biochemistry and Food Science, Saga Univ
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Koga Shinji
Asahi Kasei Pharma Co.
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Matsumoto Hideyuki
Asahi Kasei Pharma Co.
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Yanagita Teruyoshi
Laboratory Of Food And Biomolecular Science Graduate School Of Agricultural Science Tohoku Universit
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Inoue Nao
Laboratory Of Food And Biomolecular Science Graduate School Of Agricultural Science Tohoku University
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Inafuku Masashi
Laboratory of Nutrition Biochemistry, Department of Applied Biochemistry and Food Science, Saga University
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Otsubo Kazumasa
Asahi Kasei Pharma Co.
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Nasu Masaaki
Asahi Kasei Pharma Co.
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Inoue Nao
Laboratory of Nutrition Biochemistry, Department of Applied Biochemistry and Food Science, Saga University
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