Correlation between nitric oxide (NO) synthesis and the control of murine hepatitis virus in immunized and non-immunized mice (2003)
- Autores:
- Autores USP: AUGUSTO, OHARA - IQ ; DAGLI, MARIA LUCIA ZAIDAN - FMVZ ; LINARES, EDLAINE - IQ
- Unidades: IQ; FMVZ
- Assuntos: ÓXIDO NÍTRICO; BIOQUÍMICA; IMUNOLOGIA
- Idioma: Inglês
- Imprenta:
- Editora: Instituto Butantan
- Local: São Paulo
- Data de publicação: 2003
- Fonte:
- Título do periódico: Resumos
- Nome do evento: Reunião Científica Anual do Instituto Butantan
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ABNT
TSUHAKO, Maria Heloisa et al. Correlation between nitric oxide (NO) synthesis and the control of murine hepatitis virus in immunized and non-immunized mice. 2003, Anais.. São Paulo: Instituto Butantan, 2003. . Acesso em: 19 set. 2024. -
APA
Tsuhako, M. H., Augusto, O., Pereira, C. A., Dagli, M. L. Z., & Linares, E. (2003). Correlation between nitric oxide (NO) synthesis and the control of murine hepatitis virus in immunized and non-immunized mice. In Resumos. São Paulo: Instituto Butantan. -
NLM
Tsuhako MH, Augusto O, Pereira CA, Dagli MLZ, Linares E. Correlation between nitric oxide (NO) synthesis and the control of murine hepatitis virus in immunized and non-immunized mice. Resumos. 2003 ;[citado 2024 set. 19 ] -
Vancouver
Tsuhako MH, Augusto O, Pereira CA, Dagli MLZ, Linares E. Correlation between nitric oxide (NO) synthesis and the control of murine hepatitis virus in immunized and non-immunized mice. Resumos. 2003 ;[citado 2024 set. 19 ] - Correlation between nitric oxide synthesis and control of murine hepatitis virus in immunized and mon-immunized mice
- Reaction of human hemoglobin and peroxynitrite: involvement of protein radicals on the reaction mechanism
- Nitric oxige synthesis by immunized mice infected with fulminant murine hepatitis virus is associated with immune response
- Association between nitric oxide synthesis and vaccination-acquired resistance to murine hepatitis virus by spf mice
- EPR studies of radical production In vivo by lypopolysaccharide. Potential role of iron mobilized from iron-nitrosyl complexes
- Tempol inhibits macrophage leishmanicidal activity in infected mice
- Production of peroxymonocarbonate evidenced by boronate probes under steady-state micromolar H2O2 and in PMA-activated macrophages
- EPR studies of in vivo radical production by lipopolysaccharide: potential role of iron mobilized from iron-nitrosyl complexes
- Inhibition of in vivo leishmanicidal mechanisms by tempol: Nitric oxide down-regulation and oxidant scavenging
- Effects of hyperbaric oxygen on Pseudomonas aeruginosa susceptibility to imipenem and macrophages
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