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  • Source: Journal of Neurochemistry. Unidades: FMVZ, ICB

    Subjects: TRANSTORNO DO ESPECTRO AUTISTA, AGENTES DOPAMINÉRGICOS, SISTEMA NERVOSO CENTRAL

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      CEZAR, Luana Carvalho et al. Prenatal valproic acid induces autistic-like behaviors in rats via dopaminergic modulation in nigrostriatal and mesocorticolimbic pathways. Journal of Neurochemistry, v. 169, n. 1, p. 1-14, 2025Tradução . . Disponível em: https://doi.org/10.1111/jnc.16282. Acesso em: 24 jun. 2025.
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      Cezar, L. C., Fonseca, C. C. N. da, Klein, M. O., Kirsten, T. B., & Felicio, L. F. (2025). Prenatal valproic acid induces autistic-like behaviors in rats via dopaminergic modulation in nigrostriatal and mesocorticolimbic pathways. Journal of Neurochemistry, 169( 1), 1-14. doi:10.1111/jnc.16282
    • NLM

      Cezar LC, Fonseca CCN da, Klein MO, Kirsten TB, Felicio LF. Prenatal valproic acid induces autistic-like behaviors in rats via dopaminergic modulation in nigrostriatal and mesocorticolimbic pathways [Internet]. Journal of Neurochemistry. 2025 ; 169( 1): 1-14.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.16282
    • Vancouver

      Cezar LC, Fonseca CCN da, Klein MO, Kirsten TB, Felicio LF. Prenatal valproic acid induces autistic-like behaviors in rats via dopaminergic modulation in nigrostriatal and mesocorticolimbic pathways [Internet]. Journal of Neurochemistry. 2025 ; 169( 1): 1-14.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.16282
  • Source: Journal of Neurochemistry. Unidade: IQ

    Subjects: CORONAVIRUS, OLFATO, COVID-19

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      GLEZER, Isaias et al. Viral infection and smell loss: the case of COVID-19. Journal of Neurochemistry, v. 157, p. 930–943, 2021Tradução . . Disponível em: https://doi.org/10.1111/jnc.15197. Acesso em: 24 jun. 2025.
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      Glezer, I., Bruni-Cardoso, A., Schechtman, D., & Malnic, B. (2021). Viral infection and smell loss: the case of COVID-19. Journal of Neurochemistry, 157, 930–943. doi:10.1111/jnc.15197
    • NLM

      Glezer I, Bruni-Cardoso A, Schechtman D, Malnic B. Viral infection and smell loss: the case of COVID-19 [Internet]. Journal of Neurochemistry. 2021 ; 157 930–943.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.15197
    • Vancouver

      Glezer I, Bruni-Cardoso A, Schechtman D, Malnic B. Viral infection and smell loss: the case of COVID-19 [Internet]. Journal of Neurochemistry. 2021 ; 157 930–943.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.15197
  • Source: Journal of Neurochemistry. Unidade: FMRP

    Subjects: AEROBIOSE, INTERLEUCINA 6, MÚSCULO ESQUELÉTICO, CONDICIONAMENTO FÍSICO, ANIMAIS, TRANSDUÇÃO DE SINAL CELULAR, MEDULA ESPINHAL

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      SANTOS, Rafaela Silva dos et al. Involvement of the Hsp70/TLR4/IL-6 and TNF-α pathways in delayed-onset muscle soreness. Journal of Neurochemistry, v. 155, n. 1, p. 29-44, 2020Tradução . . Disponível em: https://doi.org/10.1111/jnc.15006. Acesso em: 24 jun. 2025.
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      Santos, R. S. dos, Veras, F. P., Ferreira, D. W., Sant'Anna, M. B. M., Lollo, P. C. B., Cunha, T. M., & Galdino, G. (2020). Involvement of the Hsp70/TLR4/IL-6 and TNF-α pathways in delayed-onset muscle soreness. Journal of Neurochemistry, 155( 1), 29-44. doi:10.1111/jnc.15006
    • NLM

