2013•Intern J Endocrinol MetabRequires access

Intestinal gluconeogenesis and regulation of glucose metabolism

谢媛, 马向华

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Abstract

Gluconeogenesis is a process that translates lactate,glycerin and glycogenic amino acid into glucose or glycogen.It is a major source of endogenous glucose production and of importance on the whole body glucose homeostasis.More and more studies confirm that intestine can utilize glutamine and glyc-erin to synthetize glucose in fasting,lacking of hepatic glycogen and diabetic status.Distincting from hepatic gluconeogenesis,intestinal glucose not only contributes to the glucose homeostasis,but also reduces food-in-take and improves insulin sensitivity.Intestinal gluconeogenesis is a key factor for early metabolic changes after gastric bypass,which might have beneficial consequences on obesity and type 2 diabetes. Key words: Glucose 6 phosphatase ;  Intestine ;  Gluconeogenesis ;

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What this paper is about

Gluconeogenesis is a process that translates lactate,glycerin and glycogenic amino acid into glucose or glycogen.It is a major source of endogenous glucose production and of importance on the whole body glucose homeostasis.More and more studies confirm that intestine can utilize glutamine and glyc-erin to synthetize glucose in fasting,lacking of hepatic glycogen and diabetic status.Distincting from hepatic gluconeogenesis,intestinal glucose not only contributes to the glucose homeostasis,but also reduces food-in-take and improves insulin sensitivity.Intestinal gluconeogenesis is a key factor for early metabolic changes after gastric bypass,which might have beneficial consequences on obesity and type 2 diabetes. Key words: Glucose 6 phosphatase ;  Intestine ;  Gluconeogenesis ;

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Available abstract

Gluconeogenesis is a process that translates lactate,glycerin and glycogenic amino acid into glucose or glycogen.It is a major source of endogenous glucose production and of importance on the whole body glucose homeostasis.More and more studies confirm that intestine can utilize glutamine and glyc-erin to synthetize glucose in fasting,lacking of hepatic glycogen and diabetic status.Distincting from hepatic gluconeogenesis,intestinal glucose not only contributes to the glucose homeostasis,but also reduces food-in-take and improves insulin sensitivity.Intestinal gluconeogenesis is a key factor for early metabolic changes after gastric bypass,which might have beneficial consequences on obesity and type 2 diabetes. Key words: Glucose 6 phosphatase ;  Intestine ;  Gluconeogenesis ;

Key concepts: Gluconeogenesis, Glucose homeostasis, Internal medicine, Endocrinology, Glycogen, Carbohydrate metabolism, Glutamine, Homeostasis

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