Novel insights into the physiological functions of glucagon

Kalyan Kumar Gangopadhyay, Jagat Jyoti Mukherjee
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Abstract

Abstract Discovered a hundred years ago, glucagon continues to amaze clinicians globally with its range of functions affecting the entire human physiology. Although initially it was considered just an opposer of insulin action, recent years have seen that glucagon has a plethora of effects on body metabolism. However, many aspects of the complex regulatory mechanisms of glucagon secretion and its impact on nutrient metabolism are yet to be clearly elucidated. Understanding the physiology of glucagon secretion and action is the key to the development of pharmacological agents which would impact on metabolic disorders. Glucagon secretion is regulated by a variety of factors, including meal type, paracrine hormone secretion from α and β cross-talk, incretin hormones, and the autonomic nervous system, among others. On the other hand, glucagon has manifold effects on glucose, fatty acid, and amino acid metabolism, as well as a significant impact on thermogenesis, satiety, and the cardiovascular system. This article collates the physiological mechanisms of glucagon secretion and action, incorporating the latest in glucagon research.
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对胰高血糖素生理功能的新见解
胰高血糖素在一百年前被发现,其影响整个人体生理的功能范围使全球临床医生感到惊讶。虽然最初它被认为只是胰岛素作用的反对者,但近年来已经看到胰高血糖素对身体代谢有过多的影响。然而,胰高血糖素分泌的复杂调控机制及其对营养物质代谢的影响在许多方面尚不清楚。了解胰高血糖素分泌和作用的生理机制是开发治疗代谢紊乱药物的关键。胰高血糖素的分泌受多种因素调节,包括膳食类型、α和β串扰分泌的旁分泌激素、肠促胰岛素激素和自主神经系统等。另一方面,胰高血糖素对葡萄糖、脂肪酸和氨基酸代谢有多种影响,并对产热、饱腹感和心血管系统有重要影响。本文综述了胰高血糖素分泌和作用的生理机制,并结合了胰高血糖素的最新研究进展。
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