      Santos RS dos, Veras FP, Ferreira DW, Sant'Anna MBM, Lollo PCB, Cunha TM, Galdino G. Involvement of the Hsp70/TLR4/IL-6 and TNF-α pathways in delayed-onset muscle soreness [Internet]. Journal of Neurochemistry. 2020 ; 155( 1): 29-44.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.15006
    • Vancouver

      Santos RS dos, Veras FP, Ferreira DW, Sant'Anna MBM, Lollo PCB, Cunha TM, Galdino G. Involvement of the Hsp70/TLR4/IL-6 and TNF-α pathways in delayed-onset muscle soreness [Internet]. Journal of Neurochemistry. 2020 ; 155( 1): 29-44.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.15006
  • Source: Journal of Neurochemistry. Unidade: ICB

    Subjects: BIOLOGIA CELULAR, HIPOCAMPU DE ANIMAL, CAMUNDONGOS, ENVELHECIMENTO CELULAR, MAMÍFEROS, FOSFOPROTEÍNAS, HIPOCAMPO

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      LACKIE, Rachel Elizabeth et al. Modulation of hippocampal neuronal resilience during aging by the Hsp70/Hsp90 co‐chaperone STI1. Journal of Neurochemistry, v. 153, n. 6, p. 727-758, 2020Tradução . . Disponível em: https://doi.org/10.1111/jnc.14882. Acesso em: 24 jun. 2025.
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      Lackie, R. E., Razzaq, A. R., Farhan, S. M. K., Qiu, L. R., Moshitzky, G., Beraldo, F. H., et al. (2020). Modulation of hippocampal neuronal resilience during aging by the Hsp70/Hsp90 co‐chaperone STI1. Journal of Neurochemistry, 153( 6), 727-758. doi:10.1111/jnc.14882
    • NLM

      Lackie RE, Razzaq AR, Farhan SMK, Qiu LR, Moshitzky G, Beraldo FH, Lopes MH, Maciejewski A, Gros R, Fan J, Choy W-Y, Greenberg DS, Martins VR, Duennwald ML, Lerch JP, Soreq H, Prado VF, Prado MAM. Modulation of hippocampal neuronal resilience during aging by the Hsp70/Hsp90 co‐chaperone STI1 [Internet]. Journal of Neurochemistry. 2020 ; 153( 6): 727-758.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.14882
    • Vancouver

      Lackie RE, Razzaq AR, Farhan SMK, Qiu LR, Moshitzky G, Beraldo FH, Lopes MH, Maciejewski A, Gros R, Fan J, Choy W-Y, Greenberg DS, Martins VR, Duennwald ML, Lerch JP, Soreq H, Prado VF, Prado MAM. Modulation of hippocampal neuronal resilience during aging by the Hsp70/Hsp90 co‐chaperone STI1 [Internet]. Journal of Neurochemistry. 2020 ; 153( 6): 727-758.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.14882
  • Source: Journal of Neurochemistry. Unidade: EEFERP

    Subjects: CÉREBRO, BIOQUÍMICA, NEUROQUÍMICA

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      FRANCISCO, Annelise et al. Nicotinamide nucleotide transhydrogenase is required for brain mitochondrial redox balance under hampered energy substrate metabolism and high‐fat diet. Journal of Neurochemistry, v. 147, n. 5, p. 663-677, 2018Tradução . . Disponível em: https://doi.org/10.1111/jnc.14602. Acesso em: 24 jun. 2025.
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      Francisco, A., Ronchi, J. A., Navarro, C. D. C., Figueira, T. R., & Castilho, R. F. (2018). Nicotinamide nucleotide transhydrogenase is required for brain mitochondrial redox balance under hampered energy substrate metabolism and high‐fat diet. Journal of Neurochemistry, 147( 5), 663-677. doi:10.1111/jnc.14602
    • NLM

      Francisco A, Ronchi JA, Navarro CDC, Figueira TR, Castilho RF. Nicotinamide nucleotide transhydrogenase is required for brain mitochondrial redox balance under hampered energy substrate metabolism and high‐fat diet [Internet]. Journal of Neurochemistry. 2018 ; 147( 5): 663-677.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.14602
    • Vancouver

