共 30 条
[11]
Rossi L., Migliaccio S., Corsi A., Marzia M., Bianco P., Teti A., Reduced growth and skeletal changes in zinc-deficient growing rats are due to impaired growth plate activity and inanition, J. Nutr, 131, pp. 1142-1146, (2001)
[12]
Diamonde I., Hurley L.S., Histopathology of zinc-deficient fetal rats, J. Nutr, 100, pp. 325-329, (1970)
[13]
Yamaguchi M., Matsui T., Stimulatory effect of zinc-chelating dipeptide on deoxyribonucleic acid synthesis in osteoblastic MC3T3-E1 cells, Peptides, 17, pp. 1207-1211, (1996)
[14]
Yamaguchi M., Oishi H., Suketa Y., Stimulatory effects of zinc on bone formation in tissue culture, Biochem. Pharmacol, 36, pp. 4007-4012, (1987)
[15]
Hall S.L., Dimai H.P., Farley J.R., Effects of zinc on human skeletal alkaline phosphatase activity in vitro, Calcif. Tissue. Int, 64, pp. 163-172, (1996)
[16]
Epstein S., Serum and urinary markers of bone remodeling: Assessment of bone turnover, Endocrine Rev, 9, pp. 437-438, (1988)
[17]
Christenson R.H., Biochemical markers of bone metabolism: An overview, Clin. Biochem, 30, pp. 573-593, (1997)
[18]
Sugawara Y., Suzuki K., Koshikawa M., Ando M., Iida J., Necessity of enzymatic activity of alkaline phosphatase for mineralization of osteoblastic cells, Jpn. J. Pharmacol, 88, pp. 262-269, (2002)
[19]
Rao L.G., Liu L.J., Murray T.M., McDermott E., Zhang X., Estrogen added intermittently but not continuously, stimulates differentiation and bone formation in SaOS-2 cells, Biol. Pharm. Bull, 26, pp. 936-945, (2003)
[20]
Tietz N.W., ed, Study group on alkaline phosphatase. A reference method for measurement of alkaline phosphatase activity in human serum, Clin. Chem, 29, (1983)