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褪黑素在骨再生中的作用:相关信号通路的综述。

The role of melatonin in bone regeneration: A review of involved signaling pathways.

机构信息

Department of Biochemistry and Clinical Laboratories, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.

Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Biochimie. 2022 Nov;202:56-70. doi: 10.1016/j.biochi.2022.08.008. Epub 2022 Aug 22.

Abstract

Increasing bone resorption followed by decreasing bone mineralization are hallmarks of bone degeneration, which mostly occurs in the elderly population and post-menopausal women. The use of mesenchymal stem cells (MSCs) has raised many promises in the field of bone regeneration due to their high osteoblastic differentiation capacity and easy availability from abundant sources. A variety of compounds, including growth factors, cytokines, and other internal factors, have been combined with MSCs to increase their osteoblastic differentiation capacity. One of these factors is melatonin, whose possible regulatory role in bone metabolism and formation has recently been suggested by many studies. Melatonin also is a potential signaling molecule and can affect many of the signaling pathways involved in MSCs osteoblastic differentiation, such as activation of PI3K/AKT, BMP/Smad, MAPK, NFkB, Nrf2/HO-1, Wnt, SIRT/SOD, PERK/ATF4. Furthermore, melatonin in combination with other components such as strontium, vitamin D3, and vitamin K2 has a synergistic effect on bone microstructure and improves bone mineral density (BMD). In this review article, we aim to summarize the regulatory mechanisms of melatonin in osteoblastic differentiation of MSCs and underling involved signaling pathways as well as the clinical potential of using melatonin in bone degenerative disorders.

摘要

骨吸收增加,随后骨矿化减少是骨退变的特征,这种情况主要发生在老年人群和绝经后妇女中。间充质干细胞(MSCs)由于其具有较高的成骨分化能力,且易于从丰富的来源中获得,因此在骨再生领域引起了广泛关注。为了提高 MSCs 的成骨分化能力,已将包括生长因子、细胞因子和其他内部因素在内的多种化合物与 MSCs 结合使用。其中一种因素是褪黑素,许多研究最近表明,褪黑素可能对骨代谢和形成具有调节作用。褪黑素还是一种潜在的信号分子,可影响涉及 MSCs 成骨分化的许多信号通路,如 PI3K/AKT、BMP/Smad、MAPK、NFkB、Nrf2/HO-1、Wnt、SIRT/SOD、PERK/ATF4 的激活。此外,褪黑素与其他成分(如锶、维生素 D3 和维生素 K2)联合使用对骨微结构具有协同作用,并可提高骨密度(BMD)。在这篇综述文章中,我们旨在总结褪黑素在 MSCs 成骨分化中的调节机制及其涉及的信号通路,并探讨在骨退行性疾病中使用褪黑素的临床潜力。

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