      Francisco A, Ronchi JA, Navarro CDC, Figueira TR, Castilho RF. Nicotinamide nucleotide transhydrogenase is required for brain mitochondrial redox balance under hampered energy substrate metabolism and high‐fat diet [Internet]. Journal of Neurochemistry. 2018 ; 147( 5): 663-677.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.14602
  • Source: Journal of Neurochemistry. Unidade: FMRP

    Subjects: DOENÇA DE ALZHEIMER, ANTICORPOS

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      SEBOLLELA, Adriano et al. A human scFv antibody that targets and neutralizes high molecular weight pathogenic amyloid‐β oligomers. Journal of Neurochemistry, v. 142, n. 6, p. 934-947, 2017Tradução . . Disponível em: https://doi.org/10.1111/jnc.14118. Acesso em: 24 jun. 2025.
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      Sebollela, A., Cline, E. N., Popova, I., Luo, K., Sun, X., Ahn, J., et al. (2017). A human scFv antibody that targets and neutralizes high molecular weight pathogenic amyloid‐β oligomers. Journal of Neurochemistry, 142( 6), 934-947. doi:10.1111/jnc.14118
    • NLM

      Sebollela A, Cline EN, Popova I, Luo K, Sun X, Ahn J, Barcelos MA, Bezerra VN, Silva NML e, Patel J. A human scFv antibody that targets and neutralizes high molecular weight pathogenic amyloid‐β oligomers [Internet]. Journal of Neurochemistry. 2017 ; 142( 6): 934-947.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.14118
    • Vancouver

      Sebollela A, Cline EN, Popova I, Luo K, Sun X, Ahn J, Barcelos MA, Bezerra VN, Silva NML e, Patel J. A human scFv antibody that targets and neutralizes high molecular weight pathogenic amyloid‐β oligomers [Internet]. Journal of Neurochemistry. 2017 ; 142( 6): 934-947.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.14118
  • Source: Journal of Neurochemistry. Unidades: FMRP, FFCLRP

    Subjects: MUTAÇÃO GENÉTICA, PROTEÍNAS DE TRANSPORTE, ÁCIDO GLUTÂMICO, VENENOS DE ORIGEM ANIMAL, ARANHAS, TOXINAS (FARMACOLOGIA)

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      MORTENSEN, Ole V. et al. Molecular determinants of transport stimulation of EAAT2 are located at interface between the trimerization and substrate transport domains. Journal of Neurochemistry, v. 133, n. 2, p. 199–210, 2015Tradução . . Disponível em: https://doi.org/10.1111/jnc.13047. Acesso em: 24 jun. 2025.
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      Mortensen, O. V., Liberato, J. L., Coutinho Netto, J., Santos, W. F. dos, & Fontana, A. C. K. (2015). Molecular determinants of transport stimulation of EAAT2 are located at interface between the trimerization and substrate transport domains. Journal of Neurochemistry, 133( 2), 199–210. doi:10.1111/jnc.13047
    • NLM

      Mortensen OV, Liberato JL, Coutinho Netto J, Santos WF dos, Fontana ACK. Molecular determinants of transport stimulation of EAAT2 are located at interface between the trimerization and substrate transport domains [Internet]. Journal of Neurochemistry. 2015 ; 133( 2): 199–210.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.13047
    • Vancouver

      Mortensen OV, Liberato JL, Coutinho Netto J, Santos WF dos, Fontana ACK. Molecular determinants of transport stimulation of EAAT2 are located at interface between the trimerization and substrate transport domains [Internet]. Journal of Neurochemistry. 2015 ; 133( 2): 199–210.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/jnc.13047
  • Source: Journal of Neurochemistry. Conference titles: Biennial Meeting of the International Society for Neurochemistry. Unidade: FM

