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Biochimica Et Biophysica Acta|August 22, 1997
Competitive, non-competitive and cooperative interactions between substrates of P-glycoprotein as measured by its ATPase activityT Litman, T Zeuthen, T Skovsgaard, et al.The American Journal of Clinical Nutrition|December 1, 1992
Net calcium absorption in premature infants: results of 103 metabolic balance studiesF Bronner, B L Salle, G Putet, et al.Brain Research. Molecular Brain Research|January 29, 2000
Concentration- and cell type-specific effects of calbindin D28k on vulnerability of hippocampal neurons to seizure-induced injuryD S Gary, K Sooy, S L Chan, et al.Kidney International|August 1, 1993
Calbindin-D28k gene expression in the developing mouse kidneyL Liu, S T Dunn, S Christakos, et al.Current Protocols in Human Genetics|August 14, 2015
Improved Protocols for Illumina SequencingIraad F Bronner, Michael A Quail, Daniel J Turner, et al.Brain Research. Molecular Brain Research|July 1, 1994
Changes in glutamate receptor and proenkephalin gene expression after kindled seizuresS Lee, J Miskovsky, J Williamson, et al.Journal of Cellular Biochemistry|January 10, 2003
Vitamin D target proteins: function and regulationS Christakos, F Barletta, M Huening, et al.Breast Cancer Research and Treatment|August 25, 2001
1,25-dihydroxyvitamin D3 and retonic acid analogues induce differentiation in breast cancer cells with function- and cell-specific additive effectsQ Wang, D Lee, V Sysounthone, et al.DNA (Mary Ann Liebert, Inc.)|November 1, 1988
Molecular cloning of mammalian 28,000 Mr vitamin D-dependent calcium binding protein (calbindin-D28K): expression of calbindin-D28K RNAs in rodent brain and kidneyT L Wood, Y Kobayashi, G Frantz, et al.Endocrinology|July 1, 1987
Vitamin D-dependent calcium binding proteins in the kidney and intestine of the X-linked hypophosphatemic mouse: changes with age and responses to 1,25-dihydroxycholecalciferolM E Bruns, S Christakos, Y C Huang, et al.Pageof 26