Matsuo Koichi
Department of Microbiology and Immunology, School of Medicine, Keio University, Tokyo, Japan.
Curr Opin Nephrol Hypertens. 2009 Jul;18(4):292-7. doi: 10.1097/MNH.0b013e32832b75f1.
Bone cells such as osteoclasts, osteoblasts, and osteocytes 'talk' to each other throughout adult life to maintain bone integrity. This review highlights frontier areas of research on intercellular communication among bone cells.
Bone cells communicate to regulate the balance between bone resorption and bone formation. Recent findings have suggested that bone remodeling compartment is critical for osteoclast-osteoblast communication during bone remodeling. New molecules and mechanisms for bone cell communication, including 'coupling' of bone formation to resorption, have been revealed. Osteoclastic regulation of pH within the bone remodeling compartment is a mechanism that has been posited to rapidly activate osteoblastic bone formation, whereas osteocytes in the bone matrix regulate osteoclasts and osteoblasts on the bone surface through the lacuno-canaliculi network.
Differentiation, activation, and apoptosis of bone cells are often dependent on the status of other types of bone cells. Bone cells in different lineages achieve intercellular communication not only by ligand-receptor interactions but also by molecules and ions traveling in the extracellular space or across gap junctions, processes that depend profoundly on the four-dimensional (space and time) architecture of bone tissue.
破骨细胞、成骨细胞和骨细胞等骨细胞在成年期会相互“交流”以维持骨骼完整性。本综述重点介绍了骨细胞间细胞通讯的前沿研究领域。
骨细胞通过通讯来调节骨吸收与骨形成之间的平衡。近期研究结果表明,骨重塑微环境对于骨重塑过程中破骨细胞与成骨细胞的通讯至关重要。已揭示了骨细胞通讯的新分子和新机制,包括骨形成与吸收的“耦联”。骨重塑微环境内破骨细胞对pH的调节是一种被认为可快速激活成骨细胞骨形成的机制,而骨基质中的骨细胞则通过骨陷窝-小管网络调节骨表面的破骨细胞和成骨细胞。
骨细胞的分化、激活和凋亡通常取决于其他类型骨细胞的状态。不同谱系的骨细胞不仅通过配体-受体相互作用实现细胞间通讯,还通过在细胞外空间中移动或穿过缝隙连接的分子和离子来实现,这些过程在很大程度上依赖于骨组织的四维(空间和时间)结构。