    Subjects: DEMÊNCIA, DOENÇAS NEURODEGENERATIVAS, BRASIL

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      LANDEMBERGER, M. C. et al. Human prion diseases in brazil. Journal of Neurochemistry. Oxford: Faculdade de Medicina, Universidade de São Paulo. Disponível em: http://onlinelibrary.wiley.com/doi/10.1111/jnc.13188/epdf. Acesso em: 24 jun. 2025. , 2015
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      Landemberger, M. C., Machado, C., Smid, J., Gomes, H., Chimelli, L., Canedo, N., et al. (2015). Human prion diseases in brazil. Journal of Neurochemistry. Oxford: Faculdade de Medicina, Universidade de São Paulo. Recuperado de http://onlinelibrary.wiley.com/doi/10.1111/jnc.13188/epdf
    • NLM

      Landemberger MC, Machado C, Smid J, Gomes H, Chimelli L, Canedo N, Rosemberg S, Nitrini R, Martins V. Human prion diseases in brazil [Internet]. Journal of Neurochemistry. 2015 ; 134 201 abstr. MTU11-22.[citado 2025 jun. 24 ] Available from: http://onlinelibrary.wiley.com/doi/10.1111/jnc.13188/epdf
    • Vancouver

      Landemberger MC, Machado C, Smid J, Gomes H, Chimelli L, Canedo N, Rosemberg S, Nitrini R, Martins V. Human prion diseases in brazil [Internet]. Journal of Neurochemistry. 2015 ; 134 201 abstr. MTU11-22.[citado 2025 jun. 24 ] Available from: http://onlinelibrary.wiley.com/doi/10.1111/jnc.13188/epdf
  • Source: Journal of Neurochemistry. Conference titles: Biennial Meeting of the International Society for Neurochemistry. Unidade: FM

    Subjects: BIOMARCADORES, RATOS, DOENÇA DE ALZHEIMER (DIAGNÓSTICO)

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      LOURENCO, M. et al. D-serine levels in Alzheimer’s disease: implications for novel biomarker development. Journal of Neurochemistry. Oxford: Faculdade de Medicina, Universidade de São Paulo. Disponível em: http://onlinelibrary.wiley.com/doi/10.1111/jnc.13189/epdf. Acesso em: 24 jun. 2025. , 2015
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      Lourenco, M., Madeira, C., Vargas-Lopes, C., Suemoto, C. K., Brandão, C. O., Reis, T., et al. (2015). D-serine levels in Alzheimer’s disease: implications for novel biomarker development. Journal of Neurochemistry. Oxford: Faculdade de Medicina, Universidade de São Paulo. Recuperado de http://onlinelibrary.wiley.com/doi/10.1111/jnc.13189/epdf
    • NLM

      Lourenco M, Madeira C, Vargas-Lopes C, Suemoto CK, Brandão CO, Reis T, Leite REP, Laks J, Jacob-Filho W, Pasqualucci CA, Grinberg LT, Ferreira ST, Panizzutti R. D-serine levels in Alzheimer’s disease: implications for novel biomarker development [Internet]. Journal of Neurochemistry. 2015 ; 134 325 abstr. WTH12-14.[citado 2025 jun. 24 ] Available from: http://onlinelibrary.wiley.com/doi/10.1111/jnc.13189/epdf
    • Vancouver

      Lourenco M, Madeira C, Vargas-Lopes C, Suemoto CK, Brandão CO, Reis T, Leite REP, Laks J, Jacob-Filho W, Pasqualucci CA, Grinberg LT, Ferreira ST, Panizzutti R. D-serine levels in Alzheimer’s disease: implications for novel biomarker development [Internet]. Journal of Neurochemistry. 2015 ; 134 325 abstr. WTH12-14.[citado 2025 jun. 24 ] Available from: http://onlinelibrary.wiley.com/doi/10.1111/jnc.13189/epdf
  • Source: Journal of Neurochemistry. Conference titles: Special Conference on Membrane Domains in CNS Physiology and Pathology. Unidade: IQ

