dc.creatorda Silva P.C.S.
dc.creatorCamilli J.A.
dc.creatorNakagaki W.R.
dc.creatorSoares E.A.
dc.creatorGarcia J.A.D.
dc.date2012
dc.date2015-06-25T20:24:30Z
dc.date2015-11-26T15:20:04Z
dc.date2015-06-25T20:24:30Z
dc.date2015-11-26T15:20:04Z
dc.date.accessioned2018-03-28T22:29:35Z
dc.date.available2018-03-28T22:29:35Z
dc.identifier
dc.identifierRevista De Ciencias Farmaceuticas Basica E Aplicada. , v. 33, n. 2, p. 217 - 223, 2012.
dc.identifier18084532
dc.identifier
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84868153453&partnerID=40&md5=a9a5eb1b1d574ecd7d81d8febc06b848
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/90242
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/90242
dc.identifier2-s2.0-84868153453
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1259891
dc.descriptionThis study aimed at evaluating the effect of ketoprofen (NSAID) and dexamethasone (SAID) on osteogenesis around a dense hydroxyapatite (DHA) implant in the tibia and parietal bone, and on the bone resistance. Fifteen fifty-day-old Wistar rats weighing on average 250±30 g were used. The animals were separated into three groups (n=5): control (CT); non-steroidal anti-inflammatoryl (NSAID); and steroidal anti-inflammatory (SAID). After anesthesia with IM ketamine/xylazine, a 3 mm cavity was made in the left parietal bone and in the proximal epiphysis of the left tibia. A DHA bioceramic was implanted in the tibia. The animals were treated subcutaneously during 30 days as follows: NSAID group: ketoprofen at the dose of 12/Kg/day; SAID group: dexamethasone, 0,10 mg/kg/day. The CT group received saline through the same route. All the animals received the same solid diet and water ad libitum. After 30 days of experiment, the animals wereeuthanized, and their femurs collected for the mechanical test, while their tibia and parietal sites were prepared for the histomorphometrical analysis. Microscopically, the SAID and NSAID groups showed a lower volume of neoformed bone. In addition, the NSAID and SAID group femurs required lower maximum force for complete rupture when compared with the CT group. It was concluded that ketoprofen and dexamethasone interfered with osteogenesis and decreased bone resistance by altering the bone tissue metabolism, mainly by inhibiting the COX-2 and decreasing prostaglandins. Therefore, the use of ketoprofen and dexamethasone after bone surgeries can compromise the stability and maintenance of implants.
dc.description33
dc.description2
dc.description217
dc.description223
dc.descriptionAlves, A.S., Campello, R.A.V., Mazzanti, A., Alievi, M.M., Faria, R.X., Stedile, R., Emprego do antiinflamatório não esteróide ketoprofeno na analgesia preventiva em cães (2001) Ciência Rural, 31, pp. 439-444
dc.descriptionCamilotti, A.G., Rocha, A.L.R., Júnior, F.H.N., Grégio, A.M.T., Rached, R.N., Avaliação radiográfica do efeito do meloxican e cetoprofeno na periodontite induzida por ligadura em ratos (2005) Revista Periodontia, 15 (2), pp. 5-9
dc.descriptionCelil, A.B., Campbell, P.G., BMP-2 and insulin-like growth factor-I mediate Osterix (Osx) expression in human mesenchymal stem cells via the MAPK and protein kinase D signaling pathways (2005) J Biol Chem, 280 (36), pp. 31353-31359
dc.descriptionChyun, Y.S., Kream, B.E., Raisz, L.G., Cortisol decreases bone formation by inhibiting periosteal cell proliferation (1984) Endocrinology, 114 (2), pp. 477-480
dc.descriptionCipriani, R., Farias, M.L., Osteoporosis after solid organs transplantation (2005) Arq Bras Endocrionl Metabol, 49 (3), pp. 396-477
dc.descriptionCornell, C., Lane, M.L., Newest factors in fracture healing (1992) Clin Orthop, 277, pp. 297-311
dc.descriptionCurvello, V.P., Okamoto, T., Milanezi, L.A., Efeito do antiinflamatório não-esteroidal Rofecoxib (Vioxx®) no processode reparo ósseo em tíbias de ratos estressados: Estudo microscópico (2008) Revista Gaúcha de Odontologia, 56 (3), pp. 309-314
