Page 122 - IJB-4-2
P. 122
Shuai C, et al.
regulation of skeletal cell apoptosis. Role of calcium and electric fields. Biomed Eng Online, 10(1): 9. https://doi.
phosphate ions. J Biol Chem, 276(23): 20316–20322. https:// org/10.1186/1475-925X-10-9
doi.org/10.1074/jbc.M006492200 50. Baylink D J, Finkelman R D, Mohan S, 1993, Growth
40. Wã³Jcik-Piotrowicz K, Kaszuba-Zwoiå„Ska J, Rokita E, factors to stimulate bone formation. J Bone Miner Res,
et al., 2016, Cell viability modulation through changes 8(S2): S565–S572. https://doi.org/10.1002/jbmr.5650081326
of Ca(2+)-dependent signalling pathways. Prog Biophys 51. Pelissier P, Masquelet A C, Bareille R, et al., 2010, Induced
Mol Biol, 121(1): 45–53. https://doi.org/10.1016/ membranes secrete growth factors including vascular and
j.pbiomolbio.2016.01.004 osteoinductive factors and could stimulate bone regeneration.
41. Zhang X, Liu X, Pan L, et al., 2010, Magnetic fields at J Orthop Res, 22(1): 73–79. https://doi.org/10.1016/S0736-
extremely low-frequency (50 Hz, 0.8 mT) can induce 0266(03)00165-7
the uptake of intracellular calcium levels in osteoblasts. 52. Fitzsimmons R J, Strong D D, Mohan S, et al., 1992, Low-
Biochem Biophys Res Commun, 396(3): 662–666. https:// amplitude, low-frequency electric field-stimulated bone
doi.org/10.1016/j.bbrc.2010.04.154 cell proliferation may in part be mediated by increased
42. Pounder N M, Harrison A J, 2008, Low intensity pulsed IGF-II release. J Cell Physiol, 150(1): 84–89. https://doi.
ultrasound for fracture healing: A review of the clinical org/10.1002/jcp.1041500112
evidence and the associated biological mechanism of action. 53. Ijiri K, Matsunaga S, Fukuda T, et al., 1995, Indomethacin
Ultrasonics, 48(4): 330–338. https://doi.org/10.1016/ inhibition of ossification induced by direct current
j.ultras.2008.02.005 stimulation. J Orthop Res, 13(1): 123–131. https://doi.
43. Otter M W, Mcleod K J, Rubin C T, 1998, Effects of org/10.1002/jor.1100130118
electromagnetic fields in experimental fracture repair. Clin 54. Ignatius A, Blessing H, Liedert A, et al., 2005, Tissue
Orthop Relat Res, 355S(355 Suppl): 90–104. engineering of bone: effects of mechanical strain
44. Supronowicz P R, Ajayan P M, Ullmann K R, et al., 2002, on osteoblastic cells in type I collagen matrices.
Novel current-conducting composite substrates for exposing Biomaterials, 26(3): 311–318. https://doi.org/10.1016/
osteoblasts to alternating current stimulation. J Biomed j.biomaterials.2004.02.045
Mater Res, 59(3): 499–506. 55. Knippenberg M, Helder M N, Doulabi B Z, et al., 2005,
45. Brighton C T, Wang W, Seldes R, et al., 2001, Signal Adipose tissue-derived mesenchymal stem cells acquire bone
transduction in electrically stimulated bone cells. J Bone cell-like responsiveness to fluid shear stress on osteogenic
Joint Surg Am, 83-A(10): 1514–1523. stimulation. Tissue Eng, 11(12): 1780–1788. https://doi.
46. Kim I S, Song J K, Song Y M, et al., 2009, Novel effect org/10.1089/ten.2005.11.1780
of biphasic electric current on in vitro osteogenesis and 56. Morita Y, Watanabe S, Ju Y, et al., 2013, Determination of
cytokine production in human mesenchymal stromal optimal cyclic uniaxial stretches for stem cell-to-tenocyte
cells. Tissue Eng Part A, 15(9): 2411–2422. https://doi. differentiation under a wide range of mechanical stretch
org/10.1089/ten.tea.2008.0554 conditions by evaluating gene expression and protein
47. Xu J, Wang W, Clark C C, et al., 2009, Signal transduction synthesis levels. Acta Bioeng Biomech, 15(3): 71–79.
in electrically stimulated articular chondrocytes involves 57. Tsuzuki T, Okabe K, Kajiya H, et al., 2000, Osmotic
translocation of extracellular calcium through voltage-gated membrane stretch increases cytosolic Ca(2+) and inhibits
channels 1. Osteoarthritis Cartilage, 17(3): 397–405. https:// bone resorption activity in rat osteoclasts. Jpn J Physiol,
doi.org/10.1016/j.joca.2008.07.001 50(1): 67–76.
48. Zhuang H, Wang W, Seldes R M, et al., 1997, Electrical 58. Naruse K, Miyauchi A, Itoman M, et al., 2003, Distinct
stimulation induces the level of TGF-β1 mRNA in Anabolic Response of Osteoblast to Low–Intensity Pulsed
osteoblastic cells by a mechanism involving calcium/ Ultrasound. J Bone Miner Res, 18(2): 360–369. https://doi.
calmodulin pathway. Biochem Biophys Res Commun, 237(2): org/10.1359/jbmr.2003.18.2.360
225–229. https://doi.org/10.1006/bbrc.1997.7118 59. Lianyun X U, 2011, Investigation of pressure loading rates
49. Hroniktupaj M, Rice W L, Croningolomb M, et al., 2011, on streaming potentials in bone. Chinese Science: Technical
Osteoblastic differentiation and stress response of human Science, 54(6): 1376–1381.
mesenchymal stem cells exposed to alternating current 60. Hsu S H, Chang J C, 2010, The static magnetic field
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