Mechanical Strain Regulates Osteoblast Proliferation through Integrin-Mediated ERK Activation

作者:Yan Yu xian*; Gong Yuan wei; Guo Yong; Lv Qi; Guo Chun; Zhuang Yan; Zhang Yuan; Li Ruixin; Zhang Xi zheng
来源:PLos One, 2012, 7(4): e35709.
DOI:10.1371/journal.pone.0035709

摘要

Mechanical strain plays a critical role in the proliferation, differentiation and maturation of bone cells. As mechanical receptor cells, osteoblasts perceive and respond to stress force, such as those associated with compression, strain and shear stress. However, the underlying molecular mechanisms of this process remain unclear. Using a four-point bending device, mouse MC3T3-E1 cells was exposed to mechanical tensile strain. Cell proliferation was determined to be most efficient when stimulated once a day by mechanical strain at a frequency of 0.5 Hz and intensities of 2500 mu epsilon with once a day, and a periodicity of 1 h/day for 3 days. The applied mechanical strain resulted in the altered expression of 1992 genes, 41 of which are involved in the mitogen-activated protein kinase (MAPK) signaling pathway. Activation of ERK by mechanical strain promoted cell proliferation and inactivation of ERK by PD98059 suppressed proliferation, confirming that ERK plays an important role in the response to mechanical strain. Furthermore, the membrane-associated receptors integrin beta 1 and integrin beta 5 were determined to regulate ERK activity and the proliferation of mechanical strain-treated MC3T3-E1 cells in opposite ways. The knockdown of integrin beta 1 led to the inhibition of ERK activity and cell proliferation, whereas the knockdown of integrin beta 5 led to the enhancement of both processes. This study proposes a novel mechanism by which mechanical strain regulates bone growth and remodeling.

  • 出版日期2012-4-23
  • 单位中国人民解放军军事医学科学院; 河北医科大学