    Assunto: BIOQUÍMICA

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      TURINA, A. V e SCHREIER, Shirley e PERILLO, M. A. Coupling between 'GABA IND. A'-R ligand-binding activity and membrane organization in β-cyclodextrin-treated synaptosomal membranes from bovine brain cortex: new insights from EPR experiments. Journal of Neurochemistry. Oxford: Instituto de Química, Universidade de São Paulo. . Acesso em: 24 jun. 2025. , 2010
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      Turina, A. V., Schreier, S., & Perillo, M. A. (2010). Coupling between 'GABA IND. A'-R ligand-binding activity and membrane organization in β-cyclodextrin-treated synaptosomal membranes from bovine brain cortex: new insights from EPR experiments. Journal of Neurochemistry. Oxford: Instituto de Química, Universidade de São Paulo.
    • NLM

      Turina AV, Schreier S, Perillo MA. Coupling between 'GABA IND. A'-R ligand-binding activity and membrane organization in β-cyclodextrin-treated synaptosomal membranes from bovine brain cortex: new insights from EPR experiments. Journal of Neurochemistry. 2010 ; 113 29 res. 99.[citado 2025 jun. 24 ]
    • Vancouver

      Turina AV, Schreier S, Perillo MA. Coupling between 'GABA IND. A'-R ligand-binding activity and membrane organization in β-cyclodextrin-treated synaptosomal membranes from bovine brain cortex: new insights from EPR experiments. Journal of Neurochemistry. 2010 ; 113 29 res. 99.[citado 2025 jun. 24 ]
  • Source: Journal of Neurochemistry. Unidade: ICB

    Assunto: HISTOLOGIA

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      GELMAN, Julia S. et al. Hemopressins and other hemoglobin-derived peptides in mouse brain:: comparison between brain, blood, and hearth peptidome and regulation in Cpefat/fat mice. Journal of Neurochemistry, v. 113, n. 4, p. 871-880, 2010Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2010.06653.x. Acesso em: 24 jun. 2025.
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      Gelman, J. S., Sironi, J., Castro, L. M. de C., Ferro, E. S., & Fricker, L. D. (2010). Hemopressins and other hemoglobin-derived peptides in mouse brain:: comparison between brain, blood, and hearth peptidome and regulation in Cpefat/fat mice. Journal of Neurochemistry, 113( 4), 871-880. doi:10.1111/j.1471-4159.2010.06653.x
    • NLM

      Gelman JS, Sironi J, Castro LM de C, Ferro ES, Fricker LD. Hemopressins and other hemoglobin-derived peptides in mouse brain:: comparison between brain, blood, and hearth peptidome and regulation in Cpefat/fat mice [Internet]. Journal of Neurochemistry. 2010 ; 113( 4): 871-880.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2010.06653.x
    • Vancouver

      Gelman JS, Sironi J, Castro LM de C, Ferro ES, Fricker LD. Hemopressins and other hemoglobin-derived peptides in mouse brain:: comparison between brain, blood, and hearth peptidome and regulation in Cpefat/fat mice [Internet]. Journal of Neurochemistry. 2010 ; 113( 4): 871-880.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2010.06653.x
  • Source: Journal of Neurochemistry. Unidade: ICB

    Assunto: HISTOLOGIA

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      WARDMAN, Jonathan H. et al. Analysis of peptides in prohormone convertase 1/3 null mouse brain using quantitative peptidomics. Journal of Neurochemistry, v. 114, n. 1, p. 215-225, 2010Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2010.06760.x. Acesso em: 24 jun. 2025.
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      Wardman, J. H., Zhang, X., Gagnon, S., Castro, L. M. de, Zhu, X., Steiner, D. F., et al. (2010). Analysis of peptides in prohormone convertase 1/3 null mouse brain using quantitative peptidomics. Journal of Neurochemistry, 114( 1), 215-225. doi:10.1111/j.1471-4159.2010.06760.x
    • NLM

      Wardman JH, Zhang X, Gagnon S, Castro LM de, Zhu X, Steiner DF, Day R, Fricker LD. Analysis of peptides in prohormone convertase 1/3 null mouse brain using quantitative peptidomics [Internet]. Journal of Neurochemistry. 2010 ; 114( 1): 215-225.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2010.06760.x
    • Vancouver