dc.descriptionDucy, P., Zhang, R., Geoffroy, V., Ridall, A.L., Karsenty, G., Osf2/Cbfa1: A transcriptional activator of osteoblast differentiation (1997) Cell, 89 (5), pp. 747-754
dc.descriptionEmery, P., Clinical implications of selective cyclooxigenase-2 inhibiton (1996) Scand J Rheumatol, 102 (SUPPL. I), pp. 23-28
dc.descriptionFeldman, R.S., Non-steroidal anti-inflammatory drugs in the reduction of human alveolar bone loss (1983) J Clin Periodontol, 10 (2), pp. 131-136
dc.descriptionGajraj, N.M., The effect of cyclooxygenase-2 inhibitors on bone healing (2003) Regional Anesthesia and Pain Medicine, 28 (5), pp. 456-465
dc.descriptionGuyton, A.C., Hall, J.E., (2006) Tratado de Fisiologia Médica, , 11. ed. Rio de Janeiro: Elsevier
dc.descriptionHeasman, P.A., Seymour, R.A., An association between long-term non-steroidal anti-inflammatory drug therapy and the severity of periodontal disease (1990) J Clin Periodontol, 17 (9), pp. 654-658
dc.descriptionInsel, P.A., Fármacos analgésicos, antipiréticos e antiinflamatórios e medicamentos usados no tratamento da gota (1996) As bases farmacológicas da terapêutica, pp. 450-480. , In: Hardman JG et al, 9. ed. México: Mc Graw-Hill
dc.descriptionJadlowiec, J., Koch, H., Zhang, X., Campbell, P.G., Seyedain, M., Sfeir, C., Phosphophoryn regulates the gene expression and differentiation of NIH3T3, MC3T3-E1, and human mesenchymal stem cells via the integrin/MAPK signaling pathway (2004) J Biol Chem, 279 (51), pp. 53323-53330
dc.descriptionJunqueira, U.L.C., Junqueira, S.M.M.L., (1983) Técnicas Básicas de Citologia e Histologia, , São Paulo: Editora Santos
dc.descriptionKawaguchi, H., Pilbeam, C.C., Harrison, J.R., Raisz, L.G., The role of prostaglandins in the regulation of bone metabolism (1995) Clin Orthop Relat Res, 313, pp. 36-46
dc.descriptionKomori, T., Yagi, H., Nomura, S., Yamaguchi, A., Sasaki, K., Deguchi, K., Targeted disruption of cbfa1 results in a complete lack of bone formation owing to maturational arrest of osteoblasts (1997) Cell, 89 (5), pp. 755-764
dc.descriptionLamano-Carvalho, T.L., Efeito dos anti-inflamatórios não-esteroidais convencionais e seletivos para COX-2 sobre o reparo ósseo (2007) Acta Ortop Bras, 15 (3), pp. 166-168
dc.descriptionLima, C.C., Silva, T.D., Santos, L., Nakagaki, W.R., Loyola, Y.C., Resck, M.C., Camilli, J.A., Garcia, J.A., Effects of ethanol on the osteogenesis around porous hydroxyapatite implants (2011) Braz J Biol, 71 (1), pp. 115-119
dc.descriptionMandarin de Lacerda, C.A., Whats is the interest of normal and pathological morphological research to be quantitative? The exemple of the stereology (1999) Braz J Morphol, 16 (2), pp. 131-139
dc.descriptionMeghjl, S., Bone remodeling (1992) Br Drent, 172 (6), pp. 235-242
dc.descriptionMendes, P.H.B., Scofano Jr., A.R., Silva, M.G., Souza, I., Silva Filho, N.M., Abreu, A.V., Consolidação da fratura após o uso prolongado de corticóide: Estudo experimental em ratos (2001) Revista Brasileira de Ortopedia, 36 (9), pp. 345-351
dc.descriptionNakashima, K., Zhou, X., Kunkel, G., Zhang, Z., Deng, J.M., Behringer, R.R., The novel zinc finger-containing transcription factor osterix is required for osteoblast differentiation and bone formation (2002) Cell, 108, pp. 17-29
dc.descriptionPalencia, G., Teixeira, F., Ortiz, A., Perez, R., Rios, C., Sotelo, J., Detrimental effects of malnutrition on the damage induced by alcoholism: A study of animal models that simulate chronic alcoholism and malnutrition of large human groups (1994) J Stud Alcohol, 55 (1), pp. 113-120
dc.descriptionPelissoni, L.G.R., Louzada, M.J.Q., Silva, A.M., Martins, L.E.B., Belangero, W.D., Influência do cetoprofeno na consolidação óssea de ulnas osteotomizadas de coelhos. Estudo qualitativo e quantitativo através de programas computacionais (2003) Acta Cirúrgica Brasileira, 18 (5), pp. 452-457
