A. K. Abraham, D. E. Mager, G. Mi, X. Li, D. R. Healy et al., Mechanism-based pharmacokinetic/pharmacodynamic model of parathyroid hormone-calcium homeostasis in rats and humans, Journal of Pharmacology and Experimental Therapeutics, vol.330, issue.1, pp.169-178, 2009.

E. M. Adler, G. J. Augustine, S. N. Duffy, and C. Mp, Alien intracellular calcium chelators attenuate neurotransmitter release at the squid giant synapse, The Journal of Neuroscience, vol.11, issue.6, pp.1496-1507, 1991.

Z. S. Agus, P. J. Chiu, and M. Goldberg, Regulation of urinary calcium excretion in the rat, American Journal of Physiology-Renal Physiology, vol.232, issue.6, pp.545-549, 1977.

D. Ajibade, B. S. Benn, and C. S. , Mechanism of action of 1,25-dihydroxyvitamin D 3 on intestinal calcium absorption and renal calcium transport, Vitamin D: Physiology, Molecular Biology, and Clinical Applications, pp.175-187, 2010.

R. Al-sadi, M. Boivin, and M. T. , Mechanism of cytokine modulation of epithelial tight junction barrier, Frontiers in bioscience: a journal and virtual library, vol.14, pp.2765-2778, 2009.

R. T. Alexander, H. Dimke, and C. E. , Proximal tubular NHEs: sodium, protons and calcium?, American Journal of Physiology-Renal Physiology, vol.305, issue.3, pp.229-236, 2013.

O. Andrukhova, A. Smorodchenko, M. Egerbacher, C. Streicher, U. Zeitz et al., Lanske B, and others. FGF23 promotes renal calcium reabsorption through the TRPV5 channel, The EMBO Journal, vol.33, issue.3, pp.229-246, 2014.

G. J. Atkins and D. M. Findlay, Osteocyte regulation of bone mineral: a little give and take, Osteoporosis international, vol.23, issue.8, pp.2067-2079, 2012.

J. Aubert, F. Bronner, and R. Lj, Quantitation of calcium metabolism. theory, Journal of Clinical Investigation, vol.42, issue.6, pp.885-897, 1963.

A. Jp and F. Bronner, A symbolic model for the regulation by bone metabolism of the blood calcium level in rats, Biophysical journal, vol.5, issue.3, pp.349-358, 1965.

A. Jp and G. Milhaud, Méthode de mesure des principales voies du métabolisme calcique chez l'homme, Biochimica et Biophysica acta, vol.39, issue.1, pp.122-139, 1960.

M. S. Barnes, M. P. Bonham, P. J. Robson, J. J. Strain, A. S. Lowe-strong et al., Assessment of 25-hydroxyvitamin D and 1,25-dihydroxyvitamin D 3 concentrations in male and female multiple sclerosis patients and control volunteers, Multiple Sclerosis, vol.13, issue.5, pp.670-672, 2007.

N. A. Barnicot, The local action of the parathyroid and other tissues on bone in intracerebral grafts, Journal of anatomy, vol.82, issue.4, pp.233-248, 1948.

T. Bellido, A. A. Ali, L. I. Plotkin, Q. Fu, I. Gubrij et al., Proteasomal degradation of Runx2 shortens parathyroid hormone-induced anti-apoptotic signaling in osteoblasts a putative explanation for why intermittent administration is needed for bone anabolism, Journal of Biological Chemistry, vol.278, issue.50, pp.50259-50272, 2003.

I. Z. Ben-dov, H. Galitzer, V. Lavi-moshayoff, R. Goetz, M. Kuro-o et al., The parathyroid is a target organ for FGF23 in rats, The Journal of clinical investigation, vol.117, issue.12, pp.4003-4008, 2007.

H. H. Bengele, E. A. Alexander, and C. P. Lechene, Calcium and magnesium transport along the inner medullary collecting duct of the rat, American Journal of Physiology-Renal Physiology, vol.239, issue.1, pp.24-29, 1980.

B. S. Benn, D. Ajibade, A. Porta, P. Dhawan, M. Hediger et al., Active intestinal calcium transport in the absence of transient receptor potential vanilloid type 6 and calbindin-D 9k, Endocrinology, vol.149, issue.6, pp.3196-3205, 2008.

C. Bergwitz and H. Jüppner, Regulation of phosphate homeostasis by PTH, vitamin D, and FGF23. Annual review of medicine, vol.61, pp.91-104, 2010.

C. Bergwitz and H. Jüppner, Regulation of phosphate homeostasis by PTH, vitamin D, and FGF23, Annual Review of Medicine, vol.61, pp.91-104, 2010.

J. F. Bernardo and P. A. Friedman, Renal calcium metabolism, Seldin and Giebisch's The Kidney, pp.2225-2247, 2013.

P. Besançon, L. Guéguen, K. Colette, and J. Gauthier, Les principales voies du métabolisme calcique chez le porc en croissance, Annales de Biologie Animale Biochimie Biophysique, vol.9, issue.4, pp.537-553, 1969.

A. Besarab, A. Deguzman, and J. W. Swanson, Effect of albumin and free calcium concentrations on calcium binding in vitro, Journal of clinical pathology, vol.34, issue.12, pp.1361-1367, 1981.

J. Biber, N. Hernando, I. Forster, and H. Murer, Regulation of phosphate transport in proximal tubules, Pflügers Archiv-European Journal of Physiology, vol.458, issue.1, pp.39-52, 2009.

M. Bichara, O. Mercier, P. Borensztein, and M. Paillard, Acute metabolic acidosis enhances circulating parathyroid hormone, which contributes to the renal response against acidosis in the rat, Journal of Clinical Investigation, vol.86, issue.2, pp.430-443, 1990.

R. J. Bindels, A. Hartog, J. Timmermans, V. Os, and C. H. , Active Ca 2+ transport in primary cultures of rabbit kidney CCD: stimulation by 1, 25-dihydroxyvitamin D 3 and PTH, American Journal of Physiology-Renal Physiology, vol.261, issue.5, pp.799-807, 1991.

J. Blaine, M. Chonchol, and L. M. , Renal control of calcium, phosphate, and magnesium homeostasis, Clinical Journal of the American Society of Nephrology, p.9750913, 2014.

M. Blanu?a, M. Bogunovi?, and V. Matkovi?, Kinetic parameters of calcium metabolism and femur morphometry in rats. i. influence of sex and age, Pflügers Archiv, vol.375, issue.3, pp.233-238, 1978.

L. F. Bonewald and M. J. Wacker, FGF23 production by osteocytes, Pediatric nephrology, vol.28, issue.4, pp.563-568, 2013.

B. O. Edwards and A. , Calcium reabsorption in the distal tubule: regulation by sodium, ph, and flow, American Journal of Physiology-Renal Physiology, vol.304, issue.5, pp.585-600, 2013.

A. L. Boskey and R. Coleman, Aging and bone, Journal of dental research, vol.89, issue.12, pp.1333-1348, 2010.

A. E. Broadus, R. L. Horst, R. Lang, E. T. Littledike, and H. Rasmussen, The importance of circulating 1, 25-dihydroxyvitamin D in the pathogenesis of hypercalciuria and renal-stone formation in primary hyperparathyroidism, New England Journal of Medicine, vol.302, issue.8, pp.421-426, 1980.

