Aurbach GD, ed; Washington, DC: American Physiological Society
Munson PL. Physiology and pharmacology of thyrocalcitonin. In: Aurbach GD, ed; Handbook of Physiology. Washington, DC: American Physiological Society; 1976:443-464.
Plasma kinetics and urinary excretion of exogenous human and salmon calcitonin in man
Huwyler R, Born W, Ohnhaus EE, Fischer JA. Plasma kinetics and urinary excretion of exogenous human and salmon calcitonin in man. Am J Physiol. 1979;236:E15- E19.
Sustained release of salmon calcitonin in vivo from lactide: Glycolide copolymer depots
Millest AJ, Evans JR, Young JJ, Johnstone D. Sustained release of salmon calcitonin in vivo from lactide: glycolide copolymer depots. Calcif Tissue Int. 1993;52:361-364.
In vivo assessment of salmon calcitonin sustained release from biodegradable microspheres
Lee KC, Soltis EE, Newman PS, Burton KW, Mehta RC, DeLuca PP. In vivo assessment of salmon calcitonin sustained release from biodegradable microspheres. J Control Release. 1991;17:199-206.
Preparation, characterization and in vivo evaluation of salmon calcitonin microspheres
Article 22
Dani BA, DeLuca PP. Preparation, characterization and in vivo evaluation of salmon calcitonin microspheres. AAPS PharmSciTech. 2001;2(4):Article 22. http://www.aapspharmscitech.org/scientificjournals/pharmscitech/ volume2issue4/1075/manuscript.htm
Osteoblasts on hydroxylapatite, bone and alumina in vitro: Morphology during the first two hours of attachment
Malik MA, Puleo DA, Bizios R, Doremus RH. Osteoblasts on hydroxylapatite, bone and alumina in vitro: morphology during the first two hours of attachment. Biomaterials. 1992;13:123-128.
Acute toxicity of metal ions in cultures of osteogenic cells derived from bone marrow stromal cells
Puleo DA, Huh WW. Acute toxicity of metal ions in cultures of osteogenic cells derived from bone marrow stromal cells. J Appl Biomater. 1995;6:109-116.
A useful method to evaluate bone resorption inhibitors using osteoclast-like multinucleated cells
Sugawara K, Hamada M, Hosoi S, Tamaoki T. A useful method to evaluate bone resorption inhibitors using osteoclast-like multinucleated cells. Anal Biochem. 1998;255:204-210.
Differentiation kinetics of osteoclasts in periosteum of embryonic bones in vivo and in vitro
Scheven BA, Kanilarange-de-Haas EM, Wassenaar AM, Nikweide PJ. Differentiation kinetics of osteoclasts in periosteum of embryonic bones in vivo and in vitro. Anat Rec. 1986;214:418-423.
Identification of functional mononuclear precursors of the osteoclast in chicken medullary
Prallet B, Male P, Neff L, Baron R. Identification of functional mononuclear precursors of the osteoclast in chicken medullary. J Bone Miner Res. 1992;7:405-414.