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LITERATURE CITED

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  • Klein-Nulend J, van der Plas A, Semeins CM, Ajubi NE, Frangos JA, Nijweide PJ, Burger EH. 1995. Sensitivity of osteocytes to biomechanical stress in vitro. FASEB J 9: 441445.
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  • Liu S, Quarles LD. 2007. How fibroblast growth factor 23 works. J Am Soc Nephrol 18: 16371647.
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  • Oda K, Amaya Y, Fukushi-Irié M, Kinameri Y, Ohsuye K, Kubota I, Fujimura S, Kobayashi J. 1999. A general method for rapid purification of soluble versions of glycosylphosphatidylinositol-anchored proteins expressed in insect cells: an application for human tissue-nonspecific alkaline phosphatase. J Biochem 126: 694699.
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  • Ubaidus S, Li M, Sultana S, de Freitas PH, Oda K, Maeda T, Takagi R, Amizuka N. 2009. FGF23 is mainly synthesized by osteocytes in the regularly distributed osteocytic lacunar canalicular system established after physiological bone remodeling. J Electron Microsc (Tokyo) 58: 381392.
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  • Winkler DG, Sutherland MK, Geoghegan JC, Yu C, Hayes T, Skonier JE, Shpektor D, Jonas M, Kovacevich BR, Staehling-Hampton K, Appleby M, Brunkow ME, Latham JA. 2003. Osteocyte control of bone formation via sclerostin, a novel BMP antagonist. EMBO J 22: 62676276.
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