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1.
Braz. j. med. biol. res ; 48(9): 852-862, Sept. 2015. tab, ilus
Article in English | LILACS | ID: lil-756406

ABSTRACT

The antioxidant effects of Caryocar brasiliense Camb, commonly known as the pequi fruit, have not been evaluated to determine their protective effects against oxidative damage in lung carcinogenesis. In the present study, we evaluated the role of pequi fruit against urethane-induced DNA damage and oxidative stress in forty 8-12 week old male BALB/C mice. An in vivo comet assay was performed to assess DNA damage in lung tissues and changes in lipid peroxidation and redox cycle antioxidants were monitored for oxidative stress. Prior supplementation with pequi oil or its extract (15 µL, 60 days) significantly reduced urethane-induced oxidative stress. A protective effect against DNA damage was associated with the modulation of lipid peroxidation and low protein and gene expression of nitric oxide synthase. These findings suggest that the intake of pequi fruit might protect against in vivo genotoxicity and oxidative stress.


Subject(s)
Animals , Male , Mice , Antioxidants/pharmacology , DNA Damage/drug effects , Ericales/chemistry , Lung Neoplasms/prevention & control , Oxidative Stress/drug effects , Plant Extracts/pharmacology , Carcinogenesis , Carcinogens , Comet Assay , Genome , Immunohistochemistry , Lipid Peroxidation/drug effects , Lung Neoplasms/chemically induced , Lung Neoplasms/pathology , Mice, Inbred BALB C , Urethane
2.
Arq. bras. med. vet. zootec ; 64(4): 873-880, Aug. 2012. ilus, tab
Article in Portuguese | LILACS | ID: lil-647687

ABSTRACT

A fim de avaliar a resposta biológica da hidroxiapatita sintética (HAP-91) nos alvéolos de felinos domésticos, este biomaterial foi implantado após extração do terceiro pré-molar inferior direito em 12 gatos e mantida por meio de uma membrana de celulose bacteriana. No lado esquerdo, os alvéolos foram apenas recobertos com a membrana de celulose bacteriana, formando o grupo-controle. Observou-se, durante a avaliação clínica, que todos os animais voltaram a comer normalmente ração úmida, sem apresentarem sinais de dor ou desconforto após a recuperação anestésica. A cicatrização da ferida cirúrgica ocorreu de forma satisfatória, sendo que a membrana de celulose bacteriana evitou a saída precoce da hidroxiapatita. Radiograficamente, aos 50 dias, todos os animais apresentaram radiopacidade óssea homogênea em ambos os lados. À análise histomorfométrica, observou-se adiantamento do processo de reparo do osso alveolar nos oito primeiros dias do grupo-tratado quando comparado ao grupo-controle, bem como atraso aos 30 dias, porém, aos 50 dias, ambos os grupos apresentavam porcentagem de tecido ósseo semelhante e morfologicamente normal. Os resultados sugerem que a hidroxiapatita é biocompatível, integra-se ao tecido ósseo alveolar e pode ser utilizada em felinos.


The biocompatibility of a material depends on its characteristics, as well as the species and the environment recipient. In order to evaluate the biological response of the synthetic hydroxyapatite (HAP-91) in feline dental alveoli, it was implanted in the right inferior third premolar after extraction in 12 cats and maintained through a bacterial cellulose membrane. On the left side the alveoli was covered with a bacterial cellulose membrane (control group). During clinical evaluations it was observed that the animals started to eat after the anesthetic recovery time, without clinical signs of pain. There was a satisfactory cicatrization of the surgical wound and the bacterial cellulose membrane aided in repairing the gum, avoiding the loss of the hydroxyapatite. Radiographs taken 50 days post surgery presented homogeneous bone radiopacity on both sides. The histological and histomorfometrical analysis showed a positive progress of the alveolar repair in the first 8 days in the treated group when compared to the control group and a delay at 30 days, however at 50 days both presented a similar and morphologically normal percentage of bone tissue. These findings suggest that HAP-91 is biocompatible and integrates into the feline alveolar bone.


Subject(s)
Animals , Cats , Durapatite/analysis , Durapatite , Cats/metabolism , Cats/microbiology , Tooth Socket , Cellulose/analysis
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