F. Bronner, Renal calcium transport: mechanisms and regulation-an overview, American Journal of Physiology-Renal Physiology, vol.257, issue.5, pp.707-711, 1989.

F. Bronner, Extracellular and intracellular regulation of calcium homeostasis, The Scientific World Journal, vol.1, pp.919-925, 2001.
DOI : 10.1100/tsw.2001.489

URL : http://downloads.hindawi.com/journals/tswj/2001/540130.pdf

F. Bronner, Mechanisms and functional aspects of intestinal calcium absorption, Journal of Experimental Zoology, vol.300, issue.1, pp.47-52, 2003.
DOI : 10.1002/jez.a.10308

F. Bronner, D. Pansu, and W. D. Stein, An analysis of intestinal calcium transport across the rat intestine, American Journal of Physiology-Gastrointestinal and Liver Physiology, vol.250, issue.5, pp.561-569, 1986.
DOI : 10.1152/ajpgi.1986.250.5.g561

F. Bronner and D. Stein, Calcium homeostasis: an old problem revisited. Kinetic Models of Trace Element and Mineral Metabolism During Development, vol.125, pp.1987-1995, 1995.
DOI : 10.1093/jn/125.suppl_7.1987s

E. M. Brown, Four-parameter model of the sigmoidal relationship between parathyroid hormone release and extracellular calcium concentration in normal and abnormal parathyroid tissue, The Journal of Clinical Endocrinology & Metabolism, vol.56, issue.3, pp.572-581, 1983.

E. M. Brown, Role of the calcium-sensing receptor in extracellular calcium homeostasis, Best Practice & Research Clinical Endocrinology & Metabolism, vol.27, issue.3, pp.333-343, 2013.

D. A. Bushinsky, K. J. Neumann, J. Asplin, and N. S. Krieger, Alendronate decreases urine calcium and supersaturation in genetic hypercalciuric rats, Kidney International, vol.55, issue.1, pp.234-243, 1999.
DOI : 10.1046/j.1523-1755.1999.00247.x

URL : https://doi.org/10.1046/j.1523-1755.1999.00247.x

D. A. Bushinsky, W. R. Parker, and J. R. Asplin, Calcium phosphate supersaturation regulates stone formation in genetic hypercalciuric stone-forming rats, Kidney international, vol.57, issue.2, pp.550-560, 2000.
DOI : 10.1046/j.1523-1755.2000.t01-1-00875.x

D. A. Bushinsky, G. S. Riera, M. J. Favus, and C. Fl, Evidence that blood ionized calcium can regulate serum 1,25(OH) 2 D 3 independently of parathyroid hormone and phosphorus in the rat, Journal of Clinical Investigation, vol.76, issue.4, p.15991604, 1985.

R. Canalejo, A. Canalejo, J. M. Martinez-moreno, M. E. Rodriguez-ortiz, J. C. Estepa et al., FGF23 fails to inhibit uremic parathyroid glands, Journal of the American Society of Nephrology, vol.21, issue.7, pp.1125-1135, 2010.

W. B. Cannon, In: À Charles Richet. Ses amis, ses collègues, ses élèves. 23 mai 1926, impr. des éditions médicales, pp.91-93, 1926.

G. Capasso, P. J. Geibel, S. Damiano, P. Jaeger, W. G. Richards et al., The calcium sensing receptor modulates fluid reabsorption and acid secretion in the proximal tubule, Kidney international, vol.84, issue.2, pp.277-284, 2013.

P. Capuano, T. Radanovic, C. A. Wagner, D. Bacic, S. Kato et al., Intestinal and renal adaptation to a low-Pi diet of type ii naPi cotransporters in vitamin D receptor-and 1?OHase-deficient mice, American Journal of Physiology-Cell Physiology, vol.288, issue.2, pp.429-434, 2005.

A. Carlsson and B. Lindquist, Comparison of intestinal and skeletal effects of vitamin D in relation to dosage, Acta Physiologica Scandinavica, vol.35, issue.1, pp.53-55, 1955.

S. L. Carney and J. H. Dirks, Effect of parathyroid and antidiuretic hormone on water and calcium permeability in the rat collecting duct, Mineral and electrolyte metabolism, vol.14, issue.2-3, pp.142-145, 1987.

A. Chanakul, M. Zhang, A. Louw, H. J. Armbrecht, W. L. Miller et al., FGF-23 regulates CYP27B1 transcription in the kidney and in extra-renal tissues, PloS one, vol.8, issue.9, pp.1-11, 2013.

H. Chen, D. Hayakawa, S. Emura, Y. Ozawa, T. Okumura et al., Effect of low or high dietary calcium on the morphology of the rat femur, Histology and Histopathology, vol.17, issue.4, pp.1129-1136, 2002.

Z. Cheng, N. Liang, T. H. Chen, A. Li, S. Maria et al., Sex and age modify biochemical and skeletal manifestations of chronic hyperparathyroidism by altering target organ responses to Ca 2+ and parathyroid hormone in mice, Journal of Bone and Mineral Research, vol.28, issue.5, pp.1087-1100, 2013.

C. R. Christie, L. Achenie, and O. Ba, A control engineering model of calcium regulation, The Journal of Clinical Endocrinology & Metabolism, vol.99, issue.8, pp.2844-2853, 2014.

A. R. Chughtai, R. Marshall, and G. H. Nancollas, Complexes in calcium phosphate solutions, The Journal of physical chemistry, vol.72, issue.1, pp.208-211, 1968.

J. Chung, I. Granja, M. G. Taylor, G. Mpourmpakis, J. R. Asplin et al., Molecular modifiers reveal a mechanism of pathological crystal growth inhibition, pp.1-5, 2016.
DOI : 10.1038/nature19062

T. E. Ciarelli, D. P. Fyhrie, and P. Am, Effects of vertebral bone fragility and bone formation rate on the mineralization levels of cancellous bone from white females, Bone, vol.32, issue.3, pp.311-315, 2003.

S. H. Cohn, T. M. Teree, and G. Ea, Effect of varying calcium intake on the parameters of calcium metabolism in the rat, The Journal of Nutrition, vol.94, issue.2, pp.261-267, 1968.

R. Collazo, L. Fan, M. C. Hu, H. Zhao, M. R. Wiederkehr et al., Acute regulation of na + /h + exchanger NHE3 by parathyroid hormone via NHE3 phosphorylation and dynamindependent endocytosis, Journal of Biological Chemistry, vol.275, issue.41, pp.31601-31608, 2000.
DOI : 10.1074/jbc.m000600200

URL : http://www.jbc.org/content/275/41/31601.full.pdf

J. B. Collip, The extraction of a parathyroid hormone which will prevent or control parathyroid tetany and which regulates the level of blood calcium, Journal of Biological Chemistry, vol.63, issue.2, pp.395-438, 1925.

D. A. Cook, Availability of magnesium: balance studies in rats with various inorganic magnesium salts, The Journal of nutrition, vol.103, issue.9, pp.1365-1370, 1973.

