Found 49 results
Filters: Keyword is Calcium [Clear All Filters]
Parathyroid hormone-related protein regulates intestinal calcium transport in sea bream (Sparus auratus). Am J Physiol Regul Integr Comp Physiol. 2006;291(5):R1499-506. doi:10.1152/ajpregu.00892.2005
. PTHrP potentiating estradiol-induced vitellogenesis in sea bream (Sparus auratus, L.). Gen Comp Endocrinol. 2006;149(2):159-65. doi:10.1016/j.ygcen.2006.05.016
. PTHrP regulation and calcium balance in sea bream (Sparus auratus L.) under calcium constraint. J Exp Biol. 2006;209(Pt 18):3550-7. doi:10.1242/jeb.02399
Calcium mobilization from fish scales is mediated by parathyroid hormone related protein via the parathyroid hormone type 1 receptor. Regul Pept. 2005;132(1-3):33-40. doi:10.1016/j.regpep.2005.08.004
. Characterization of Sparus aurata osteonectin cDNA and in silico analysis of protein conserved features: evidence for more than one osteonectin in Salmonidae. Biochimie. 2005;87(5):411-20. doi:10.1016/j.biochi.2005.01.008
. Structural evidence of a fourth Gla residue in fish osteocalcin: biological implications. Biochemistry. 2005;44(4):1234-42. doi:10.1021/bi048336z
Calcium handling in Sparus auratus: effects of water and dietary calcium levels on mineral composition, cortisol and PTHrP levels. J Exp Biol. 2004;207(Pt 23):4077-84. doi:10.1242/jeb.01254
. Calcium balance in sea bream (Sparus aurata): the effect of oestradiol-17beta. J Endocrinol. 2002;173(2):377-85.
. . . Parathyroid hormone-related protein: a calcium regulatory factor in sea bream (Sparus aurata L.) larvae. Am J Physiol Regul Integr Comp Physiol. 2001;281(3):R855-60.
. Olfactory sensitivity to changes in environmental [Ca(2+)] in the marine teleost Sparus aurata. J Exp Biol. 2000;203(Pt 24):3821-9.
. Calcium-transport in quiescent and 1,25-dihydroxycholecalciferol-stimulated human osteosarcoma cells. Role in 24 hydroxylase enhancement. Horm Metab Res. 1988;20(6):339-43. doi:10.1055/s-2007-1010831
. Molecular structure of the chicken vitamin D-induced calbindin-D28K gene reveals eleven exons, six Ca2+-binding domains, and numerous promoter regulatory elements. Mol Endocrinol. 1988;2(4):355-67. doi:10.1210/mend-2-4-355
. [Primary hyperparathyroidism seen in rheumatology. Clinical symptoms and the relation between bone histologic signs and biological parameters]. Rev Rhum Mal Osteoartic. 1988;55(7):489-94.
Lack of biological activity of vitamin D3-3 beta sulfate during lactation in vitamin D-deficient rats. Reprod Nutr Dev. 1987;27(6):979-97.
. Bone changes due to pregnancy and lactation: influence of vitamin D status. Am J Physiol. 1986;251(4 Pt 1):E400-6.
. Relationship between bone GLA-protein (BGP) and calcidiol (25-hydroxycalciferol) in serum of breast-fed infants. Endocrinol Exp. 1986;20(2-3):329-34.
. Relationship between the vitamin D content of maternal milk and the vitamin D status of nursing women and breast-fed infants. J Endocrinol. 1986;110(1):43-50.
. Effect of 25-hydroxyvitamin D3 and 1,25-dihydroxyvitamin D3 maternal loads on maternal and fetal vitamin D metabolite levels in the rat. Reprod Nutr Dev. 1985;25(3):583-90.
. Influence of vitamin D on mineral metabolism, hormonal status and bone histology in lactating rats and their pups. J Endocrinol. 1985;105(3):303-9.
. Vitamin D3 3 beta sulfate has less biological activity than free vitamin D3 during pregnancy in rats. Biol Neonate. 1985;48(5):274-84.
. Action of vitamin D3-3 beta-sulfate during lactation in the rat. World Rev Nutr Diet. 1984;43:153-7.
. Calcium phosphate metabolism and bone disease in patients with homozygous thalassemia. J Clin Endocrinol Metab. 1982;54(2):276-81. doi:10.1210/jcem-54-2-276