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破骨细胞的形成与分化:概述

Osteoclast formation and differentiation: an overview.

作者信息

Soysa Niroshani Surangika, Alles Neil, Aoki Kazuhiro, Ohya Keiichi

机构信息

Section of Pharmacology, Department of Bio-Matrix, Graduate School, Tokyo Medical and Dental University, Japan.

出版信息

J Med Dent Sci. 2012 Nov 8;59(3):65-74.

Abstract

Osteoclasts are multinucleated cells of hematopoietic origin which are unique in their ability to resorb bone. Osteoclasts are generated from myeloid progenitors through a progression that involves the fusion of mononuclear precursor cells. The identification of RANK-RANKL signaling as the main signal regulating osteoclast differentiation was a major breakthrough in the bone biology field. In addition remarkable discoveries have been made to broaden the knowledge of the molecular mechanisms of osteoclast formation and differentiation. Despite the vital requirement of osteoclasts in bone modeling and remodeling, bone-related conditions like osteoporosis, Paget's disease and rheumatoid arthritis where accelerated bone resorption takes place pose a major socioeconomic burden to the society. Hence, a better understanding of the pathways leading to osteoclast differentiation is vital in successfully managing such diseases. This is an attempt to give a birds-eye-view of the players in osteoclast formation and differentiation in a brief and concise manner.

摘要

破骨细胞是起源于造血系统的多核细胞,其独特之处在于具有吸收骨组织的能力。破骨细胞由髓系祖细胞通过单核前体细胞融合的过程产生。RANK-RANKL信号传导被确定为调节破骨细胞分化的主要信号,这是骨生物学领域的一项重大突破。此外,人们还取得了显著的发现,以拓宽对破骨细胞形成和分化分子机制的认识。尽管破骨细胞在骨建模和重塑中至关重要,但诸如骨质疏松症、佩吉特病和类风湿性关节炎等与骨相关的疾病,由于发生加速的骨吸收,给社会带来了重大的社会经济负担。因此,更好地理解导致破骨细胞分化的途径对于成功管理此类疾病至关重要。本文旨在简要而简洁地鸟瞰破骨细胞形成和分化过程中的相关因素。

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