D. H. Copp, B. Cheney, and O. , Calcitonin-a hormone from the parathyroid which lowers the calcium-level of the blood, Nature, vol.193, pp.381-382, 1962.

M. Courbebaisse and J. C. Souberbielle, Equilibre phosphocalcique: régulation et explorations, Néphrologie & Thérapeutique, vol.7, issue.2, pp.118-138, 2011.

D. Baaij, J. Hoenderop, J. Bindels, and R. , Regulation of magnesium balance: lessons learned from human genetic disease, Clinical kidney journal, vol.5, issue.1, pp.15-24, 2012.

K. K. Deeb, D. L. Trump, and J. Cs, Vitamin D signalling pathways in cancer: potential for anticancer therapeutics, Nature Reviews Cancer, vol.7, issue.9, pp.684-700, 2007.

R. A. Defronzo, C. R. Cooke, R. Andres, G. R. Faloona, and D. Pj, The effect of insulin on renal handling of sodium, potassium, calcium, and phosphate in man, Journal of Clinical Investigation, vol.55, issue.4, pp.845-855, 1975.

D. Valle, H. B. Yaktine, A. L. Taylor, C. L. , and R. Ac, Overview of vitamin D, Dietary Reference Intakes: Calcium-Vitamin D, pp.75-125, 2011.

D. Im and R. L. Prince, Estrogen effects on the renal handling of calcium in the ovariectomized perfused rat, Kidney international, vol.51, issue.6, pp.1719-1728, 1997.

H. Dimke, P. Desai, J. Borovac, A. Lau, W. Pan et al., Activation of the Ca 2+sensing receptor increases renal claudin-14 expression and urinary Ca 2+ excretion, American Journal of Physiology-Renal Physiology, vol.304, issue.6, pp.761-769, 2013.

G. Duque, D. Rivas, D. Li, W. Li, A. Henderson et al., Agerelated bone loss in the LOU/c rat model of healthy ageing, Experimental Gerontology, vol.44, issue.3, pp.183-189, 2009.

A. S. Dusso, A. J. Brown, S. E. Vitamin, and D. , American Journal of PhysiologyRenal Physiology, vol.289, issue.1, pp.8-28, 2005.

A. Edwards, Regulation of calcium reabsorption along the rat nephron: A modeling study, American Journal of Physiology-Renal Physiology, vol.308, issue.6, pp.553-566, 2015.

O. Egbuna, S. Quinn, L. Kantham, R. Butters, J. Pang et al., The full-length calcium-sensing receptor dampens the calcemic response to 1?, vol.25

, vitamin D 3 in vivo independently of parathyroid hormone, American Journal of PhysiologyRenal Physiology, vol.297, issue.3, pp.720-728, 2009.

F. Faivre-defrance, S. Marcelli-tourvieille, M. Odou, N. Porchet, J. Wemeau et al., Le récepteur sensible au calcium: physiologie et pathologie. Annales d' Endocrinologie, vol.67, pp.45-53, 2006.

M. J. Favus, D. A. Bushinsky, and L. J. , Regulation of calcium, magnesium, and phosphate metabolism, Primer on the metabolic bone diseases and disorders of mineral metabolism, pp.76-83, 2006.

J. J. Feher, C. S. Fullmer, and R. H. Wasserman, Role of facilitated diffusion of calcium by calbindin in intestinal calcium absorption, American Journal of Physiology-Cell Physiology, vol.262, issue.2, pp.517-526, 1992.

R. S. Feldman, N. S. Krieger, T. Jr, and A. H. , Effects of parathyroid hormone and calcitonin on osteoclast formation in vitro, Endocrinology, vol.107, issue.4, pp.1137-1143, 1980.

A. J. Felsenfeld, A. Jara, G. Avedian, and C. R. Kleeman, Effects of fasting, feeding, and bisphosphonate administration on serum calcitriol levels in phosphate-deprived rats, Kidney International, vol.58, issue.3, pp.1016-1022, 2000.

C. Fleck, Determination of the glomerular filtration rate (GFR) methodological problems, age-dependence, consequences of various surgical interventions, and the influence of different drugs and toxic substances, Physiological research Academia Scientiarum Bohemoslovaca, vol.48, issue.4, pp.267-279, 1998.

J. C. Fleet and R. D. Schoch, Molecular mechanisms for regulation of intestinal calcium absorption by vitamin D and other factors, Critical Reviews in Clinical Laboratory Sciences, vol.47, issue.4, pp.181-195, 2010.

H. Fleisch, The bisphosphonate ibandronate, given daily as well as discontinuously, decreases bone resorption and increases calcium retention as assessed by 45 Ca kinetics in the intact rat, Osteoporosis International, vol.6, issue.2, pp.166-170, 1996.

N. Fogh-andersen, Albumin/calcium association at different ph, as determined by potentiometry, Clinical chemistry, vol.23, issue.11, pp.2122-2126, 1977.

F. Kordel, J. Bertini, . Gray, J. S. Sj-lippard, and . Valentine, Calcium in biological systems, Bioinorganic Chemistry, pp.107-166, 1994.

J. Fox, Regulation of parathyroid hormone secretion by plasma calcium in aging rats, American Journal of Physiology-Endocrinology and Metabolism, vol.260, issue.2, pp.220-225, 1991.

P. A. Friedman, Mechanisms of renal calcium transport, Nephron Experimental Nephrology, vol.8, issue.6, pp.343-350, 2000.

P. A. Friedman and F. A. Gesek, Cellular calcium transport in renal epithelia: measurement, mechanisms, and regulation, Physiological Reviews, vol.75, issue.3, pp.429-471, 1995.

H. Fujita, K. Sugimoto, S. Inatomi, T. Maeda, M. Osanai et al., Tight junction proteins claudin-2 and-12 are critical for vitamin D-dependent Ca 2+ absorption between enterocytes, Molecular Biology of the Cell, vol.19, issue.5, pp.1912-1921, 2008.

S. Fukumoto, Phosphate metabolism and vitamin D, BoneKEy reports, vol.3, pp.1-5, 2014.

L. Gama, L. M. Baxendale-cox, and G. E. Breitwieser, Ca 2+-sensing receptors in intestinal epithelium, American Journal of Physiology-Cell Physiology, vol.273, issue.4, pp.1168-1175, 1997.

T. J. Gardella and H. Jüppner, Molecular properties of the PTH/PTHrP receptor, Trends in Endocrinology & Metabolism, vol.12, issue.5, pp.210-217, 2001.

M. K. Garg and N. Mahalle, Calcium homeostasis, and clinical or subclinical vitamin D deficiency-can a hypothesis of intestinal calcistat explain it all?, Medical hypotheses, vol.81, issue.2, pp.253-258, 2013.

J. P. Geibel and S. C. Hebert, The functions and roles of the extracellular Ca 2+-sensing receptor along the gastrointestinal tract, Annual Review of Physiology, vol.71, pp.205-217, 2009.

I. Gennero, P. Moulin, E. T. Conte-auriol, F. Tauber, M. T. Salles et al., Métabolisme minéral osseux: données récentes et perspectives relatives à l'ostéogenèse, Archives de Pédiatrie, vol.11, issue.12, pp.1473-1483, 2004.

