2005Food Science and Technology ResearchOpen access

Hypocholesterolemic Effect of Protein Isolated from Quinoa (Chenopodium quinoa Willd.) Seeds

Tetsuya Takao, Nakamichi Watanabe, Kana YUHARA, Syoko ITOH, Saori Suda, Yukari TSURUOKA, Kenichi Nakatsugawa, Yôtarô Konishi

Open full text 79 citations

Abstract

We extracted the protein fraction (QP) from quinoa seeds.Mice were fed on *./ῌ cholesterol diet, containing *ῌ, ,./ῌ and /.*ῌ of QP (control, QP ,./ῌ and QP /.*ῌ, respectively) for .weeks.Neither supplemental QP diet produced a di#erence in food intake and body weight gain.The QP supplementation significantly prevented the increase in plasma and liver total cholesterol levels.Fecal weight and excretion of bile acids in the QP groups was significantly higher than in the control group.QP showed bile acid-binding activity in vitro.Expression of mRNA of --hydroxy---methylglutaryl coenzyme A reductase in the liver, a key enzyme for cholesterol biosynthesis, was suppressed by the QP diet, whereas the expression of cholesterol-1a-hydroxylase, a cholesterol catabolic enzyme, was found to be stimulated.These results suggest that the prevention of increases in plasma and liver cholesterol levels in mice fed the QP diet can be ascribed to the inhibition of the re-absorption of bile acids in the small intestine and control of cholesterol synthesis and catabolism.

Open-access reader

About this research paper

What this paper is about

We extracted the protein fraction (QP) from quinoa seeds.Mice were fed on *./ῌ cholesterol diet, containing *ῌ, ,./ῌ and /.*ῌ of QP (control, QP ,./ῌ and QP /.*ῌ, respectively) for .weeks.Neither supplemental QP diet produced a di#erence in food intake and body weight gain.The QP supplementation significantly prevented the increase in plasma and liver total cholesterol levels.Fecal weight and excretion of bile acids in the QP groups was significantly higher than in the control group.QP showed bile acid-binding activity in vitro.Expression of mRNA of --hydroxy---methylglutaryl coenzyme A reductase in the liver, a key enzyme for cholesterol biosynthesis, was suppressed by the QP diet, whereas the expression of cholesterol-1a-hydroxylase, a cholesterol catabolic enzyme, was found to be stimulated.These results suggest that the prevention of increases in plasma and liver cholesterol levels in mice fed the QP diet can be ascribed to the inhibition of the re-absorption of bile acids in the small intestine and control of cholesterol synthesis and catabolism.

Why it matters

OpenAlex reports 79 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We extracted the protein fraction (QP) from quinoa seeds.Mice were fed on *./ῌ cholesterol diet, containing *ῌ, ,./ῌ and /.*ῌ of QP (control, QP ,./ῌ and QP /.*ῌ, respectively) for .weeks.Neither supplemental QP diet produced a di#erence in food intake and body weight gain.The QP supplementation significantly prevented the increase in plasma and liver total cholesterol levels.Fecal weight and excretion of bile acids in the QP groups was significantly higher than in the control group.QP showed bile acid-binding activity in vitro.Expression of mRNA of --hydroxy---methylglutaryl coenzyme A reductase in the liver, a key enzyme for cholesterol biosynthesis, was suppressed by the QP diet, whereas the expression of cholesterol-1a-hydroxylase, a cholesterol catabolic enzyme, was found to be stimulated.These results suggest that the prevention of increases in plasma and liver cholesterol levels in mice fed the QP diet can be ascribed to the inhibition of the re-absorption of bile acids in the small intestine and control of cholesterol synthesis and catabolism.

Key concepts: Chenopodium quinoa, Catabolism, Cholesterol, Chemistry, Enzyme, Bile acid, Reductase, Cholesterol synthesis

Related papers

Back to paper searchBrowse research topicsOriginal source
Hypocholesterolemic Effect of Protein Isolated from Quinoa (Chenopodium quinoa Willd.) Seeds — Research Paper | ScholarLens