      Wardman JH, Zhang X, Gagnon S, Castro LM de, Zhu X, Steiner DF, Day R, Fricker LD. Analysis of peptides in prohormone convertase 1/3 null mouse brain using quantitative peptidomics [Internet]. Journal of Neurochemistry. 2010 ; 114( 1): 215-225.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2010.06760.x
  • Source: Journal of Neurochemistry. Unidade: ICB

    Assunto: HISTOLOGIA

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      JESKE, Nathaniel A. et al. Modulation of bradykinin signaling by EP24.15 and EP24.16 in cultured trigeminal ganglia. Journal of Neurochemistry, v. 97, p. 13-21, 2006Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2006.03706.x. Acesso em: 24 jun. 2025.
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      Jeske, N. A., Berg, K. A., Cousins, J. C., Ferro, E. S., Clarke, W. P., Glucksman, M. J., & Roberts, J. L. (2006). Modulation of bradykinin signaling by EP24.15 and EP24.16 in cultured trigeminal ganglia. Journal of Neurochemistry, 97, 13-21. doi:10.1111/j.1471-4159.2006.03706.x
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      Jeske NA, Berg KA, Cousins JC, Ferro ES, Clarke WP, Glucksman MJ, Roberts JL. Modulation of bradykinin signaling by EP24.15 and EP24.16 in cultured trigeminal ganglia [Internet]. Journal of Neurochemistry. 2006 ; 97 13-21.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2006.03706.x
    • Vancouver

      Jeske NA, Berg KA, Cousins JC, Ferro ES, Clarke WP, Glucksman MJ, Roberts JL. Modulation of bradykinin signaling by EP24.15 and EP24.16 in cultured trigeminal ganglia [Internet]. Journal of Neurochemistry. 2006 ; 97 13-21.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2006.03706.x
  • Source: Journal of Neurochemistry. Unidade: IB

    Subjects: GENÉTICA, RITMO CIRCADIANO, EXPRESSÃO GÊNICA, PIGMENTOS VISUAIS EM ANIMAL, RETINA, FOTORRECEPTORES, GLÂNDULA PINEAL

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      CHAURASIA, S. S. et al. Molecular cloning, localization and circadian expression of chicken melanopsin (Opn4): differential regulation of expression in pineal and retinal cell types. Journal of Neurochemistry, v. 92, p. 158-170, 2005Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2004.02874.x. Acesso em: 24 jun. 2025.
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      Chaurasia, S. S., Rollag, M. D., Jiang, G., Hayes, W. P., Haque, R., Natesan, A., et al. (2005). Molecular cloning, localization and circadian expression of chicken melanopsin (Opn4): differential regulation of expression in pineal and retinal cell types. Journal of Neurochemistry, 92, 158-170. doi:10.1111/j.1471-4159.2004.02874.x
    • NLM

      Chaurasia SS, Rollag MD, Jiang G, Hayes WP, Haque R, Natesan A, Zatz M, Tosini G, Liu C, Korf HW, Iuvone PM, Provencio I. Molecular cloning, localization and circadian expression of chicken melanopsin (Opn4): differential regulation of expression in pineal and retinal cell types [Internet]. Journal of Neurochemistry. 2005 ; 92 158-170.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02874.x
    • Vancouver

      Chaurasia SS, Rollag MD, Jiang G, Hayes WP, Haque R, Natesan A, Zatz M, Tosini G, Liu C, Korf HW, Iuvone PM, Provencio I. Molecular cloning, localization and circadian expression of chicken melanopsin (Opn4): differential regulation of expression in pineal and retinal cell types [Internet]. Journal of Neurochemistry. 2005 ; 92 158-170.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02874.x
  • Source: Journal of Neurochemistry. Unidade: ICB

    Assunto: HISTOLOGIA

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      CARREÑO, Flávia R. et al. 14-3-3 epsilon modulates the stimulated secretion of endopeptidase 24.15. Journal of Neurochemistry, v. 93, p. 10-25, 2005Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2004.02967.x. Acesso em: 24 jun. 2025.
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      Carreño, F. R., Goñi, C. N., Castro, L. M., & Ferro, E. S. (2005). 14-3-3 epsilon modulates the stimulated secretion of endopeptidase 24.15. Journal of Neurochemistry, 93, 10-25. doi:10.1111/j.1471-4159.2004.02967.x
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      Carreño FR, Goñi CN, Castro LM, Ferro ES. 14-3-3 epsilon modulates the stimulated secretion of endopeptidase 24.15 [Internet]. Journal of Neurochemistry. 2005 ; 93 10-25.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02967.x
    • Vancouver