F. Grases, O. Söhnel, A. I. Vilacampa, and J. G. March, Phosphates precipitating from artificial urine and fine structure of phosphate renal calculi, Clinica chimica acta, vol.244, issue.1, pp.45-67, 1996.

R. W. Gray, Control of plasma 1, 25-(OH) 2-vitamin D concentrations by calcium and phosphorus in the rat: effects of hypophysectomy, Calcified tissue international, vol.33, issue.1, pp.485-488, 1981.

R. W. Gray, Control of plasma 1,25-(OH) 2-vitamin D concentrations by calcium and phosphorus in the rat: effects of hypophysectomy, Calcified Tissue International, vol.33, issue.1, pp.485-488, 1981.

R. Greger, F. Lang, H. Oberleithner, and D. P. , Handling of oxalate by the rat kidney, Pflügers Archiv, vol.374, issue.3, pp.243-248, 1978.

H. Juppner, A. Portale, G. H. Singh, and . Williams, Endocrine regulation of phosphate homeostasis, Textbook of Nephro-Endocrinology, pp.105-126, 2009.

S. T. Haden, E. M. Brown, S. Hurwitz, J. Scott, and G. Fuleihan, The effects of age and gender on parathyroid hormone dynamics, Clinical Endocrinology, vol.52, issue.3, pp.329-338, 2000.

K. V. Haderslev, P. B. Jeppesen, P. B. Mortensen, and M. Staun, Absorption of calcium and magnesium in patients with intestinal resections treated with medium chain fatty acids, Gut, vol.46, issue.6, pp.819-823, 2000.

B. Halloran, P. Uden, Q. Y. Duh, S. Kikuchi, T. Wieder et al., Parathyroid gland volume increases with postmaturational aging in the rat, American Journal of PhysiologyEndocrinology and Metabolism, vol.282, issue.3, pp.557-563, 2002.

W. J. Heideger and M. E. Ferguson, A theoretical model for calcium absorption from the intestinal lumen, Journal of Theoretical Biology, vol.114, issue.4, pp.657-664, 1985.

A. Heiss, V. Pipich, W. Jahnen-dechent, and D. Schwahn, Fetuin-A is a mineral carrier protein: small angle neutron scattering provides new insight on fetuin-A controlled calcification inhibition, Biophysical journal, vol.99, issue.12, pp.3986-3995, 2010.

F. K. Herbert, H. G. Miller, and R. Go, Chronic renal disease, secondary parathyroid hyperplasia, decalcification of bone and metastatic calcification, The Journal of Pathology and Bacteriology, vol.53, issue.2, pp.161-182, 1941.

M. Herrmann, C. Schäfer, A. Heiss, S. Gräber, A. Kinkeldey et al., Clearance of fetuin-A-containing calciprotein particles is mediated by scavenger receptor-A, Circulation research, vol.111, issue.5, pp.575-584, 2012.

J. Hoenderop, D. Müller, K. Van-der, A. Hartog, A. Suzuki et al., Van Os CH, and others. Calcitriol controls the epithelial calcium channel in kidney, Journal of the American Society of Nephrology, vol.12, issue.7, pp.1342-1349, 2001.

J. Hoenderop, B. Nilius, and R. Bindels, Calcium absorption across epithelia, Physiological reviews, vol.85, issue.1, pp.373-422, 2005.

Y. J. Hsu, H. Dimke, J. Schoeber, S. C. Hsu, S. H. Lin et al., Testosterone increases urinary calcium excretion and inhibits expression of renal calcium transport proteins, Kidney international, vol.77, issue.7, pp.601-608, 2010.

S. Hurwitz, S. Fishman, A. Bar, M. Pines, G. Riesenfeld et al., Simulation of calcium homeostasis: modeling and parameter estimation, American Journal of PhysiologyRegulatory, Integrative and Comparative Physiology, vol.245, issue.5, pp.664-672, 1983.

S. Hurwitz, S. Fishman, and H. Talpaz, Model of plasma calcium regulation: system oscillations induced by growth, American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, vol.252, issue.6, pp.1173-1181, 1987.

P. Jaeger, W. Jones, M. Kashgarian, R. Baron, T. L. Clemens et al., Animal model of primary hyperparathyroidism, American Journal of Physiology-Endocrinology And Metabolism, vol.252, issue.6, pp.790-798, 1987.

J. Pitts and R. F. , Effect of parathyroid on renal tubular reabsorption of phosphate and calcium, American Journal of Physiology-Legacy Content, vol.155, issue.1, pp.42-49, 1948.

W. Jahnen-dechent, A. Heiss, C. Schäfer, and M. Ketteler, Fetuin-A regulation of calcified matrix metabolism, Circulation research, vol.108, issue.12, pp.1494-1509, 2011.

S. E. Jin, J. S. Park, and K. Ck, Pharmacokinetics of oral calcitriol in healthy human based on the analysis with an enzyme immunoassay, Pharmacological Research, vol.60, issue.1, pp.57-60, 2009.

G. Jones, D. E. Prosser, and M. Kaufmann, 25-hydroxyvitamin D-24-hydroxylase (CYP24A1): its important role in the degradation of vitamin D, Archives of biochemistry and biophysics, vol.523, issue.1, pp.9-18, 2012.

U. Karbach, Paracellular calcium transport across the small intestine, The Journal of nutrition, vol.122, issue.3S, pp.672-677, 1992.

S. A. Kempson, M. Lotscher, B. Kaissling, J. Biber, H. Murer et al., Parathyroid hormone action on phosphate transporter mRNA and protein in rat renal proximal tubules, American Journal of Physiology-Renal Physiology, vol.268, issue.4, pp.784-791, 1995.

A. D. Kenny, Urinary calcium response to chronic parathyroidectomy in rats, Endocrinology, vol.79, issue.1, pp.77-80, 1966.

R. S. Khan, R. Hackett, B. Brown, and . Constantz, Pathological crystallization of calcium oxalate and calcium phosphate, Hydroxyapatite and related materials, pp.83-92, 1994.

R. C. Khanal and I. Nemere, Regulation of intestinal calcium transport, Annual Review of Nutrition, vol.28, pp.179-196, 2008.

A. Khosravi, C. M. Cutler, M. H. Kelly, R. Chang, R. E. Royal et al., Determination of the elimination half-life of fibroblast growth factor-23, The Journal of Clinical Endocrinology & Metabolism, vol.92, issue.6, pp.2374-2377, 2007.

R. Kilav, J. Silver, N. , and T. , Parathyroid hormone gene expression in hypophosphatemic rats, Journal of Clinical Investigation, vol.96, issue.1, pp.327-333, 1995.

U. Kini, B. Nandeesh, I. Fogelman, G. Gnanasegaran, H. Van-der-wall et al., Physiology of bone formation, remodeling, and metabolism, Radionuclide and Hybrid Bone Imaging, pp.29-57, 2012.

L. Klein, Steady-state relationship of calcium-45 between bone and blood: differences in growing dogs, chicks, and rats, Science, vol.214, issue.4517, pp.190-193, 1981.

