Bone tissue in ideal conditions morphofunctional remodeling properly. The bone can be affected by fractures, tumors, hormonal dysfunction, senescence, genetic modifications, among others. In such circumstances, the proper diet, drug use, exercise and other factors are important to the prevention of bone mineral loss. The effect of kinesiotherapy obtained through the application of vibratory waves administered through the vibrating platform, Juvent1000 ® already been established in the prevention of bone mineral density, muscular trophism, among other systems in humans. The response by analyzing bone tissue of bone repair in critical defect is not known in experimental animals and in human clinical. This research evaluated the osteogenic potential critical defect in the calvaria of rats subjected to the application of vibratory waves obtained by vibrating platform and implant in the critical defect of rat calvaria. The bone tissue response was evaluated showed satisfactory results obtained in biological points 15, 45 and 120 days.
Introdução: o fármaco ranelato de estrôncio (RE) é muito utilizado na terapêutica profilática e no controle da osteoporose. Age sistemicamente diminuindo a reabsorção e aumentando a formação óssea, apresentando eventos adversos pouco esclarecidos na literatura, à exemplo a síndrome DRESS com envolvimento hepático. Objetivo: avaliar a morfologia hepática em ratos norvegicus albinus após administração do RE. Metodologia: estudo experimental com 10 ratos, divididos aleatoriamente em dois grupos, Grupo Controle (GC), sem administração do RE, e Grupo Ranelato de Estrôncio (GRE), ambos acompanhados durante 15 dias, e, em seguida, sacrificados e o fígado de cada animal colocado para fixação no solução de formaldeído a 4% durante 48 horas. Após essa etapa, foram realizados os procedimentos necessários à análise pela microscopia óptica, com lâminas coradas pela hematoxilina e eosina, e picrosirius red.Resultados: nos GC e GRE foram encontradas alterações similares, como reação ductular, dilatação sinusoidal e fibrose perissinusoidal, com intensidades distintas entre os grupos, sendo a reação ductular mais proeminente no GC, e a dilatação sinusoidal e fibrose perissinusoidal mais pronunciada no GRE. Além disso, no GC foram evidenciados achados inflamatórios, como presença de infiltrado inflamatório misto e hiperplasia de células de Kupffer, não visualizados no GRE, implicando numa possível ação anti-inflamatória do RE. Conclusão: pode-se concluir que foram visualizadas diferenças nos achados morfológicos do parênquima hepático dos ratos tratados com o RE em comparação aos não tratados, ainda que esses achados não sejam suficientes para inferir a incidência de um processo patológico característico, como cirrose ou hepatite.
Some biomaterials can be used to promote tissue repair process. The biological substitutes (biomaterials such as hydroxyapatite beads) can be used with some advantages and purpose of mimicking responses to on-site repair of the injured bone. The objective of this study was to evaluate the osteogenic potential of the biomaterial composed of hydroxyapatite and alginate in place of the critical defect. bioceramic samples stoichiometric hydroxyapatite was produced by the precipitation method, wet method with ion molar ratio of Ca 10 (PO 4) 6 (OH) 2, in which the Ca / P ratio was equal to 1.67. The reaction conditions were favorable to the composition of a biomaterial with crystalline phase. The synthesis of the biomaterial composed of hydroxyapatite and alginate microspheres (HAAlg5%; 200 ø 425mm) was obtained from two primary solutions with the aim of, in optimal reactive conditions, to form the precipitate. After synthesis the microspheres were implanted into the defect site. The potential effects of using HAAlg5% and the application of vibratory waves in the critical defect repair were unknown and the results described in this study are promising, considering the systemic therapy and at the site of injury. The biomaterial used promoted repair the injured tissue.
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