Laboratory of Aquatic Animal Nutrition and Feed, Fisheries College, Guangdong Ocean University, Zhanjiang 524088, PR China; Key Laboratory of Aquatic, Livestock and Poultry Feed Science and Technology in South China, Ministry of Agriculture and Rural Affairs, Zhanjiang 524088, PR China; Aquatic Animals Precision Nutrition and High Efficiency Feed Engineering Research Center of Guangdong Province, Zhanjiang 524088, PR China.
Laboratory of Aquatic Animal Nutrition and Feed, Fisheries College, Guangdong Ocean University, Zhanjiang 524088, PR China; Key Laboratory of Aquatic, Livestock and Poultry Feed Science and Technology in South China, Ministry of Agriculture and Rural Affairs, Zhanjiang 524088, PR China; Aquatic Animals Precision Nutrition and High Efficiency Feed Engineering Research Center of Guangdong Province, Zhanjiang 524088, PR China; Zhanjiang Experimental Station, CATAS. Zhanjiang 524013, PR China.
Comp Biochem Physiol C Toxicol Pharmacol. 2024 Sep;283:109976. doi: 10.1016/j.cbpc.2024.109976. Epub 2024 Jul 8.
The effects and underlying mechanisms of metformin which can improve glucose homeostasis of fish have rarely been explored. This experiment aimed to explore the influence of metformin on growth performance, body composition, liver health, hepatic glucolipid metabolic capacity and IR/PIK/AKT pathway in grass carp (Ctenopharyngodon idella) fed high-carbohydrate diets. A normal diet (Control) and high carbohydrate diets with metformin supplementation (0.00 %, 0.20 %, 0.40 %, 0.60 % and 0.80 %) were configured. Six groups of healthy fish were fed with the experimental diet for eight weeks. The results showed that the growth performance of grass carp was impaired in high carbohydrate diet. Impairment of IR/PIK/AKT signalling pathway reduced insulin sensitivity, while hepatic oxidative stress damage and decreased immunity affected liver metabolic function. The glycolysis and lipolysis decrease while the gluconeogenesis and fat synthesis increase, which triggers hyperglycaemia and lipid deposition in the body. Metformin supplementation restored the growth performance of grass carp. Metformin improved IR/PIK/AKT pathway signalling and alleviated insulin resistance, while liver antioxidant capacity and immunity were enhanced resulting in the restoration of liver health. The elevation of glycolysis and lipolysis maintains glycaemic homeostasis and reduces lipid deposition, respectively. These results suggest that metformin supplementation restores liver health and activates the IR/PIK/AKT signalling pathway, ameliorating insulin resistance and glucose-lipid metabolism disorders caused by a high-carbohydrate diet. As judged by HOMA-IR, the optimum supplementation level of metformin in grass carp (C. idella) fed a high-carbohydrate diet is 0.67 %.
二甲双胍改善鱼类糖稳态的作用及其潜在机制尚未得到深入研究。本实验旨在探讨二甲双胍对摄食高碳水化合物饲料草鱼生长性能、体组成、肝脏健康、肝糖脂代谢能力及 IR/PIK/AKT 通路的影响。配制正常饲料(对照)和添加二甲双胍的高碳水化合物饲料(0.00%、0.20%、0.40%、0.60%和 0.80%)。6 组健康草鱼摄食实验饲料 8 周。结果表明,高碳水化合物饲料会损害草鱼的生长性能。IR/PIK/AKT 信号通路受损会降低胰岛素敏感性,而肝氧化应激损伤和免疫功能下降会影响肝脏代谢功能。糖酵解和脂解作用降低,而糖异生和脂肪合成增加,导致机体发生高血糖和脂质沉积。二甲双胍补充可恢复草鱼的生长性能。二甲双胍改善了 IR/PIK/AKT 通路信号转导,缓解了胰岛素抵抗,同时增强了肝脏抗氧化能力和免疫功能,恢复了肝脏健康。糖酵解和脂解作用的提高分别维持了血糖稳态和减少了脂质沉积。这些结果表明,二甲双胍补充可恢复肝脏健康并激活 IR/PIK/AKT 信号通路,改善高碳水化合物饲料引起的胰岛素抵抗和糖脂代谢紊乱。根据 HOMA-IR 评估,草鱼(Ctenopharyngodon idella)摄食高碳水化合物饲料时,二甲双胍的最佳补充水平为 0.67%。