Journal of Oral Science Research ›› 2015, Vol. 31 ›› Issue (10): 1050-1052.
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WANG Zhu-yu, ZHANG Xiao-lei
Received:
2014-06-19
Online:
2015-10-28
Published:
2016-05-04
CLC Number:
WANG Zhu-yu, ZHANG Xiao-lei. Current Concepts in Mechanical Stimuli on Bone Remodeling[J]. Journal of Oral Science Research, 2015, 31(10): 1050-1052.
[1] Xiong J, Onal M, Jilka RL, et al. Matrix-embedded cells control osteoclast formation [J]. Nat Med, 2011, 17(10)∶1235-41 [2] Huang RP, Rubin CT, McLeod KJ. Changes in postural muscle dynamics as a function of age [J]. J Gerontol A Biol Sci Med Sci, 1999, 54(8)∶B352-7 [3] Pellegrinelli V, Heuvingh J, du Roure O, et al. Human adipocyte function is impacted by mechanical cues [J]. J Pathol, 2014, 12 [4] You LD, Weinbaum S, Cowin SC, Schaffler MB. Ultrastructure of the osteocyte process and its pericellular matrix [J]. Anat Rec A Discov Mol Cell Evol Biol, 2004, 278(2)∶505-13 [5] Lee DY, Yeh CR, Chang SF, et al. Integrin-mediated expression of bone formation-related genes in osteoblast-like cells in response to fluid shear stress: roles of extracellular matrix, Shc, and mitogen-activated protein kinase [J]. J Bone Miner Res, 2008, 23(7)∶1140-1149 [6] Peake MA, Cooling LM, Magnay JL, et al. Selected contribution: regulatory pathways involved in mechanical induction of c-fos gene expression in bone cells [J]. J Appl Physiol, 2000, 89(6)∶2498-2507 [7] Leucht P, Kim JB, Currey JA, et al. FAK-Mediated mechanotransduction in skeletal regeneration [J]. PLoS ONE, 2007, 2(4)∶e390 [8] Arita NA, Pelaez D, Cheung HS. Activation of the extracellular signal-regulated kinases 1 and 2 (ERK1/2) is needed for the TGFβ-induced chondrogenic and osteogenic differentiation of mesenchymal stem cells [J]. Biochem Biophys Res Commun, 2011, 405(4)∶564-9 [9] Sen B, Xie Z, Case N, et al. Mechanical signal influence on mesenchymal stem cell fate is enhanced by incorporation of refractory periods into the loading regimen [J]. J Biomech, 2011, 44(4)∶593-9 [10] Sen B, Guilluy C, Xie Z, et al. Mechanically induced focal adhesion assembly amplifies anti-adipogenic pathways in mesenchymal stem cells [J]. Stem cells, 2011, 29(11)∶1829-36 [11] Chen CS, Alonso JL, Ostuni E, et al. Cell shape provides global control of focal adhesion assembly. Biochemical and biophysical research communications [J]. Biochem Biophys Res Commun, 2003, 307(2)∶355-61 [12] Chatzizacharias NA, Kouraklis GP, Theocharis SE. Disruption of FAK signaling: a side mechanism in cytotoxicity [J]. Toxicology, 2008, 245(1-2)∶1-10 [13] Wang B, Du T, Wang Y, et al. Focal adhesion kinase signaling pathway is involved in mechanotransduction in MG-63 cells [J]. Biochem Biophys Res Commun, 2011, 410(3)∶671-6 [14] Case N, Rubin J. Beta-catenin--a supporting role in the skeleton [J]. J Cell Biochem, 2010, 110(3)∶545-53 [15] Tschumperlin DJ, Liu F, Tager AM. Biomechanical regulation of mesenchymal cell function [J]. Curr Opin Rheumatol, 2013, 25(1)∶92-100 [16] Rossini M, Gatti D, Adami S. Involvement of WNT/β-catenin signaling in the treatment of osteoporosis [J]. Calcif Tissue Int, 2013, 93(2)∶121-32[17] Kamel MA, Picconi JL, Lara-Castillo N, et al. Activation of beta-catenin signaling in MLO-Y4 osteocytic cells versus 2T3 osteoblastic cells by fluid flow shear stress and PGE2: Implications for the study of mechanosensation in bone [J]. Bone, 2010, 47(5)∶872-881 [18] Sen B, Styner M, Xie Z, et al. Mechanical loading regulates NFATc1 and betacatenin signaling through a GSK3beta control node [J]. J Biol Chem, 2009, 284(50)∶34607-17 [19] Burgers TA, Williams BO.Regulation of Wnt/β-catenin signaling within and from osteocytes [J]. Bone, 2013, 54(2)∶244-9 [20] Rangaswami H, Schwappacher R, Marathe N, et al. Cyclic GMP and protein kinase G control a Src-containing mechanosome in osteoblasts [J]. Sci Signal, 2010, 3(153)∶ra91 [21] Liu D, Genetos DC, Shao Y, et al. Activation of extracellularsignal regulated kinase (ERK1/2) by fluid shear is Ca(2+)- and ATP-dependent in MC3T3-E1 osteoblasts [J]. Bone, 2008, 42(4)∶644-652 [22] Malone AM, Anderson CT, Tummala P, et al. Primary cilia mediate mechanosensing in bone cells by a calcium-independent mechanism [J]. Proc Natl Acad Sci U S A, 2007, 104(33)∶13325-30 [23] Berbari NF, O'Connor AK, Haycraft CJ, et al. The primary cilium as a complex signaling center [J]. Curr Biol, 2009, 19(13)∶R526-35 [24] Kwon RY, Temiyasathit S, Tummala P, et al. Primary cilium-dependent mechanosensing is mediated by adenylyl cyclase 6 and cyclic AMP in bone cells [J]. FASEB J, 2010, 24(8)∶2859-68 [25] Bhadriraju K, Yang M, Alom Ruiz S, et al. Activation of ROCK by RhoA is regulated by cell adhesion, shape, and cytoskeletal tension [J]. Exp Cell Res, 2007, 313(16)∶3616-23 [26] Guilluy C, Swaminathan V, Garcia-Mata R, et, al. The Rho GEFs LARG and GEF-H1 regulate the mechanical response to force on integrins [J]. Nat, Cell Biol, 2011, 13(6)∶722-727 |
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