dc.descriptionRang, H.P., Dale, M.M., Ritter, I.M., (2004) Farmacologia, , 5. ed. Rio de Janeiro: Guanabara Koogan
dc.descriptionRemedios, A., Bone and bone healing (1999) Veterinary Clinics of North America: Small Animal Practice, 29 (5), pp. 1029-1042
dc.descriptionSalari, P., Abdollahi, M., Controversial effects of non-steroidalanti-inflammatorydrugs on bone: A review (2009) Inflamm Allergy Drug Targets, 8 (3), pp. 169-175
dc.descriptionSantos, C.L., Rafacho, A., Bosqueiro, J.R., Efeitos da administração de dexametasona in vivo sobre glicemia, insulinemia e substratos circulantes são dependentes do tempo de tratamento (2007) Biosci J, 23 (3), pp. 101-110
dc.descriptionSato, Y., Arai, N., Negishi, A., Ohya, K., Expression of cyclooxygenase genes and involvement of endogenous prostaglandin during osteogenesis in the rat tibial bone marrow cavity (1997) J Med Dent Sci, 44 (4), pp. 81-92
dc.descriptionSilva, A.A., Avaliação clínica de Rattus norvegicus após terapia antiinflamatória com inibidor seletivo ou não para COX-2 por extrapolação alométrica (2004), [Tese]. Santa Maria, RS: Universidade Federal de Santa MariaSilva, R.V., Bertran, C.A., Kawachi, E.Y., Camilli, J.A., Repair of cranial bone defects with calcium phosphate ceramic implant or autogenous bone graft (2007) J Craniofac Surg, 18 (2), pp. 281-286
dc.descriptionSoares, E.A., Fávaro, W.J., Cagnon, V.H., Bertran, C.A., Camilli, J.A., Effects of alcohol and nicotine on the mechanical resistance of bone and bone neoformation around hydroxyapatite implants (2010) J Bone Miner Metab, 28 (1), pp. 101-107
dc.descriptionStites, D.P., Terr, A.I., Parslow, T.G., (2000) Imunologia Médica, , 9. ed. Rio de Janeiro: Guanabara Koogan
dc.descriptionSvendsen, P., Hau, J., (1984) Handbook of laboratory animal science, 1. , Boca Raton: CRC Press
dc.descriptionTasaka, A.C., Antiflamatórios não esteroidais (2002) Farmacologia aplicada a Medicina Veterinária, pp. 225-250. , In: Spinosa, HS, Górniak, SL, Bernardi, MM, 3. ed. Rio de Janeiro: Guanabara Koogan
dc.descriptionTenius, F.P., Biondo-Simões, M.L.P., Ioshii, S.O., Efeitos do uso crônico da dexametasona na cicatrização de feridas cutâneas em ratos (2007) Anais Brasileiros de Dermatologia, 82 (2), pp. 141-149
dc.descriptionTorsoni, M.A., Carvalheira, J.B., Pereira-Da-Silva, M., de Carvalho-Filho, M.A., Saad, M.J., Velloso, L.A., Molecular and functional resistance to insulin in hypothalamus of rats exposed to cold (2003) Am J Physiol Endocrinol Metab, 285 (1), pp. E216-E223
dc.descriptionWeisbroth, S.H., Paganelli, R.G., Salvia, M., Evalution of a disposable system during shipment of laboratory rats and mice (1977) Lab Anim Sci, 27 (2), pp. 186-194
dc.descriptionYamaguchi, A., Ishizuya, T., Kintou, N., Wada, Y., Katagiri, T., Wozney, J.M., Effects of BMP-2, BMP-4, and BMP-6 on osteoblastic differentiation of bone marrow-derived stromal cell lines, ST2 and MC3T3-G2/PA6 (1996) Biochem Biophys Res Commun, 220 (2), pp. 366-371
dc.descriptionYang, S., Wei, D., Wang, D., Phimphilai, M., Krebsbach, P.H., Franceschi, R.T., In vitro and in vivo synergistic interactions between the Runx2/Cbfa1 transcription factor and bone morphogenetic protein-2 in stimulating osteoblast differentiation (2003) J Bone Miner Res, 18 (4), pp. 705-715
dc.descriptionZhang, X., Schwarz, E.M., Young, D.A., Puzaz, J.E., Rosier, R.N., O'Keef, R.J., Cyclooxygenase-2 regulates mesenchymal cell differentiation into the osteoblast lineage and is critically involved in bone repair (2002) J Clin Invest, 109, pp. 1405-1415
dc.languageen
dc.languagept
dc.publisher
dc.relationRevista de Ciencias Farmaceuticas Basica e Aplicada
dc.rightsaberto
dc.sourceScopus
dc.titleEffect Of Dexamethasone And Ketoprofen On Osteogenesis And Bone Resistance In Rats [efeito Da Dexametasona E Do Cetoprofeno Na Osteogênese E Na Resistência óssea Em Ratos]
dc.typeArtículos de revistas


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