Department of Pharmacy, University of Pisa, via Bonanno 6, 56126 Pisa, Italy.
Department of Pharmacy, University of Pisa, via Bonanno 6, 56126 Pisa, Italy; Interdepartmental Research Centre, Nutraceuticals and Food for Health, University of Pisa, Via del Borghetto 80, 56124 Pisa, Italy; Interdepartmental Research Center of Ageing, Biology and Pathology, University of Pisa, Via Savi 10, 56126 Pisa, Italy.
Life Sci. 2021 Feb 15;267:118954. doi: 10.1016/j.lfs.2020.118954. Epub 2020 Dec 24.
The scientific interest in irisin, a myokine discovered in 2012, has grown exponentially in recent years. Irisin, which is mainly produced in skeletal muscle, influences the browning process of adipose tissue and lipid and energy metabolism. Recent discoveries highlight that the potential of this hormone may have been underestimated. In the first part of this review, reports on irisin structure and molecules involved in its metabolic pathway are shown. Furthermore, data related to unclear aspects are also reported: distribution, different gene expression of its precursors in different tissues, physiological levels of circulating irisin, and pharmacokinetic and pharmacodynamic profile. The second part of this work focuses on exogenous stimuli and pharmacological agents which regulate the metabolic pathway of irisin and its serum concentration. In addition to physical exercise and exposure to low temperatures, which were early recognized as exogenous stimuli able to promote the production of this myokine, preclinical and clinical evidence demonstrates the ability of natural and synthetic molecules to interfere with this metabolic pathway. Current experimental data on irisin cannot dissolve all doubts related to this interesting molecule, but they certainly underline its potential for therapeutic purposes. Thus, identification of new pharmacological tools able to act on the irisin pathway is a challenging issue for biomedical research.
近年来,2012 年发现的肌肉因子鸢尾素引起了科学界的浓厚兴趣。鸢尾素主要在骨骼肌中产生,它影响脂肪组织和脂质及能量代谢的棕色化过程。最近的发现强调,这种激素的潜力可能被低估了。在这篇综述的第一部分,展示了关于鸢尾素结构和参与其代谢途径的分子的报告。此外,还报告了与不清楚的方面有关的数据:分布、其前体在不同组织中的不同基因表达、循环鸢尾素的生理水平以及药代动力学和药效学特征。这项工作的第二部分重点介绍了调节鸢尾素代谢途径及其血清浓度的外源性刺激物和药物。除了早期被认为能够促进这种肌肉因子产生的体育锻炼和低温暴露外,临床前和临床证据还证明了天然和合成分子有能力干扰这种代谢途径。目前关于鸢尾素的实验数据不能消除与这个有趣分子有关的所有疑问,但它们肯定强调了它在治疗方面的潜力。因此,确定能够作用于鸢尾素途径的新的药理学工具是生物医学研究的一个具有挑战性的问题。