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神经肽 Y 在生物学功能上的生理和治疗作用。

Physiological and Therapeutic Roles of Neuropeptide Y on Biological Functions.

机构信息

Shobhaben Pratapbhai Patel School of Pharmacy and Technology Management, SVKM'S NMIMS, Mumbai, Maharashtra, India.

出版信息

Adv Exp Med Biol. 2020;1237:37-47. doi: 10.1007/5584_2019_427.

Abstract

Neuropeptide Y (NPY), an amino acid, used for various physiological processes for management and treatment of various ailments related to central nervous system, cardiovascular system, respiratory system, gastro-intestinal system and endocrinal system. In nasal mucosa, high concentrations of NPY are stored with noradrenaline in sympathetic nerve fibers. NPY Y receptor mediates nitric oxide levels and reduction in blood flow in nasal mucosa of the human. NPY plays a role in dietary consumption via various factors like signaling the CNS for a prerequisite of energy in hypothalamus by mediating appetite and shows orexigenic effect. NPY emerges as a natural ligand of G-protein coupled receptors which activates the Y-receptors (Y-Y). But applications of NPY are limited due to shows the cost inefficiency and stability issues in the formulation design and development. In this review, authors present the findings on various therapeutic applications of NPY on different organ systems. Moreover, its role in food intake, sexual behavior, blood pressure, etc. by inhibiting calcium and activating potassium channels. The combination therapies of drugs with neuropeptide Y and its receptors will show new targets for treating diseases. Further evaluation and detection of NPY needs to be investigated for animal models of various diseases like retinal degeneration and immune mechanisms.

摘要

神经肽 Y(NPY)是一种氨基酸,用于管理和治疗与中枢神经系统、心血管系统、呼吸系统、胃肠系统和内分泌系统相关的各种疾病的各种生理过程。在鼻黏膜中,大量的 NPY 与去甲肾上腺素一起储存在交感神经纤维中。NPY Y 受体介导人类鼻黏膜中的一氧化氮水平和血流量减少。NPY 通过信号传递到下丘脑来为能量提供必要条件,从而在饮食消费中发挥作用,通过调节食欲产生食欲刺激作用。NPY 作为一种天然配体与 G 蛋白偶联受体结合,激活 Y 受体(Y-Y)。但是,由于在配方设计和开发中表现出成本效率和稳定性问题,NPY 的应用受到限制。在这篇综述中,作者介绍了 NPY 在不同器官系统的各种治疗应用的研究结果。此外,它还通过抑制钙和激活钾通道来调节食物摄入、性行为、血压等。神经肽 Y 及其受体的联合治疗将为治疗疾病提供新的靶点。需要进一步评估和检测 NPY 在视网膜变性和免疫机制等各种疾病的动物模型中的作用。

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