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1.
Braz. j. microbiol ; 41(3): 621-627, Oct. 2010. tab
Article in English | LILACS | ID: lil-549403

ABSTRACT

The essential oil from the leaves of Myrcia ovata Cambess., commonly used in Brazil for the treatment of gastric illnesses, was screened for antimicrobial activity and action in the formation of microbial biofilms by Enterococcus faecalis. The oil was obtained by hydrodistillation using a clevenger-type system. Its chemical composition was analyzed using GC and GC-MS. Both MIC and MBC of the essential oil were determined by broth microdilution techniques and agar dilution method. The essential oil showed antimicrobial activity against E. faecalis, Escherichia coli, Pseudomonas aeruginosa, Salmonella choleraesuis, Staphylococcus aureus, Streptococcus pneumoniae and Candida parapsilosis. The results showed that the essential oil of M. ovata Cambess. was effective against the formation of biofilm by E. faecalis when compared with the control. Four volatile compounds, representing 92.1 percent of the oil, were identified and geranial was the major component (50.4 percent). At the best of our knowledge, this is the first report of the chemical composition and antimicrobial activity of the essential oil from leaves of M. ovata.


Subject(s)
Biofilms , Enterococcus faecalis/isolation & purification , Gastrointestinal Diseases , Oils, Volatile/analysis , Methods , Methods
2.
Rev. bras. parasitol. vet ; 18(2): 1-4, Apr.-June 2009. ilus
Article in English | LILACS | ID: lil-606770

ABSTRACT

The equine piroplasmosis caused by Theileria equi is one of the most important parasitic diseases of the equine, causing damage to animal health and economic losses. In T. equi, 2 merozoite surface proteins, equi merozoite antigen EMA-1 and EMA-2, have been identified as the most immunodominant antigens. This suggests that these antigens might be used as immunobiological tools. The EMA-1 of Theileria equi was cloned and expressed in the yeast Pichia pastoris. The transformed yeast was grown at high cell density, expressing up to 389 mg.L-1 of recombinant protein. The protein was concentrated and detected in Dot blot. The recombinant product was antigenically similar to the native protein as determined using monoclonal antibodies, and polyclonal antibodies obtained from equines naturally infected with T. equi. The immunogenicity of rEMA-1 protein was demonstrated by IFAT using sera from recombinant-protein-immunized mice using aluminum hydroxide as adjuvant. All animals vaccinated with rEMA-1 developed a high specific antibody response. This results suggest that rEMA-1expressed in P. pastoris might be a strong candidate to be used as an antigen for immune diagnostics as well as a vaccine antigen.


A piroplasmose equina causada por Theileria equi é uma das mais importantes doenças parasitárias de equídeos, causando danos a saúde animal e perdas econômicas. Em T. equi, 2 proteínas de superfície de merozoítos, equi merozoite antigen EMA-1 e EMA-2, têm sido identificadas como antígenos imunodominantes. Sugerindo que estes antígenos possam ser usados como produtos imunobiológicos. O gene EMA-1 de T. equi foi clonado e expressado na levedura Pichia pastoris. As leveduras transformadas foram cultivadas a altas densidades celulares expressando 389 mg.L-1 de proteína recombinante. A proteína foi concentrada e detectada em Dot blot. O produto recombinante foi antigenicamente similar à proteína nativa quando determinado usando anticorpo monoclonal e anticorpos policlonais obtidos de equinos naturalmente infectados com T. equi. A imunogenicidade da proteína rEMA-1 foi demonstrada por RIFI utilizando soro de camundongos imunizados com proteína recombinante usando hidróxido de alumínio como adjuvante. Todos os animais vacinados com rEMA-1 desenvolveram uma alta resposta específica de anticorpos. Esses resultados sugerem que rEMA-1 expressa em P. pastoris possa ser um candidato para ser usado como antígeno para diagnóstico imunológico bem como antígeno para vacinas.


Subject(s)
Animals , Female , Mice , Pichia/metabolism , Protozoan Proteins/biosynthesis , Protozoan Proteins/immunology , Recombinant Proteins/biosynthesis , Recombinant Proteins/immunology , Theileria , Mice, Inbred BALB C
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