J. Knop, K. Reichstein, and M. R. , A 47 Calcium kinetic model with two bone compartments, European Journal of Nuclear Medicine, vol.2, issue.1, pp.35-41, 1977.

H. Komaba and M. Fukagawa, FGF23-parathyroid interaction: implications in chronic kidney disease, Kidney international, vol.77, issue.4, pp.292-298, 2010.

T. Krajisnik, P. Björklund, R. Marsell, Ö. Ljunggren, G. Åkerström et al., Fibroblast growth factor-23 regulates parathyroid hormone and 1?-hydroxylase expression in cultured bovine parathyroid cells, Journal of Endocrinology, vol.195, issue.1, pp.125-131, 2007.
DOI : 10.1677/joe-07-0267

URL : http://joe.endocrinology-journals.org/content/195/1/125.full.pdf

S. Kurbel, R. Radic, Z. Kotromanovic, and Z. Puseljic, A calcium homeostasis model: orchestration of fast acting PTH and calcitonin with slow calcitriol, Medical Hypotheses, vol.61, issue.3, pp.346-350, 2003.

. Kuro-o-m, Calciprotein particle (CPP): a true culprit of phosphorus woes?, Nefrologia, vol.34, issue.1, pp.1-4, 2014.

H. B. Lee and M. D. Blaufox, Blood volume in the rat, Journal of Nuclear Medicine, vol.26, issue.1, pp.72-76, 1985.

W. H. Lee, B. K. Cho, and O. Mr, A theoretical modeling for suggesting unique mechanism of adolescent calcium metabolism, Journal of Biosystems Engineering, vol.38, issue.2, pp.1-9, 2013.

V. Lemaire, F. L. Tobin, L. D. Greller, C. R. Cho, and L. J. Suva, Modeling the interactions between osteoblast and osteoclast activities in bone remodeling, Journal of Theoretical Biology, vol.229, issue.3, pp.293-309, 2004.
DOI : 10.1016/j.jtbi.2004.03.023

M. Levi and M. A. Ellis, Control of renal hemodynamics and glomerular filtration rate in chronic hypercalcemia: role of prostaglandins, renin-angiotensin system, and calcium, Journal of Clinical Investigation, vol.71, issue.6, p.1624, 1983.

M. Levi and M. Popovtzer, Disorders of phosphate balance, Atlases of Diseases of the Kidney, pp.1-14, 1999.

E. Lewin, W. Wang, and K. Olgaard, Rapid recovery of plasma ionized calcium after acute induction of hypocalcaemia in parathyroidectomized and nephrectomized rats, Nephrology Dialysis Transplantation, vol.14, issue.3, pp.604-609, 1999.

S. Liu and L. D. Quarles, How fibroblast growth factor 23 works, Journal of the American Society of Nephrology, vol.18, issue.6, pp.1637-1647, 2007.
DOI : 10.1681/asn.2007010068

URL : http://jasn.asnjournals.org/content/18/6/1637.full.pdf

A. Loupy, S. K. Ramakrishnan, B. Wootla, R. Chambrey, D. La-faille et al., PTH-independent regulation of blood calcium concentration by the calcium-sensing receptor, The Journal of Clinical Investigation, vol.122, issue.9, pp.3355-3367, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00745053

X. Lu and Y. Leng, Theoretical analysis of calcium phosphate precipitation in simulated body fluid, Biomaterials, vol.26, issue.10, pp.1097-1108, 2005.
DOI : 10.1016/j.biomaterials.2004.05.034

A. J. Magaldi, A. A. Baak-van, and A. S. Rocha, Calcium transport across rat inner medullary collecting duct perfused in vitro, American Journal of Physiology-Renal Physiology, vol.257, issue.5, pp.738-745, 1989.
DOI : 10.1152/ajprenal.1989.257.5.f738

M. Marenzana, A. M. Shipley, P. Squitiero, J. G. Kunkel, and A. Rubinacci, Bone as an ion exchange organ: evidence for instantaneous cell-dependent calcium efflux from bone not due to resorption, Bone, vol.37, issue.4, pp.545-554, 2005.

J. Marks, S. K. Srai, J. Biber, H. Murer, R. J. Unwin et al., Intestinal phosphate absorption and the effect of vitamin D: a comparison of rats with mice, Experimental physiology, vol.91, issue.3, pp.531-537, 2006.

A. Martin, V. David, and L. D. Quarles, Regulation and function of the FGF23/klotho endocrine pathways, Physiological Reviews, vol.92, issue.1, pp.131-155, 2012.
DOI : 10.1152/physrev.00002.2011

URL : http://europepmc.org/articles/pmc3306265?pdf=render

D. R. Martin, C. S. Ritter, E. Slatopolsky, and A. J. Brown, Acute regulation of parathyroid hormone by dietary phosphate, American Journal of Physiology-Endocrinology and Metabolism, vol.289, issue.4, pp.729-734, 2005.

T. Meir, K. Durlacher, Z. Pan, G. Amir, W. G. Richards et al., Parathyroid hormone activates the orphan nuclear receptor Nurr1 to induce FGF23 transcription, Kidney international, vol.86, issue.6, pp.1106-1115, 2014.

M. B. Meyer, M. Watanuki, S. Kim, N. K. Shevde, and J. W. Pike, The human transient receptor potential vanilloid type 6 distal promoter contains multiple vitamin D receptor binding sites that mediate activation by 1, 25-dihydroxyvitamin D 3 in intestinal cells, Molecular endocrinology, vol.20, issue.6, pp.1447-1461, 2006.

D. R. Migneault and R. K. Forcé, Dissociation constants of phosphoric acid at 25 c and the ion pairing of sodium with orthophosphate ligands at 25 c, Journal of solution chemistry, vol.17, issue.10, pp.987-997, 1988.

G. Momsen and P. Schwarz, A mathematical/physiological model of parathyroid hormone secretion in response to blood-ionized calcium lowering in vivo, Scandinavian journal of clinical and laboratory investigation, vol.57, issue.5, pp.381-394, 1997.

A. Murayama, T. Ki, S. Kitanaka, Y. Kodera, Y. Kawaguchi et al., Positive and negative regulations of the renal 25-hydroxyvitamin D 3 1?-hydroxylase gene by parathyroid hormone, calcitonin, and 1?,25(OH) 2 D 3 in intact animals, Endocrinology, vol.140, issue.5, pp.2224-2231, 1999.

T. Naveh-many, R. Rahamimov, N. Livni, and J. Silver, Parathyroid cell proliferation in normal and chronic renal failure rats. the effects of calcium, phosphate, and vitamin D, Journal of Clinical Investigation, vol.96, issue.4, pp.1786-1793, 1995.

L. Negrea, E. Slatopolsky, and A. Dusso, Lower affinity for substrate for extrarenal synthesis of calcitriol in chronic uremia, Kidney International, vol.44, issue.1, pp.134-134, 1993.

J. P. Nicholson, M. R. Wolmarans, and P. Gr, The role of albumin in critical illness, British journal of anaesthesia, vol.85, issue.4, pp.599-610, 2000.

