Harada et al., Connective Tussue Res., vol. 31 (1995), pp. 279-282, “The role of prostaglandins in bone formation”. |
Ono et al., J. of Endoc., vol. 158 (1998), pp. R1-R5, “Important role of EP4, a subtype of prostaglandin (PG) E reeptor, in osteoclast-like cell formation from mouse bone marrow cells induced by PGE2”. |
Jee et al., Bone vol. 21 (1997), pp. 297-304, “The in vivo anabolic actions of prostaglandins in bone”. |
Ross, Goodman & Gilman's The Pharmacol. Basis of Therapeutics, 9th ed., (1996), Chap. 2, “Pharmacodynamics: Mechanisms of drug action and the relationship between drug concentration and effect”, pp. 29-41. |
Luckman et al., J. of Bone and Min. Res., vol. 13 (1998), “Heterocycle-containing bisphosphonates cause apoptosis and inhibit bone resorption by preventing protein prenylation: Evidence from structure-activity relationships in J774 macrophages”, pp. 1668-1678. |
Weinstein et al., J. of Clin. Investig., vol. 102 (1998), pp. 274-282, “Inhibition of osteoblastogenesis and promotion of apoptosis of osteoblasts and osteocytes by glucocorticoids”. |
Grigoriadis et al., Differentiation, vol. 60 (1996), pp. 299-307, “Analysis of chondroprogenitor frequency and cartilage differentiation in a novel family of clonal chondrogenic rat cell lines”. |
Nakahara et al., Bone, vol. 11 (1990), pp. 181-188. “Bone and cartilage formation in diffusion chambers by subcultured cells derived from the periosteum”. |
Funk et al., J., of Biol. Chem., vol. 268 (1993), pp. 26767-26772, “Cloning and expression of a cDNA for the human prostglandin E receptor EP1 subtype”. |
Regan et al., Prostaglandins, vol. 47 (1994), pp. 151-168, “Cloning of a novel human prostaglandin receptor with characteristics of the pharmacologically defined EP2 subtype”. |
Yang et al., Biochem. & Biophys. Res. Comm., vol. 198 (1994), pp. 999-1006, “Cloning, and expression of the EP3-subtype of human receptors for prostaglandin E2”. |
Bastien et al., J. of Biol. Chem., vol. 269 (1994), pp. 11873-11877, “Cloning, function expression, and characterization of human prostaglandin E2 receptor EP2 subtype”. |
Rodan et al., Endocrinology, vol. 121 (1987), pp. 1917-1923, “Growth stimulation of rat calvaria osteoblastic cells by acidic fibroblast growth factor”. |
Abramovitz et al., Advances in Prostaglandin, Thromboxane, and Leukotriene Res., vol. 23 (1995), pp. 499-504, Human prostanoid receptors: Cloning and characterization. |
deLarco et al., J. Cell. Physiol., vol. 94 (1978), pp. 335-342, “Epithelioid and fibroblastic rat kidney cell clones: epidermal growth factor (EGF) receptors and the effect of mouse sarcoma virus transformation”. |
Chomczynski et al., Anal. Biochem., vol. 162 (1987), pp. 156-159, “Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction”. |
Weinreb et al., J. of Bone & Min. Res., vol. 5 (1990), pp. 831-842, “Different pattern of alkaline phosphatase, osteopontin, and osteocalcin exrpession in developing rat bone visualized by in situ hybridization”. |
Shinar et al., J. of Bone & Min. Res., vol. 8 (1993), pp. 403-414, “Expression of αv and β3 integrin subunits in rat osteoclasts in situ”. |
Ikeda et al., J. Bone & Min. Res., vol. 10 (1995), p. S172, Abstract No. 133, “In situ localization of three subtypes (EP1, EP3 and EP4) of prostaglandin E receptors in embryonic and newborn mice”. |
Sato et al., HCAPLUS Abstract 1990:132232, J. Bone Min. Res. (1990), vol. 5(1), pp. 31-40, “Effects of bisphosphonates on isolated rat osteoclasts as examined by reflected light microscopy”. |
Nishigaki et al., Medline Abstract 95278356, FEBS LETTERS (1995), vol. 364(3), pp. 339-341, “Identification of prostaglandin E receptors 'EP2'cloned from mastocytoma cells EP4 subtype”. |