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厨房总动员之饮品 寒冷季节的温暖茶
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作者 洁月 《温州瞭望》 2008年第2期122-122,共1页
冬天喝什么,估计很多人会说自己做起来更合口味,那么本期的厨房总动员,我们将向大家介绍几款冬季饮品的制作方法,给你的冬天带来一些温暖和滋润。
关键词 给你 酸枣仁 天冬 胃寒 沸水冲泡 润透 白糖饮 去浮 补肾 去核
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Baicalin attenuates high fat diet-induced insulin resistance and ectopic fat storage in skeletal muscle,through modulating the protein kinase B/Glycogen synthase kinase 3 beta pathway 被引量:20
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作者 XI You-Li LI Hong-Xia +6 位作者 CHEN Chen LIU Ya-Qun LV Hong-Mei DONG Shi-Qi LUO Er-Fei GU Ming-Bo LIU Hua 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2016年第1期48-55,共8页
Insulin resistance is the pathophysiological basis of many diseases.Overcoming early insulin resistance highly significant in prevention diabetes,non-alcoholic fatty liver,and atherosclerosis.The present study aimed a... Insulin resistance is the pathophysiological basis of many diseases.Overcoming early insulin resistance highly significant in prevention diabetes,non-alcoholic fatty liver,and atherosclerosis.The present study aimed at evaluating the therapeutic effects of baicalin on insulin resistance and skeletal muscle ectopic fat storage in high fat diet-induced mice,and exploring the potential molecular mechanisms.Insulin resistance in mice was induced with a high fat diet for 16 weeks.Animals were then treated with three different doses of baicalin(100,200,and 400 mg·kg^(-1)·d^(-1)for 14 weeks.Fasting blood glucose,fasting serum insulin,glucose tolerance test(GTT),insulin tolerance test(ITT),and skeletal muscle lipid deposition were measured.Additionally,the AMP-activated protein kinase/acetyl-CoA carboxylase and protein kinase B/Glycogen synthase kinase 3 beta pathways in skeletal muscle were further evaluated.Baicalin significantly reduced the levels of fasting blood glucose and fasting serum insulin and attenuated high fat diet induced glucose tolerance and insulin tolerance.Moreover,insulin resistance was significantly reversed.Pathological analysis revealed baicalin dose-dependently decreased the degree of the ectopic fat storage in skeletal muscle.The properties of baicalin were mediated,at least in part,by inhibition of the AMPK/ACC pathway,a key regulator of de novo lipogenesis and activation of the Akt/GSK-3β pathway,a key regulator of Glycogen synthesis.These data suggest that baicalin,at dose up to 400 mg·kg^(-1)·d^(-1),is safe and able to attenuate insulin resistance and skeletal muscle ectopic fat storage,through modulating the skeletal muscle AMPK/ACC pathway and Akt/GSK-3β pathway. 展开更多
关键词 BAICALIN Insulin resistance Skeletal muscle ectopic fat storage Protein kinase B Glycogen synthase kinase 3 beta
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Intermittent protein restriction protects isletβcells and improves glucose homeostasis in diabetic mice 被引量:4
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作者 Siying Wei Chenchen Li +6 位作者 Xuemei Luo Lanzexin Yang Long Yu Qintao Wang Zhuo-Xian Meng Tao Wang Yan Chen 《Science Bulletin》 SCIE EI CSCD 2022年第7期733-747,共15页
Diabetes is caused by the interplay between genetics and environmental factors, tightly linked to lifestyle and dietary patterns. In this study, we explored the effectiveness of intermittent protein restriction(IPR)in... Diabetes is caused by the interplay between genetics and environmental factors, tightly linked to lifestyle and dietary patterns. In this study, we explored the effectiveness of intermittent protein restriction(IPR)in diabetes control. IPR drastically reduced hyperglycemia in both streptozotocin-treated and leptin receptor-deficient db/db mouse models. IPR improved the number, proliferation, and function of β cells in pancreatic islets. IPR reduced glucose production in the liver and elevated insulin signaling in the skeletal muscle. IPR elevated serum level of FGF21, and deletion of the Fgf21 gene in the liver abrogated the hypoglycemic effect of IPR without affecting β cells. IPR caused less lipid accumulation and damage in the liver than that caused by continuous protein restriction in streptozotocin-treated mice. Single-cell RNA sequencing using mouse islets revealed that IPR reversed diabetes-associated β cell reduction and immune cell accumulation. As IPR is not based on calorie restriction and is highly effective in glycemic control and β cell protection, it has promising translational potential in the future. 展开更多
关键词 Nutritional intervention Diabetes intervention Protein restriction ISLETS scRNA-seq
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