      Carreño FR, Goñi CN, Castro LM, Ferro ES. 14-3-3 epsilon modulates the stimulated secretion of endopeptidase 24.15 [Internet]. Journal of Neurochemistry. 2005 ; 93 10-25.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02967.x
  • Source: Journal of Neurochemistry. Unidade: FM

    Subjects: PROTEÍNAS, ENDOCITOSE, CÉLULAS

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      PRADO, Marco A. M. et al. PrP(cellular) on the road: trafficking of the cellular prion protein. Journal of Neurochemistry, v. 88, p. 769-781, 2004Tradução . . Acesso em: 24 jun. 2025.
    • APA

      Prado, M. A. M., Alves-Silva, J., Magalhaes, A. C., Prado, V. F., Martins, V. R., & Brentani, R. R. (2004). PrP(cellular) on the road: trafficking of the cellular prion protein. Journal of Neurochemistry, 88, 769-781.
    • NLM

      Prado MAM, Alves-Silva J, Magalhaes AC, Prado VF, Martins VR, Brentani RR. PrP(cellular) on the road: trafficking of the cellular prion protein. Journal of Neurochemistry. 2004 ; 88 769-781.[citado 2025 jun. 24 ]
    • Vancouver

      Prado MAM, Alves-Silva J, Magalhaes AC, Prado VF, Martins VR, Brentani RR. PrP(cellular) on the road: trafficking of the cellular prion protein. Journal of Neurochemistry. 2004 ; 88 769-781.[citado 2025 jun. 24 ]
  • Source: Journal of Neurochemistry. Unidade: ICB

    Assunto: FISIOLOGIA

    Acesso à fonteDOIHow to cite
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    • ABNT

      ANHÊ, Gabriel Forato et al. In vivo activation of insulin receptor tyrosine by melatonin in the rat hypothalamus. Journal of Neurochemistry, v. 90, p. 559-566, 2004Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2004.02514.x. Acesso em: 24 jun. 2025.
    • APA

      Anhê, G. F., Caperuto, L. C., Pereira-da-Silva, M., Souza, L. C., Hirata, A. E., Velloso, L. A., et al. (2004). In vivo activation of insulin receptor tyrosine by melatonin in the rat hypothalamus. Journal of Neurochemistry, 90, 559-566. doi:10.1111/j.1471-4159.2004.02514.x
    • NLM

      Anhê GF, Caperuto LC, Pereira-da-Silva M, Souza LC, Hirata AE, Velloso LA, Cipolla Neto J, Carvalho CR de O. In vivo activation of insulin receptor tyrosine by melatonin in the rat hypothalamus [Internet]. Journal of Neurochemistry. 2004 ; 90 559-566.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02514.x
    • Vancouver

      Anhê GF, Caperuto LC, Pereira-da-Silva M, Souza LC, Hirata AE, Velloso LA, Cipolla Neto J, Carvalho CR de O. In vivo activation of insulin receptor tyrosine by melatonin in the rat hypothalamus [Internet]. Journal of Neurochemistry. 2004 ; 90 559-566.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02514.x
  • Source: Journal of Neurochemistry. Unidade: IQ

    Subjects: CÁLCIO, RADICAIS LIVRES, DOENÇAS METABÓLICAS

    Acesso à fonteDOIHow to cite
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    • ABNT

      MACIEL, Evelise Neves et al. Mitochondrial permeability transition in neuronal damage promoted by Ca2+ and respiratory chain complex II inhibition. Journal of Neurochemistry, v. 90, n. 5, p. 1025-1035, 2004Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2004.02565.x. Acesso em: 24 jun. 2025.
    • APA

