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褪黑素:对骨质疏松症的一种潜在治疗方法及分子机制洞察

Melatonin: A Potential Therapy for Osteoporosis With Insights Into Molecular Mechanisms.

作者信息

Lu Ko-Hsiu, Hsieh Yi-Hsien, Lin Renn-Chia, Tsai Meng-Ying, Yang Shun-Fa

机构信息

Department of Orthopedics, Chung Shan Medical University Hospital, Taichung, Taiwan.

School of Medicine, Chung Shan Medical University, Taichung, Taiwan.

出版信息

J Pineal Res. 2025 Jul;77(4):e70062. doi: 10.1111/jpi.70062.

Abstract

Melatonin is a versatile neurohormone with diverse molecular functions, including sleep regulation, inflammation reduction, antioxidant activity, immune modulation, and anticancer properties. In bone metabolism, it promotes osteoblast formation, inhibits osteoclast activity, and synchronizes skeletal tissue rhythms to support bone health. As melatonin is not yet clinically used for osteoporosis and concerns about the current treatments' side effects remain, this review highlights its role in modulating osteoblast and osteoclast interactions, particularly through regulation of the receptor activator of nuclear factor-κB ligand and osteoprotegerin, to achieve bone-forming and antiresorptive effects. These effects have been demonstrated across various concentrations in diverse cell types and In Vivo models. Furthermore, melatonin safeguards the bone microenvironment by mitigating oxidative stress and inflammation, protecting osteoblasts, preventing bone loss, and maintaining the gut microbiota and brain-gut-bone axis. These attributes underscore melatonin's potential as an effective alternative or complementary therapy for promoting bone health and managing osteoporosis. Future research is needed to determine optimal dosing and timing for maximum efficacy.

摘要

褪黑素是一种具有多种分子功能的多功能神经激素,包括调节睡眠、减轻炎症、抗氧化活性、免疫调节和抗癌特性。在骨代谢中,它促进成骨细胞形成,抑制破骨细胞活性,并使骨骼组织节律同步以支持骨骼健康。由于褪黑素尚未在临床上用于治疗骨质疏松症,且对当前治疗方法的副作用仍存在担忧,本综述强调了其在调节成骨细胞和破骨细胞相互作用中的作用,特别是通过调节核因子-κB配体受体激活剂和骨保护素,以实现成骨和抗吸收作用。这些作用已在不同细胞类型和体内模型的各种浓度下得到证实。此外,褪黑素通过减轻氧化应激和炎症、保护成骨细胞、预防骨质流失以及维持肠道微生物群和脑-肠-骨轴来保护骨微环境。这些特性突出了褪黑素作为促进骨骼健康和管理骨质疏松症的有效替代或补充疗法的潜力。需要进一步的研究来确定最佳剂量和时间以实现最大疗效。

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