M. Nowicki, F. Kokot, and A. Surdacki, The influence of hyperinsulinaemia on calciumphosphate metabolism in renal failure, Nephrology Dialysis Transplantation, vol.13, issue.10, pp.2566-2571, 1998.

T. Okano, T. Kimura, N. Tsugawa, Y. Okamura, and T. Kobayashi, Roles of parathyroid hormone and 1?, 25-dihydroxyvitamin D 3 in bone growth of growing male and female rats, Journal of Bone and Mineral Metabolism, vol.12, issue.1, pp.23-26, 1994.

H. Orimo, The mechanism of mineralization and the role of alkaline phosphatase in health and disease, Journal of Nippon Medical School, vol.77, issue.1, pp.4-12, 2010.

O. K. Öz, A. Hajibeigi, K. Howard, C. L. Cummins, V. Abel et al., Aromatase deficiency causes altered expression of molecules critical for calcium reabsorption in the kidneys of female mice, Journal of Bone and Mineral Research, vol.22, issue.12, pp.1893-1902, 2007.

W. Pan, J. Borovac, Z. Spicer, J. G. Hoenderop, R. J. Bindels et al., The epithelial sodium/proton exchanger, NHE3, is necessary for renal and intestinal calcium (re) absorption, American Journal of Physiology-Renal Physiology, vol.302, issue.8, pp.943-956, 2012.

A. M. Parfitt, M. T. Mundy, and . Heidelberg, Calcium homeostasis, Physiology and Pharmacology of Bone, pp.1-65, 1993.

A. Pasch, S. Farese, S. Gräber, J. Wald, W. Richtering et al., Nanoparticle-based test measures overall propensity for calcification in serum, Journal of the American Society of Nephrology, vol.23, p.17441752, 2012.

M. G. Penido and A. Us, Phosphate homeostasis and its role in bone health, Pediatric Nephrology, vol.27, issue.11, pp.2039-2048, 2012.

M. C. Peterson and M. M. Riggs, A physiologically based mathematical model of integrated calcium homeostasis and bone remodeling, Bone, vol.46, issue.1, pp.49-63, 2010.

M. Pirklbauer and G. Mayer, The exchangeable calcium pool: physiology and pathophysiology in chronic kidney disease, Nephrology Dialysis Transplantation, vol.26, issue.8, pp.2438-2444, 2011.

P. Pivonka, J. Zimak, D. W. Smith, B. S. Gardiner, C. R. Dunstan et al., Model structure and control of bone remodeling: a theoretical study, Bone, vol.43, issue.2, pp.249-263, 2008.

T. Powell, A mathematical model for calcium homeostasis, The Bulletin of mathematical biophysics, vol.34, issue.4, pp.483-502, 1972.

K. L. Pramod, V. R. Vaswani, and O. , Museum preservation of skeleton of fetus & small vertebrates, Recent Research in Science and Technology, vol.3, issue.2, pp.54-58, 2011.

N. Prasad, D. Bhadauria, and O. , Renal phosphate handling, Physiology. Indian journal of endocrinology and metabolism, vol.17, issue.4, pp.620-627, 2013.

P. A. Price and J. E. Lim, The inhibition of calcium phosphate precipitation by fetuin is accompanied by the formation of a fetuin-mineral complex, Journal of Biological Chemistry, vol.278, issue.24, pp.22144-22152, 2003.

P. A. Price, G. R. Thomas, A. W. Pardini, W. F. Figueira, J. M. Caputo et al., Discovery of a high molecular weight complex of calcium, phosphate, fetuin, and matrix ?carboxyglutamic acid protein in the serum of etidronate-treated rats, Journal of Biological Chemistry, vol.277, issue.6, pp.3926-3934, 2002.

W. A. Pruett and R. L. Hester, Parathyroid hormone secretion by multiple distinct cell populations, a time dynamic mathematical model, Physiological Reports, vol.2, issue.2, pp.1-10, 2014.
DOI : 10.1002/phy2.231

URL : https://physoc.onlinelibrary.wiley.com/doi/pdf/10.1002/phy2.231

H. Qing and L. F. Bonewald, Osteocyte remodeling of the perilacunar and pericanalicular matrix, International journal of oral science, vol.1, issue.2, pp.59-65, 2009.
DOI : 10.4248/ijos.09019

URL : https://www.nature.com/articles/ijos200910.pdf

V. Ramakrishnan, Q. J. Yang, H. P. Quach, Y. Cao, E. Chow et al., Physiologically-based pharmacokinetic-pharmacodynamic modeling of 1?, 25dihydroxyvitamin D 3 in mice, Drug Metabolism and Disposition, vol.44, issue.2, pp.189-208, 2016.

J. F. Raposo, L. G. Sobrinho, and H. G. Ferreira, A minimal mathematical model of calcium homeostasis, The Journal of Clinical Endocrinology & Metabolism, vol.87, issue.9, pp.4330-4340, 2002.
DOI : 10.1210/jc.2002-011870

URL : https://academic.oup.com/jcem/article-pdf/87/9/4330/10404518/jcem4330.pdf

P. H. Reitsma, O. Bijvoet, H. Verlinden-ooms, W. Van-der, and L. , Kinetic studies of bone and mineral metabolism during treatment with (3-amino-1-hydroxypropylidene)-1, 1-bisphosphonate (APD) in rats, Calcified Tissue International, vol.32, issue.1, pp.145-157, 1980.

D. Riccardi, A. E. Hall, N. Chattopadhyay, J. Z. Xu, E. M. Brown et al., Localization of the extracellular Ca 2+ /polyvalent cation-sensing protein in rat kidney, American Journal of Physiology-Renal Physiology, vol.274, issue.3, pp.611-622, 1998.

A. C. Riches, J. G. Sharp, D. B. Thomas, and S. V. Smith, Blood volume determination in the mouse, The Journal of physiology, vol.228, issue.2, pp.279-284, 1973.
DOI : 10.1113/jphysiol.1973.sp010086

URL : http://onlinelibrary.wiley.com/doi/10.1113/jphysiol.1973.sp010086/pdf

R. Rizzoli, H. Fleisch, and B. , Role of 1, 25-dihydroxyvitamin D 3 on intestinal phosphate absorption in rats with a normal vitamin D supply, Journal of Clinical Investigation, vol.60, issue.3, pp.639-647, 1977.

W. G. Robertson, Methods for diagnosing the risk factors of stone formation, Arab journal of urology, vol.10, issue.3, pp.250-257, 2012.
DOI : 10.1016/j.aju.2012.03.006

URL : https://doi.org/10.1016/j.aju.2012.03.006

M. E. Rodríguez-ortiz, A. Canalejo, C. Herencia, M. Julio, A. Peralta-ramírez et al., Magnesium modulates parathyroid hormone secretion and upregulates parathyroid receptor expression at moderately low calcium concentration, Nephrology Dialysis Transplantation, vol.29, issue.2, pp.282-289, 2014.

A. Romani, Regulation of magnesium homeostasis and transport in mammalian cells, Archives of Biochemistry and Biophysics, vol.458, issue.1, pp.90-102, 2007.
DOI : 10.1016/j.abb.2006.07.012

D. Rouse, S. Sessoms, B. J. Stinebaugh, and S. Wn, The effect of hypocalcemia on renal bicarbonate absorption, Mineral and Electrolyte Metabolism, vol.10, issue.1, pp.31-35, 1983.

