Boyle Christina N, Zheng Yi, Lutz Thomas A
Institute of Veterinary Physiology, Vetsuisse Faculty University of Zurich, Winterthurerstrasse 260, 8057 Zurich, Switzerland.
J Clin Med. 2022 Apr 15;11(8):2207. doi: 10.3390/jcm11082207.
Amylin (also called islet amyloid polypeptide (IAPP)) is a pancreatic beta-cell hormone that is co-secreted with insulin in response to nutrient stimuli. The last 35 years of intensive research have shown that amylin exerts important physiological effects on metabolic control. Most importantly, amylin is a physiological control of meal-ending satiation, and it limits the rate of gastric emptying and reduces the secretion of pancreatic glucagon, in particular in postprandial states. The physiological effects of amylin and its analogs are mediated by direct brain activation, with the caudal hindbrain playing the most prominent role. The clarification of the structure of amylin receptors, consisting of the calcitonin core receptor plus receptor-activity modifying proteins, aided in the development of amylin analogs with a broad pharmacological profile. The general interest in amylin physiology and pharmacology was boosted by the finding that amylin is a sensitizer to the catabolic actions of leptin. Today, amylin derived analogs are considered to be among the most promising approaches for the pharmacotherapy against obesity. At least in conjunction with insulin, amylin analogs are also considered important treatment options in diabetic patients, so that new drugs may soon be added to the only currently approved compound pramlintide (Symlin). This review provides a brief summary of the physiology of amylin's mode of actions and its role in the control of the metabolism, in particular energy intake and glucose metabolism.
胰淀素(也称为胰岛淀粉样多肽(IAPP))是一种胰腺β细胞激素,在营养刺激下与胰岛素共同分泌。过去35年的深入研究表明,胰淀素对代谢控制具有重要的生理作用。最重要的是,胰淀素是进食结束时饱腹感的生理调节因子,它限制胃排空速率并减少胰高血糖素的分泌,尤其是在餐后状态。胰淀素及其类似物的生理作用是通过直接激活大脑介导的,其中尾侧后脑发挥着最突出的作用。对由降钙素核心受体加受体活性修饰蛋白组成的胰淀素受体结构的阐明,有助于开发具有广泛药理学特性的胰淀素类似物。胰淀素是瘦素分解代谢作用的敏化剂这一发现,提高了人们对胰淀素生理学和药理学的普遍兴趣。如今,源自胰淀素的类似物被认为是抗肥胖药物治疗最有前景的方法之一。至少与胰岛素联合使用时,胰淀素类似物也被认为是糖尿病患者的重要治疗选择,因此新药可能很快会添加到目前唯一获批的化合物普兰林肽(Symlin)中。本综述简要总结了胰淀素作用方式的生理学及其在代谢控制中的作用,特别是能量摄入和葡萄糖代谢。