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破骨细胞在病理状态下的作用。

Roles of osteoclasts in pathological conditions.

作者信息

Kitazawa Sohei, Haraguchi Ryuma, Kitazawa Riko

机构信息

Department of Molecular Pathology, Ehime University Graduate School of Medicine, Shitsukawa, Toon City, Japan.

Division of Diagnostic Pathology, Ehime University Hospital, Shitsukawa, Toon City, Japan.

出版信息

Pathol Int. 2025 Feb;75(2):55-68. doi: 10.1111/pin.13500. Epub 2024 Dec 20.

Abstract

Bone is a unique organ crucial for locomotion, mineral metabolism, and hematopoiesis. It maintains homeostasis through a balance between bone formation by osteoblasts and bone resorption by osteoclasts, which is regulated by the basic multicellular unit (BMU). Abnormal bone metabolism arises from an imbalance in the BMU. Osteoclasts, derived from the monocyte-macrophage lineage, are regulated by the RANKL-RANK-OPG system, which is a key factor in osteoclast differentiation. RANKL activates osteoclasts through its receptor RANK, while OPG acts as a decoy receptor that inhibits RANKL. In trabecular bone, high turnover involves rapid bone formation and resorption, influenced by conditions such as malignancy and inflammatory cytokines that increase RANKL expression. Cortical bone remodeling, regulated by aged osteocytes expressing RANKL, is less understood, despite ongoing research into how Rett syndrome, characterized by MeCP2 abnormalities, affects RANKL expression. Balancing trabecular and cortical bone involves mechanisms that preserve cortical bone, despite overall bone mass reduction due to aging or oxidative stress. Research into genes like sFRP4, which modulates bone mass, highlights the complex regulation by BMUs. The roles of the RANKL-RANK-OPG system extend beyond bone, affecting processes such as aortic valve formation and temperature regulation, which highlight the interconnected nature of biological research.

摘要

骨骼是一种独特的器官,对运动、矿物质代谢和造血至关重要。它通过成骨细胞形成骨与破骨细胞吸收骨之间的平衡来维持体内稳态,这种平衡由基本多细胞单位(BMU)调节。骨代谢异常源于BMU的失衡。破骨细胞来源于单核细胞-巨噬细胞谱系,受RANKL-RANK-OPG系统调节,该系统是破骨细胞分化的关键因素。RANKL通过其受体RANK激活破骨细胞,而OPG作为诱饵受体抑制RANKL。在小梁骨中,高转换涉及快速的骨形成和吸收,受恶性肿瘤和炎症细胞因子等增加RANKL表达的条件影响。尽管正在研究以MeCP2异常为特征的雷特综合征如何影响RANKL表达,但由表达RANKL的衰老骨细胞调节的皮质骨重塑仍了解较少。尽管由于衰老或氧化应激导致总体骨量减少,但平衡小梁骨和皮质骨涉及保留皮质骨的机制。对调节骨量的sFRP4等基因的研究突出了BMU的复杂调节。RANKL-RANK-OPG系统的作用超出了骨骼范围,影响诸如主动脉瓣形成和体温调节等过程,这突出了生物学研究的相互联系性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3d5/11849001/69924f14ae06/PIN-75-55-g008.jpg

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