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在小鼠中,高碳水化合物饮食比高脂肪高热量饮食会导致更严重的肝脏胆固醇沉积。

High-Carbohydrate Diet Consumption Poses a More Severe Liver Cholesterol Deposition than a High-Fat and High-Calorie Diet in Mice.

作者信息

Zhang Linyu, Li Xin, Liu Xiangyan, Wu Xiaoran, Xu Qiurong, Qu Jianyu, Li Xiaowen, Zhu Yuanyuan, Wen Lixin, Wang Ji

机构信息

Hunan Engineering Research Center of Livestock and Poultry Health Care, College of Veterinary Medicine, Hunan Agricultural University, Changsha 410128, China.

Animal Nutritional Genome and Germplasm Innovation Research Center, College of Animal Science and Technology, Hunan Agricultural University, Changsha 410128, China.

出版信息

Int J Mol Sci. 2023 Sep 28;24(19):14700. doi: 10.3390/ijms241914700.

Abstract

In the past few decades, many researchers believed that a high-fat and high-calorie diet is the most critical factor leading to metabolic diseases. However, increasing evidence shows a high-carbohydrate and low-fat diet may also be a significant risk factor. It needs a comprehensive evaluation to prove which viewpoint is more persuasive. We systematically compared the effects of high-fat and high-calorie diets and high-carbohydrate and low-fat ones on glycolipid metabolism in mice to evaluate and compare the effects of different dietary patterns on metabolic changes in mice. Sixty 8-week-old male C57BL/6 mice were divided into four groups after acclimatization and 15% (F-15), 25% (F-25), 35% (F-35), and 45% (F-45) of their dietary energy was derived from fat for 24 weeks. The body weight, body-fat percentage, fasting blood glucose, lipid content in the serum, and triglyceride content in the livers of mice showed a significantly positive correlation with dietary oil supplementation. Interestingly, the total cholesterol content in the livers of mice in the F-15 group was significantly higher than that in other groups ( < 0.05). Compared with the F-45 group, the mRNA expression of sterol synthesis and absorption-related genes (e.g., , , , , , and ), liver fibrosis-related genes (e.g., and ) and inflammation-related genes (e.g., and ) were significantly higher in the F-15 group. Compared with the F-45 group, the relative abundance of and was decreased in the F-15 group. While and are potentially beneficial bacteria, they have the ability to produce short-chain fatty acids and modulate cholesterol metabolism. In addition, the relative abundance of and was significantly positively correlated with fatty acid transporters expression and negatively correlated with that of cholesteryl acyltransferase 1 and cholesterol synthesis-related genes. In conclusion, our study delineated how a high-fat and high-calorie diet (fat supplied higher than or equal to 35%) induced obesity and hepatic lipid deposition in mice. Although the high-carbohydrate and low-fat diet did not cause weight gain in mice, it induced cholesterol deposition in the liver. The mechanism is mainly through the induction of endogenous synthesis of cholesterol in mice liver through the ASGR1-mTORC1-USP20-HMGCR signaling pathway. The appropriate oil and carbon water ratio (dietary energy supply from fat of 25%) showed the best gluco-lipid metabolic homeostasis in mice.

摘要

在过去几十年里,许多研究人员认为高脂高热量饮食是导致代谢性疾病的最关键因素。然而,越来越多的证据表明,高碳水化合物低脂饮食也可能是一个重要的风险因素。需要进行全面评估以证明哪种观点更具说服力。我们系统地比较了高脂高热量饮食和高碳水化合物低脂饮食对小鼠糖脂代谢的影响,以评估和比较不同饮食模式对小鼠代谢变化的影响。60只8周龄雄性C57BL/6小鼠在适应环境后被分为四组,其饮食能量的15%(F-15)、25%(F-25)、35%(F-35)和45%(F-45)来自脂肪,持续24周。小鼠的体重、体脂百分比、空腹血糖、血清脂质含量和肝脏中的甘油三酯含量与饮食中添加的油脂呈显著正相关。有趣的是,F-15组小鼠肝脏中的总胆固醇含量显著高于其他组(<0.05)。与F-45组相比,F-15组中固醇合成和吸收相关基因(如 、 、 、 、 和 )、肝纤维化相关基因(如 和 )以及炎症相关基因(如 和 )的mRNA表达显著更高。与F-45组相比,F-15组中 和 的相对丰度降低。虽然 和 是潜在的有益细菌,它们有能力产生短链脂肪酸并调节胆固醇代谢。此外, 和 的相对丰度与脂肪酸转运蛋白表达显著正相关,与胆固醇酰基转移酶1和胆固醇合成相关基因的表达呈负相关。总之,我们的研究描绘了高脂高热量饮食(脂肪供应高于或等于35%)如何在小鼠中诱导肥胖和肝脏脂质沉积。虽然高碳水化合物低脂饮食没有导致小鼠体重增加,但它诱导了肝脏中的胆固醇沉积。其机制主要是通过ASGR1-mTORC1-USP20-HMGCR信号通路诱导小鼠肝脏内源性胆固醇合成。适当的油脂和碳水化合物比例(饮食能量的25%来自脂肪)在小鼠中显示出最佳的糖脂代谢稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af9b/10572265/03101795ad36/ijms-24-14700-g001.jpg

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