      Maciel, E. N., Kowaltowski, A. J., Schwalm, F. D., Rodrigues, J. M., Souza, D. O., Vercesi, A. E., et al. (2004). Mitochondrial permeability transition in neuronal damage promoted by Ca2+ and respiratory chain complex II inhibition. Journal of Neurochemistry, 90( 5), 1025-1035. doi:10.1111/j.1471-4159.2004.02565.x
    • NLM

      Maciel EN, Kowaltowski AJ, Schwalm FD, Rodrigues JM, Souza DO, Vercesi AE, Wajner M, Castilho RF. Mitochondrial permeability transition in neuronal damage promoted by Ca2+ and respiratory chain complex II inhibition [Internet]. Journal of Neurochemistry. 2004 ; 90( 5): 1025-1035.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02565.x
    • Vancouver

      Maciel EN, Kowaltowski AJ, Schwalm FD, Rodrigues JM, Souza DO, Vercesi AE, Wajner M, Castilho RF. Mitochondrial permeability transition in neuronal damage promoted by Ca2+ and respiratory chain complex II inhibition [Internet]. Journal of Neurochemistry. 2004 ; 90( 5): 1025-1035.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02565.x
  • Source: Journal of Neurochemistry. Unidade: ICB

    Assunto: HISTOLOGIA

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    • ABNT

      FERRO, Emer Suavinho e HYSLOP, Stephen e CAMARGO, Antonio C. M. Intracellullar peptides as putative natural regulators of protein interactions. Journal of Neurochemistry, v. 91, p. 769-777, 2004Tradução . . Disponível em: https://doi.org/10.1111/j.1471-4159.2004.02757.x. Acesso em: 24 jun. 2025.
    • APA

      Ferro, E. S., Hyslop, S., & Camargo, A. C. M. (2004). Intracellullar peptides as putative natural regulators of protein interactions. Journal of Neurochemistry, 91, 769-777. doi:10.1111/j.1471-4159.2004.02757.x
    • NLM

      Ferro ES, Hyslop S, Camargo ACM. Intracellullar peptides as putative natural regulators of protein interactions [Internet]. Journal of Neurochemistry. 2004 ; 91 769-777.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02757.x
    • Vancouver

      Ferro ES, Hyslop S, Camargo ACM. Intracellullar peptides as putative natural regulators of protein interactions [Internet]. Journal of Neurochemistry. 2004 ; 91 769-777.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1111/j.1471-4159.2004.02757.x
  • Source: Journal of Neurochemistry. Unidade: FMRP

    Subjects: CÉLULAS CROMAFINS, CITOESQUELETO, EXOCITOSE, MIOSINA

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    • ABNT

      ROSÉ, Sergio D. et al. Myosins II and V in chromaffin cells: myosin V is a chromaffin vesicle molecular motor involved in secretion. Journal of Neurochemistry, v. 85, n. 2, p. 287-298, 2003Tradução . . Disponível em: https://doi.org/10.1046/j.1471-4159.2003.01649.x. Acesso em: 24 jun. 2025.
    • APA

      Rosé, S. D., Lejen, T., Casaletti, L., Larson, R. E., Pene, T. D., & Trifaró, J. -M. (2003). Myosins II and V in chromaffin cells: myosin V is a chromaffin vesicle molecular motor involved in secretion. Journal of Neurochemistry, 85( 2), 287-298. doi:10.1046/j.1471-4159.2003.01649.x
    • NLM

      Rosé SD, Lejen T, Casaletti L, Larson RE, Pene TD, Trifaró J-M. Myosins II and V in chromaffin cells: myosin V is a chromaffin vesicle molecular motor involved in secretion [Internet]. Journal of Neurochemistry. 2003 ; 85( 2): 287-298.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1046/j.1471-4159.2003.01649.x
    • Vancouver

      Rosé SD, Lejen T, Casaletti L, Larson RE, Pene TD, Trifaró J-M. Myosins II and V in chromaffin cells: myosin V is a chromaffin vesicle molecular motor involved in secretion [Internet]. Journal of Neurochemistry. 2003 ; 85( 2): 287-298.[citado 2025 jun. 24 ] Available from: https://doi.org/10.1046/j.1471-4159.2003.01649.x

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