Dobrosak Cale, Gooi Jonathan H
Department of Medicine, St. Vincent's Hospital Melbourne, University of Melbourne, Melbourne, VIC 3065, Australia.
Bone Rep. 2017 Oct 16;7:114-120. doi: 10.1016/j.bonr.2017.10.002. eCollection 2017 Dec.
Over the past few years interest has greatly increased in how the lipid mediator sphingosine-1-phosphate (S1P) influences bone homeostasis. Recent work has postulated multiple effects of S1P on osteoblasts and osteoclasts. Based on these findings, S1P has been proposed as a potential osteoporosis treatment. However, to date, there has been only a single study investigating S1P signalling in the cells that co-ordinate bone metabolism: osteocytes. This study aimed to elucidate the role of S1P signalling in osteocyte mechanotransduction. Utilising 3D cell culture we established the expression profile of all genes related to the S1P signalling system in the Ocy454 osteocyte cell line. Exposure to mechanical loading resulted in a downregulation in , , the S1P transporter, and the enzymes responsible for degradation and dephosphorylation of S1P. These findings, in conjunction with fluid-flow induced upregulation of , the kinase responsible for phosphorylation of sphingosine, suggest that mechanical stimulation of osteocytes leads to an increase in intracellular S1P. This was confirmed with mechanical loading of Ocy454 cells rapidly increasing S1P production in conditioned media and protein lysates. These findings strongly suggest an important role for S1P in the response to mechanical loading of bone.
在过去几年中,脂质介质鞘氨醇-1-磷酸(S1P)如何影响骨稳态受到了极大关注。最近的研究推测S1P对成骨细胞和破骨细胞有多种作用。基于这些发现,S1P被提议作为一种潜在的骨质疏松症治疗方法。然而,迄今为止,仅有一项研究调查了协调骨代谢的细胞(骨细胞)中的S1P信号传导。本研究旨在阐明S1P信号传导在骨细胞机械转导中的作用。利用3D细胞培养,我们建立了Ocy454骨细胞系中与S1P信号系统相关的所有基因的表达谱。暴露于机械负荷导致S1P转运体、负责S1P降解和去磷酸化的酶的表达下调。这些发现,结合流体流动诱导的负责鞘氨醇磷酸化的激酶的上调,表明对骨细胞的机械刺激导致细胞内S1P增加。这在对Ocy454细胞进行机械负荷时得到了证实,条件培养基和蛋白质裂解物中的S1P产量迅速增加。这些发现强烈表明S1P在骨对机械负荷的反应中起重要作用。