Department of Physiology and Cell Biology, University of Arkansas for Medical Sciences, Little Rock, Arkansas.
Winthrop P. Rockefeller Cancer Institute, University of Arkansas for Medical Sciences, Little Rock, Arkansas.
Physiol Rev. 2022 Jan 1;102(1):379-410. doi: 10.1152/physrev.00043.2020. Epub 2021 Aug 2.
Osteocytes, former osteoblasts encapsulated by mineralized bone matrix, are far from being passive and metabolically inactive bone cells. Instead, osteocytes are multifunctional and dynamic cells capable of integrating hormonal and mechanical signals and transmitting them to effector cells in bone and in distant tissues. Osteocytes are a major source of molecules that regulate bone homeostasis by integrating both mechanical cues and hormonal signals that coordinate the differentiation and function of osteoclasts and osteoblasts. Osteocyte function is altered in both rare and common bone diseases, suggesting that osteocyte dysfunction is directly involved in the pathophysiology of several disorders affecting the skeleton. Advances in osteocyte biology initiated the development of novel therapeutics interfering with osteocyte-secreted molecules. Moreover, osteocytes are targets and key distributors of biological signals mediating the beneficial effects of several bone therapeutics used in the clinic. Here we review the most recent discoveries in osteocyte biology demonstrating that osteocytes regulate bone homeostasis and bone marrow fat via paracrine signaling, influence body composition and energy metabolism via endocrine signaling, and contribute to the damaging effects of diabetes mellitus and hematologic and metastatic cancers in the skeleton.
骨细胞是被矿化骨基质包裹的成骨细胞前体,它们远非是被动的、代谢不活跃的骨细胞。相反,骨细胞是具有多功能和动态特性的细胞,能够整合激素和机械信号,并将其传递到骨骼和远处组织中的效应细胞。骨细胞是调节骨稳态的分子的主要来源,这些分子整合了机械线索和激素信号,协调破骨细胞和成骨细胞的分化和功能。骨细胞功能在罕见和常见的骨骼疾病中都发生了改变,这表明骨细胞功能障碍直接参与了影响骨骼的几种疾病的病理生理学过程。骨细胞生物学的进展催生了新型治疗方法的发展,这些方法干扰骨细胞分泌的分子。此外,骨细胞是介导几种临床应用的骨治疗药物的有益作用的生物信号的靶点和关键分布者。在这里,我们回顾了骨细胞生物学的最新发现,这些发现表明骨细胞通过旁分泌信号调节骨稳态和骨髓脂肪,通过内分泌信号影响身体成分和能量代谢,并有助于糖尿病以及血液学和转移性癌症在骨骼中的破坏性影响。
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