Bonura Adriano, Brunelli Nicoletta, Marcosano Marilena, Iaccarino Gianmarco, Fofi Luisa, Vernieri Fabrizio, Altamura Claudia
Instituite of Neurology, Fondazione Policlinico Universitario Campus Bio-Medico, Via Alvaro del Portillo, 200, 00128 Roma, Italy.
Unit of Headache and Neurosonology, Department of Medicine and Surgery, Università Campus Bio-Medico di Roma, 00128 Roma, Italy.
Int J Mol Sci. 2023 Sep 12;24(18):13979. doi: 10.3390/ijms241813979.
The calcitonin gene-related peptide (CGRP) is a neuropeptide widely distributed throughout the human body. While primarily recognized as a nociceptive mediator, CGRP antagonists are currently utilized for migraine treatment. However, its role extends far beyond this, acting as a regulator of numerous biological processes. Indeed, CGRP plays a crucial role in vasodilation, inflammation, intestinal motility, and apoptosis. In this review, we explore the non-nociceptive effects of CGRP in various body systems, revealing actions that can be contradictory at times. In the cardiovascular system, it functions as a potent vasodilator, yet its antagonists do not induce arterial hypertension, suggesting concurrent modulation by other molecules. As an immunomodulator, CGRP exhibits intriguing complexity, displaying both anti-inflammatory and pro-inflammatory effects. Furthermore, CGRP appears to be involved in obesity development while paradoxically reducing appetite. A thorough investigation of CGRP's biological effects is crucial for anticipating potential side effects associated with its antagonists' use and for developing novel therapies in other medical fields. In summary, CGRP represents a neuropeptide with a complex systemic impact, extending well beyond nociception, thus offering new perspectives in medical research and therapeutics.
降钙素基因相关肽(CGRP)是一种广泛分布于人体的神经肽。虽然CGRP主要被认为是一种伤害性介质,但目前CGRP拮抗剂被用于偏头痛治疗。然而,其作用远不止于此,它还作为多种生物过程的调节因子。事实上,CGRP在血管舒张、炎症、肠道蠕动和细胞凋亡中发挥着关键作用。在本综述中,我们探讨了CGRP在各种身体系统中的非伤害性作用,揭示了其作用有时可能相互矛盾。在心血管系统中,它作为一种强效血管舒张剂发挥作用,但其拮抗剂不会诱发动脉高血压,这表明存在其他分子的协同调节作用。作为一种免疫调节剂,CGRP表现出有趣的复杂性,兼具抗炎和促炎作用。此外,CGRP似乎参与肥胖的发生发展,同时却又能反常地降低食欲。深入研究CGRP的生物学效应对于预测其拮抗剂使用可能产生的潜在副作用以及在其他医学领域开发新疗法至关重要。总之,CGRP是一种具有复杂全身影响的神经肽,其影响远远超出痛觉感受,从而为医学研究和治疗提供了新的视角。