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Ricardo Galler

Showing results (31-40 of 54) with videos related to

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Anais Da Academia Brasileira De Ciencias|May 29, 2008
Limited replication of yellow fever 17DD and 17D-Dengue recombinant viruses in rhesus monkeysGisela F Trindade, Renato S Marchevsky, Ana M B de Fillipis, et al.
Virology|March 11, 2014
Improved genetic stability of recombinant yellow fever 17D virus expressing a lentiviral Gag gene fragmentMarlon G Veloso de Santana, Patrícia C C Neves, Juliana Ribeiro dos Santos, et al.
Journal of Virology|February 10, 2012
The majority of freshly sorted simian immunodeficiency virus (SIV)-specific CD8(+) T cells cannot suppress viral replication in SIV-infected macrophagesLara Vojnov, Mauricio A Martins, Alexander T Bean, et al.
BMC Research Notes|September 26, 2014
Evaluation of pre-induction temperature, cell growth at induction and IPTG concentration on the expression of a leptospiral protein in E. coli using shaking flasks and microbioreactorAriane Leites Larentis, Júlia Fabiana Monteiro Quintal Nicolau, Gabriela dos Santos Esteves, et al.
Journal of Virological Methods|April 19, 2008
Pressure-inactivated yellow fever 17DD virus: implications for vaccine developmentLuciane P Gaspar, Ygara S Mendes, Anna M Y Yamamura, et al.
Vaccine|March 9, 2005
Production of yellow fever 17DD vaccine virus in primary culture of chicken embryo fibroblasts: yields, thermo and genetic stability, attenuation and immunogenicityMarcos S Freire, George F Mann, Renato S Marchevsky, et al.
Vaccine|October 14, 2010
CD8+ gamma-delta TCR+ and CD4+ T cells produce IFN-γ at 5-7 days after yellow fever vaccination in Indian rhesus macaques, before the induction of classical antigen-specific T cell responsesPatrícia C C Neves, Richard A Rudersdorf, Ricardo Galler, et al.
Immunogenetics|July 8, 2010
The live-attenuated yellow fever vaccine 17D induces broad and potent T cell responses against several viral proteins in Indian rhesus macaques--implications for recombinant vaccine designPhilip A Mudd, Shari M Piaskowski, Patricia C Costa Neves, et al.
Plos Neglected Tropical Diseases|October 23, 2013
Identification of seroreactive proteins of Leptospira interrogans serovar copenhageni using a high-density protein microarray approachCarolina Lessa-Aquino, Camila Borges Rodrigues, Jozelyn Pablo, et al.
Journal of Virology|June 16, 2005
Attenuation of recombinant yellow fever 17D viruses expressing foreign protein epitopes at the surfaceMyrna C Bonaldo, Richard C Garratt, Renato S Marchevsky, et al.
Pageof 6

Showing results (31-40 of 54) with videos related to

Sort By:
Pageof 6
Anais Da Academia Brasileira De Ciencias|May 29, 2008
Limited replication of yellow fever 17DD and 17D-Dengue recombinant viruses in rhesus monkeysGisela F Trindade, Renato S Marchevsky, Ana M B de Fillipis, et al.
Virology|March 11, 2014
Improved genetic stability of recombinant yellow fever 17D virus expressing a lentiviral Gag gene fragmentMarlon G Veloso de Santana, Patrícia C C Neves, Juliana Ribeiro dos Santos, et al.
Journal of Virology|February 10, 2012
The majority of freshly sorted simian immunodeficiency virus (SIV)-specific CD8(+) T cells cannot suppress viral replication in SIV-infected macrophagesLara Vojnov, Mauricio A Martins, Alexander T Bean, et al.
BMC Research Notes|September 26, 2014
Evaluation of pre-induction temperature, cell growth at induction and IPTG concentration on the expression of a leptospiral protein in E. coli using shaking flasks and microbioreactorAriane Leites Larentis, Júlia Fabiana Monteiro Quintal Nicolau, Gabriela dos Santos Esteves, et al.
Journal of Virological Methods|April 19, 2008
Pressure-inactivated yellow fever 17DD virus: implications for vaccine developmentLuciane P Gaspar, Ygara S Mendes, Anna M Y Yamamura, et al.
Vaccine|March 9, 2005
Production of yellow fever 17DD vaccine virus in primary culture of chicken embryo fibroblasts: yields, thermo and genetic stability, attenuation and immunogenicityMarcos S Freire, George F Mann, Renato S Marchevsky, et al.
Vaccine|October 14, 2010
CD8+ gamma-delta TCR+ and CD4+ T cells produce IFN-γ at 5-7 days after yellow fever vaccination in Indian rhesus macaques, before the induction of classical antigen-specific T cell responsesPatrícia C C Neves, Richard A Rudersdorf, Ricardo Galler, et al.
Immunogenetics|July 8, 2010
The live-attenuated yellow fever vaccine 17D induces broad and potent T cell responses against several viral proteins in Indian rhesus macaques--implications for recombinant vaccine designPhilip A Mudd, Shari M Piaskowski, Patricia C Costa Neves, et al.
Plos Neglected Tropical Diseases|October 23, 2013
Identification of seroreactive proteins of Leptospira interrogans serovar copenhageni using a high-density protein microarray approachCarolina Lessa-Aquino, Camila Borges Rodrigues, Jozelyn Pablo, et al.
Journal of Virology|June 16, 2005
Attenuation of recombinant yellow fever 17D viruses expressing foreign protein epitopes at the surfaceMyrna C Bonaldo, Richard C Garratt, Renato S Marchevsky, et al.
Pageof 6