. Sabbagh-yv, H. Giral, Y. Caldas, M. Levi, and S. Sc, Intestinal phosphate transport, Advances in chronic kidney disease, vol.18, issue.2, pp.85-90, 2011.

M. Sahni, H. L. Guenther, H. Fleisch, P. Collin, and M. Tj, Bisphosphonates act on rat bone resorption through the mediation of osteoblasts, Journal of Clinical Investigation, vol.91, issue.5, pp.2004-2011, 1993.

H. Saito, A. Maeda, S. I. Ohtomo, M. Hirata, K. Kusano et al., Circulating FGF-23 is regulated by 1?, 25-dihydroxyvitamin D3andphosphorusinvivo, vol.280, pp.2543-2549, 2005.

P. J. Sammon, R. E. Stacey, F. Bronner, and O. , Role of parathyroid hormone in calcium homeostasis and metabolism, American Journal of Physiology, vol.218, issue.2, pp.479-485, 1970.

K. P. Schlingmann, M. Kaufmann, S. Weber, A. Irwin, C. Goos et al., Mutations in CYP24A1 and idiopathic infantile hypercalcemia, New England Journal of Medicine, vol.365, issue.5, pp.410-421, 2011.

P. Schwarz, J. C. Madsen, A. Q. Rasmussen, T. Lb, and E. M. Brown, Evidence for a role of intracellular stored parathyroid hormone in producing hysteresis of the PTH-calcium relationship in normal humans, Clinical endocrinology, vol.48, issue.6, pp.725-732, 1998.

A. Sharma, W. F. Ebling, and J. Wj, Precursor-dependent indirect pharmacodynamic response model for tolerance and rebound phenomena, Journal of pharmaceutical sciences, vol.87, issue.12, pp.1577-1584, 1998.

T. Shimada, H. Hasegawa, Y. Yamazaki, T. Muto, R. Hino et al., FGF-23 is a potent regulator of vitamin D metabolism and phosphate homeostasis, Journal of Bone and Mineral Research, vol.19, issue.3, pp.429-435, 2004.

T. Shimada, M. Kakitani, Y. Yamazaki, H. Hasegawa, Y. Takeuchi et al., Targeted ablation of fgf23 demonstrates an essential physiological role of FGF23 in phosphate and vitamin D metabolism, The Journal of clinical investigation, vol.113, issue.4, pp.561-568, 2004.

T. Shimada, Y. Yamazaki, M. Takahashi, H. Hasegawa, I. Urakawa et al., Vitamin D receptor-independent FGF23 actions in regulating phosphate and vitamin D metabolism, American Journal of Physiology-Renal Physiology, vol.289, issue.5, pp.1088-1095, 2005.

R. P. Shrestha, C. V. Hollot, S. R. Chipkin, C. P. Schmitt, and C. Y. , A mathematical model of parathyroid hormone response to acute changes in plasma ionized calcium concentration in humans, Mathematical Biosciences, vol.226, issue.1, pp.46-57, 2010.

J. Silver, N. , and T. , Phosphate and the parathyroid, Kidney international, vol.75, issue.9, pp.898-905, 2009.

J. Silver, T. Naveh-many, H. Mayer, H. J. Schmelzer, and P. Mm, Regulation by vitamin D metabolites of parathyroid hormone gene transcription in vivo in the rat, Journal of Clinical Investigation, vol.78, issue.5, pp.1296-1301, 1986.

J. Silver, C. Yalcindag, A. Sela-brown, R. Kilav, N. et al., Regulation of the parathyroid hormone gene by vitamin D, calcium and phosphate, Kidney International, vol.56, pp.2-7, 1999.

B. M. Slepchenko and F. Bronner, Modeling of transcellular Ca transport in rat duodenum points to coexistence of two mechanisms of apical entry, American Journal of PhysiologyCell Physiology, vol.281, issue.1, pp.270-281, 2001.

E. R. Smith, M. M. Cai, L. P. Mcmahon, E. Pedagogos, N. D. Toussaint et al., Serum fetuin-A concentration and fetuin-A-containing calciprotein particles in patients with chronic inflammatory disease and renal failure, Nephrology, vol.18, issue.3, pp.215-221, 2013.

P. D. Smith, G. W. Liesegang, R. L. Berger, G. Czerlinski, and P. Rj, A stopped-flow investigation of calcium ion binding by ethylene glycol bis (?-aminoethyl ether)-n, n'-tetraacetic acid, Analytical Biochemistry, vol.143, issue.1, pp.188-195, 1984.

G. Solovey, D. Fraiman, B. Pando, P. Dawson, and S. , Simplified model of cytosolic Ca 2+ dynamics in the presence of one or several clusters of Ca 2+-release channels, Physical Review E, vol.78, issue.4, pp.1-15, 2008.

P. J. Somerville and M. Kaye, Action of phosphorus on calcium release in isolated perfused rat tails, Kidney international, vol.22, issue.4, pp.348-354, 1982.

H. Spencer, H. Fuller, C. Norris, and W. D. , Effect of magnesium on the intestinal absorption of calcium in man, Journal of the American College of Nutrition, vol.13, issue.5, pp.485-492, 1994.

R. St-arnaud, A. Arabian, R. Travers, F. Barletta, M. Raval-pandya et al., Deficient mineralization of intramembranous bone in vitamin D-24-hydroxylase-ablated mice is due to elevated 1, 25dihydroxyvitamin D and not to the absence of, Endocrinology, vol.24, issue.7, pp.2658-2666, 2000.

P. Stenvinkel, K. Wang, A. R. Qureshi, J. Axelsson, R. Pecoits-filho et al., Low fetuin-A levels are associated with cardiovascular death: impact of variations in the gene encoding fetuin, Kidney international, vol.67, issue.6, pp.2383-2392, 2005.

F. Sun, C. K. Ritchie, C. Hassager, P. Maercklein, and L. A. Fitzpatrick, Heterogeneous response to calcium by individual parathyroid cells, Journal of Clinical Investigation, vol.91, issue.2, pp.595-601, 1993.

N. Takahashi, N. Udagawa, and T. Suda, Vitamin D endocrine system and osteoclasts, BoneKEy Reports, vol.3, pp.1-9, 2014.

K. Takatsuki, D. A. Hanley, and S. Lm, Effects of magnesium ion on parathyroid hormone secretion in vitro, Calcified tissue international, vol.32, issue.1, pp.201-206, 1980.

Y. Tani, T. Sato, H. Yamanaka-okumura, H. Yamamoto, H. Arai et al., Effects of prolonged high phosphorus diet on phosphorus and calcium balance in rats, Journal of clinical biochemistry and nutrition, vol.40, issue.3, pp.221-228, 2007.

H. S. Tenenhouse and A. A. Portale, Phosphate homeostasis, pp.453-475, 2005.

M. Tepel, F. P. Armbruster, H. J. Grön, A. Scholze, C. Reichetzeder et al., Nonoxidized, biologically active parathyroid hormone determines mortality in hemodialysis patients, The Journal of Clinical Endocrinology & Metabolism, vol.98, issue.12, pp.4744-4751, 2013.

