Magnitude-dependent response of osteoblasts regulated by compressive stress

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Abstract

The present study aimed to investigate the role of magnitude in adaptive response of osteoblasts exposed to compressive stress. Murine primary osteoblasts and MC3T3-E1 cells were exposed to compressive stress (0, 1, 2, 3, 4, and 5 g/cm 2) in 3D culture. Cell viability was evaluated, and expression levels of Runx2, Alp, Ocn, Rankl, and Opg were examined. ALP activity in osteoblasts and TRAP activity in RAW264.7 cells co-cultured with MC3T3-E1 cells were assayed. Results showed that compressive stress within 5.0 g/cm 2 did not influence cell viability. Both osteoblastic and osteoblast-regulated osteoclastic differentiation were enhanced at 2 g/cm 2. An increase in stress above 2 g/cm 2 did not enhance osteoblastic differentiation further but significantly inhibited osteoblast-regualted osteoclastic differentiation. This study suggested that compressive stress regulates osteoblastic and osteoclastic differentiation through osteoblasts in a magnitude-dependent manner.

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Shen, X. Q., Geng, Y. M., Liu, P., Huang, X. Y., Li, S. Y., Liu, C. D., … Xu, P. P. (2017). Magnitude-dependent response of osteoblasts regulated by compressive stress. Scientific Reports, 7. https://doi.org/10.1038/srep44925

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