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首页> 外文期刊>Fish Physiology and Biochemistry >Dietary berberine can ameliorate glucose metabolism disorder of Megalobrama amblycephala exposed to a high-carbohydrate diet
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Dietary berberine can ameliorate glucose metabolism disorder of Megalobrama amblycephala exposed to a high-carbohydrate diet

机译:饮食小檗碱可以改善巨型葡萄糖的葡萄糖代谢障碍暴露于高碳水化合物饮食

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摘要

Blunt snout bream (Megalobrama amblycephala) were randomly assigned into three diets: normal-carbohydrate diet (NCD, 30% carbohydrate, w/w), high-carbohydrate diet (HCD, 43% carbohydrate), and HCB (HCD supplemented with 50 mg/kg berberine (BBR)). After 10 weeks' feeding trial, the results showed that higher levels of plasma glucose, triglyceride, and total cholesterol were observed in HCD-fed fish than in NCD-fed fish, while HCB feeding significantly ameliorated this effect. Moreover, HCB feeding remarkably reversed HCD-induced hepatic glycogen and lipid contents. In insulin signaling, BBR inclusion restored HCD-induced suppression of insulin receptor substrate mRNA expression and elevation of forkhead transcription factor 1 mRNA expression. In glucose metabolism, upregulated glucose transporter 2 and glycogen synthase mRNA expressions in the HCD group were observed compared to the NCD group. However, BBR adding reduced the mRNA expressions of glycogen synthase, phosphoenolpyruvate carboxykinase, and glucose-6-phosphatase and increased the transcriptional levels of glucose transporter 2 and pyruvate kinase. In lipid metabolism, BBR supplementation could reverse downregulated hepatic carnitine palmitoyl transferase I mRNA expression and upregulated hepatic acetyl-CoA carboxylase and fatty acid synthetase mRNA expressions in the HCD group. Taken together, it demonstrates that BBR could improve glucose metabolism of this species via enhancing liver's glycolysis and insulin signaling, while inhibiting liver's glycogen synthesis and gluconeogenesis. It also indicates that BBR could reduce the metabolic burden of the liver by inhibiting fat synthesis and promoting lipid decomposition, and then enhance fat uptake in peripheral tissues.
机译:None

著录项

  • 来源
    《Fish Physiology and Biochemistry》 |2021年第2期|共15页
  • 作者单位

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Tongwei Co Ltd 588 Middle Sect Tianfu Ave Chengdu 610041 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

    Nanjing Agr Univ Coll Anim Sci &

    Technol Key Lab Aquat Nutr &

    Feed Sci Jiangsu Prov Nanjing 210095 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    Carbohydrate; Berberine; Glycolipid metabolism; Insulin signaling; Megalobrama amblycephala;

    机译:碳水化合物;小檗碱;糖脂代谢;胰岛素信号传导;巨大的猫咪amblycephala;

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