L. Thomas, C. Bettoni, T. Knpfel, N. Hernando, J. Biber et al., Parathyroid hormone is critical for the acute adaption to oral or intravenous phosphate loading, Journal, 2016.

H. G. Tiselius, Measurement of the risk of calcium phosphate crystallization in urine, Urological research, vol.15, issue.2, pp.79-81, 1987.

H. G. Tiselius, R. Ferraz, and H. Ip, Simplified estimates of ion-activity products of calcium oxalate and calcium phosphate in mouse urine, Urological research, vol.40, issue.4, pp.285-291, 2012.

J. Toffaletti and B. Abrams, Effects of in vivo and in vitro production of lactic acid on ionized, protein-bound, and complex-bound calcium in blood, Clinical Chemistry, vol.35, issue.6, pp.935-938, 1989.

P. Urena, M. Mannstadt, M. Hruby, A. Ferriera, F. Schmitt et al., Parathyroidectomy does not prevent the renal PTH/PTHrP receptor down-regulation in uremic rats, Kidney International, vol.47, issue.6, pp.1797-1805, 1995.

M. Vallet and I. Tack, Physiologie du calcium et des phosphates, Revue du Rhumatisme Monographies, vol.79, issue.4, pp.203-209, 2012.

M. Van-abel, J. Hoenderop, K. Van-der, A. Friedlaender, M. M. Van-leeuwen et al., Coordinated control of renal Ca 2+ transport proteins by parathyroid hormone, Kidney International, vol.68, issue.4, pp.1708-1721, 2005.

S. J. Van-cromphaut, M. Dewerchin, J. Hoenderop, I. Stockmans, E. Van-herck et al., Duodenal calcium absorption in vitamin D receptor-knockout mice: functional and molecular aspects, Proceedings of the National Academy of Sciences, vol.98, issue.23, pp.13324-13329, 2001.

M. Van-kemenade, D. Bruyn, and P. L. , A kinetic study of precipitation from supersaturated calcium phosphate solutions, Journal of Colloid and Interface Science, vol.118, issue.2, pp.564-585, 1987.

T. Vetter and M. J. Lohse, Magnesium and the parathyroid, Current opinion in nephrology and hypertension, vol.11, issue.4, pp.403-410, 2002.

J. Wald, S. Wiese, T. Eckert, W. Jahnen-dechent, W. Richtering et al., Formation and stability kinetics of calcium phosphate-fetuin-A colloidal particles probed by time-resolved dynamic light scattering, Soft Matter, vol.7, issue.6, pp.2869-2874, 2011.

M. Walser, Ion association. vi. interactions between calcium, magnesium, inorganic phosphate, citrate and protein in normal human plasma, Journal of Clinical Investigation, vol.40, issue.4, pp.723-730, 1961.

M. Waron and C. Rich, Rate of recovery from acute hypocalcemia as a measure of calcium homeostatic efficiency in the dog, Endocrinology, vol.85, issue.6, pp.1018-1027, 1969.

R. H. Wasserman, J. S. Chandler, S. A. Meyer, C. A. Smith, M. E. Brindak et al., Intestinal calcium transport and calcium extrusion processes at the basolateral membrane, The Journal of nutrition, vol.122, issue.3S, pp.662-671, 1992.

D. R. Wilz, R. W. Gray, J. H. Dominguez, and J. Lemann, Plasma 1, 25-(OH) 2-vitamin D concentrations and net intestinal calcium, phosphate, and magnesium absorption in humans, The American journal of clinical nutrition, vol.32, issue.10, pp.2052-2060, 1979.

K. K. Winer, J. A. Yanovski, and G. B. Cutler, Synthetic human parathyroid hormone 1-34 vs calcitriol and calcium in the treatment of hypoparathyroidism: Results of a short-term randomized crossover trial, Journal of The American Medical Association, vol.276, issue.8, pp.631-636, 1996.

K. K. Winer, B. Zhang, J. A. Shrader, D. Peterson, M. Smith et al., Synthetic human parathyroid hormone 1-34 replacement therapy: a randomized crossover trial comparing pump versus injections in the treatment of chronic hypoparathyroidism, The Journal of Clinical Endocrinology & Metabolism, vol.97, issue.2, pp.391-399, 2011.

K. M. Wong and L. Klein, Circadian variations in contributions of bone and intestine to plasma calcium in dogs, American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, vol.246, issue.5, pp.688-692, 1984.

R. J. Wood, J. C. Fleet, K. Cashman, M. E. Bruns, and H. F. Deluca, Intestinal calcium absorption in the aged rat: Evidence of intestinal resistance to 1,25(OH) 2 vitamin D 1, Endocrinology, vol.139, issue.9, pp.3843-3848, 1998.

E. M. Worcester and F. L. Coe, New insights into the pathogenesis of idiopathic hypercalciuria, Seminars in nephrology, vol.28, issue.2, pp.120-132, 2008.

L. I. Worthley, S. B. Baker, and O. , The essentials of calcium, magnesium and phosphate metabolism: part i. physiology, Critical Care and Resuscitation, vol.4, issue.4, pp.301-306, 2002.

H. Xu, L. Bai, J. F. Collins, and G. Fk, Age-dependent regulation of rat intestinal type iib sodium-phosphate cotransporter by 1, 25-(OH) 2 vitamin D 3, American Journal of Physiology-Cell Physiology, vol.282, issue.3, pp.487-493, 2002.

Y. Yamamoto, T. Yoshizawa, T. Fukuda, Y. Shirode-fukuda, T. Yu et al., Vitamin D receptor in osteoblasts is a negative regulator of bone mass control, Endocrinology, vol.154, issue.3, pp.1008-1020, 2013.

T. Yamashita, M. Yoshioka, and N. Itoh, Identification of a novel fibroblast growth factor, FGF23, preferentially expressed in the ventrolateral thalamic nucleus of the brain, Biochemical and biophysical research communications, vol.277, issue.2, pp.494-498, 2000.

H. Yokota, J. F. Raposo, A. Chen, C. Jiang, and H. G. Ferreira, Evaluation of the role of FGF23 in mineral metabolism, Gene regulation and systems biology, vol.3, pp.131-142, 2009.

M. Zaidi, H. C. Blair, B. S. Moonga, E. Abe, and C. Huang, Osteoclastogenesis, bone resorption, and osteoclast-based therapeutics, Journal of Bone and Mineral Research, vol.18, issue.4, pp.599-609, 2003.

G. F. Zaladek, G. G. Nascimento, M. F. Cavanal, K. R. Cesar, and A. J. Magaldi, Influence of parathyroidectomy and calcium on rat renal function, Nephron, vol.83, issue.1, pp.59-65, 1999.

C. Zierold, J. A. Mings, and H. F. Deluca, Regulation of 25-hydroxyvitamin D 3-24-hydroxylase mRNA by 1, 25-dihydroxyvitamin D 3 and parathyroid hormone, Journal of cellular biochemistry, vol.88, issue.2, pp.234-237, 2003.