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Newman M, Takei H, Carranza F. Carranza’s clinical periodontology. 9th ed. 2002;47.Search in Google Scholar

Adachi H, Igarashi K, Mitani H, Shinoda H. Effects of topical administration of a bisphosphonate (risedronate) on orthodontic tooth movements in rats. J Dent Res 1994;73: 1478–86.Search in Google Scholar

Yamasaki K, Miura F, Suda T. Prostaglandin as a mediator of bone resorption induced by experimental tooth movement in rats. J Dent Res 1980;59:1635–42.Search in Google Scholar

Rosen H, Metzer E, Benzakine S, Bar-Shavit Z. Functional opioid receptors on skeletal cells. J Bone Miner Res 1997; 12:(suppl).411.Search in Google Scholar

Zhou D, Hughes B, King GJ. Histomorphometric and biochemical study of osteoclasts at orthodontic compression sites in the rat during indomethacin inhibition. Arch Oral Biol 1997;42(10–11):717–26.Search in Google Scholar

Chumbley AB, Tuncay OC. The effect of indomethacin (an aspirin-like drug) on the rate of orthodontic tooth movement. Am J Orthod 1986;89:312–14.Search in Google Scholar

Peréz-Costrillón JL, Olmos JM, Gomez JJ, Barrallo A, Riancho JA, Perera L et al. Expression of opioid receptors in osteoblast-like MG-63 cells, and effects of different opioid agonists on alkaline phosphatase and osteocalcin secretion by these cells. Neuroendocrinology 2000;72:187–94.Search in Google Scholar

Hall TJ, Jagher B, Schaeublin M, Wiesenberg I. The analgesic drug buprenorphine inhibits osteoclastic bone resorption in vitro, but is proinflammatory in rat adjuvant arthritis. Inflamm Res 1996;45:299–302.Search in Google Scholar

Pleuvry B J. Opioid mechanisms and opioid drugs. Anaesthesia and intensive care medicine 2005;6:30–4.Search in Google Scholar

Brownstein MJ. A brief history of opiates, opioid peptides, and opioid receptors. Proc Natl Acad Sci U S A 1993;90: 5391–3.Search in Google Scholar

Rico H, Costales C, Cabranes JA, Escudero M. Lower serum osteocalcin levels in pregnant drug users and their newborns at the time of delivery. Obstet Gynecol 1990;75:998–1000.Search in Google Scholar

Nilforoushan D, Shirazi M, Dehpour AR. The role of opioid systems on orthodontic tooth movement in cholestatic rats. Angle Orthod 2002;476–80.Search in Google Scholar

Saper JR, Lake AE. Continuous opioid therapy (COT) is rarely advisable for refractory chronic daily headache: limited efficacy, risk, and proposed guidelines. Headache 2008; 48:838–49.Search in Google Scholar

Minai-Tehrani D, Minoui S, Sepehre M. Inhibitory effect of codeine on sucrase activity. Drug Metab Lett 2009;3: 58–60.Search in Google Scholar

Sedighi B, Ghaderi-Sohi S, Emami S. Evaluation of selfmedication prevalence, diagnosis and prescription in migraine in Kerman, Iran. Saudi Med J 2006;27:377–80.Search in Google Scholar

Farid W.O, Dunlop S.A, Tait R.J, Hulse G.K. The effects of maternally administered methadone, buprenorphine and naltrexone on offspring: review of human and animal data. Curr Neuropharmacol 2008;6:125–50.Search in Google Scholar

Brudvik P, Rygh P. The repair of orthodontic root resorption: an ultrastructural study. Eur J Orthod 1995;17: 189–98.Search in Google Scholar

King GJ, Fischlschweiger W. The effect of force magnitude on extractable bone resorptive activity and cemental cratering in orthodontic tooth movement. J Dent Res 1982;61: 775–9.Search in Google Scholar

Igarashi K, Woo JT, Paula H. Effect of a selective cyclo oxygenase-2 inhibitor on bone resorption and osteoclasto-genesis in vitro. Biochem Pharmacology 2001;63:523–32.Search in Google Scholar

Leiker BJ, Nanda RS, Currier GF, Howes RI, Sinha PK. The effects of exogenous prostaglandins on orthodontic tooth movement in rats. Am J Orthod Dentofacial Orthop 1995; 108:380–8.Search in Google Scholar

Sekhavat AR, Mousavizadeh K, Pakshir HR, Aslani FS. Effect of misoprostol, a prostaglandin E1 analog, on orthodontic tooth movement in rats. Am J Orthod Dentofacial Orthop 2002;122:542–7.Search in Google Scholar

Tengku BS, Joseph BK, Harbrow D, Taverne AA, Symons AL. Effect of a static magnetic field on orthodontic tooth movement in the rat. Eur J Orthod 2000;22:475–87.Search in Google Scholar

Rosen H, Polakiewiez RD, Benzakine S, Bar-Shavit ZB. Proenkephaline A in bone-derived cells. Proc Natl Acad Sci USA 1991;88:3705–9.Search in Google Scholar

Namiranian K, Samini M, Mehr SE, Gaskari SA, Rastegar H, Homayoun H et al. Mesenteric vascular bed responsiveness in bile duct-ligated rats: roles of opioid and nitric oxide systems. Eur J Pharmacol 2001;423:185–93.Search in Google Scholar

Nahavandi A, Mani AR, Homayounfar H, Akbari MR, Dehpour AR. The role of the interaction between endogenous opioids and nitric oxide in the pathophysiology of ethanol-induced gastric damage in cholestatic rats. Fundam Clin Pharmacol 2001;15:181–7.Search in Google Scholar

Gameiro GH, Nouer DF, Pereira-Neto JS, Urtado MB, Novaes PD, de Castro M et al. The effects of systemic stress on orthodontic tooth movement. Aust Orthod J 2008;24: 121–8.Search in Google Scholar

Rozisky JR, Dantas G, Adachi LS, Alves VS, Ferreira MB, Sarkis JJ, Torres IL. Long-term effect of morphine administration in young rats on the analgesic opioid response in adult life. Int J Dev Neurosci 2008;26:561–5.Search in Google Scholar

Zarrindast MR, Ebrahimi-Ghiri M, Rostami P, Rezayof A. Repeated pre-exposure to morphine into the ventral pallidum enhances morphine-induced place preference: involvement of dopaminergic and opioidergic mechanisms. Behav Brain Res 2007;181:35–41.Search in Google Scholar

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Medicine, Basic Medical Science, other