Filtros : "American Journal of Physiology. Cell Physiology" Limpar

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  • Source: American Journal of Physiology. Cell Physiology. Unidades: FM, IQ, EEFE

    Subjects: MÚSCULO ESQUELÉTICO, INSULINA, SUPLEMENTOS DIETÉTICOS, PROTEÍNAS DE TRANSPORTE

    Acesso à fonteDOIHow to cite
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    • ABNT

      GONÇALVES, Lívia de Souza et al. Insulin does not stimulate Beta-alanine transport into human skeletal muscle. American Journal of Physiology. Cell Physiology, v. 318, p. C777–C786, 2020Tradução . . Disponível em: https://doi.org/10.1152/ajpcell.00550.2019. Acesso em: 23 maio 2024.
    • APA

      Gonçalves, L. de S., Kratz, C., Santos, L., Carvalho, V. H., Sales, L. P., Nemezio, K., et al. (2020). Insulin does not stimulate Beta-alanine transport into human skeletal muscle. American Journal of Physiology. Cell Physiology, 318, C777–C786. doi:10.1152/ajpcell.00550.2019
    • NLM

      Gonçalves L de S, Kratz C, Santos L, Carvalho VH, Sales LP, Nemezio K, Longobardi I, Riani L, Lima MM de O, Saito T, Fernandes AL, Rodrigues J, James RM, Sale C, Gualano B, Geloneze B, Medeiros MHG de, Artioli GG. Insulin does not stimulate Beta-alanine transport into human skeletal muscle [Internet]. American Journal of Physiology. Cell Physiology. 2020 ; 318 C777–C786.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00550.2019
    • Vancouver

      Gonçalves L de S, Kratz C, Santos L, Carvalho VH, Sales LP, Nemezio K, Longobardi I, Riani L, Lima MM de O, Saito T, Fernandes AL, Rodrigues J, James RM, Sale C, Gualano B, Geloneze B, Medeiros MHG de, Artioli GG. Insulin does not stimulate Beta-alanine transport into human skeletal muscle [Internet]. American Journal of Physiology. Cell Physiology. 2020 ; 318 C777–C786.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00550.2019
  • Source: American Journal of Physiology. Cell Physiology. Unidade: ICB

    Assunto: FISIOLOGIA

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    • ABNT

      CALIL-SILVEIRA, Jamile et al. Iodide excess regulates its own efflux: a possible involvement of pendrin. American Journal of Physiology. Cell Physiology, v. 310, n. 7, p. C576-C582, 2016Tradução . . Disponível em: https://doi.org/10.1152/ajpcell.00210.2015. Acesso em: 23 maio 2024.
    • APA

      Calil-Silveira, J., Serrano-Nascimento, C., Kopp, P. A., & Nunes, M. T. (2016). Iodide excess regulates its own efflux: a possible involvement of pendrin. American Journal of Physiology. Cell Physiology, 310( 7), C576-C582. doi:10.1152/ajpcell.00210.2015
    • NLM

      Calil-Silveira J, Serrano-Nascimento C, Kopp PA, Nunes MT. Iodide excess regulates its own efflux: a possible involvement of pendrin [Internet]. American Journal of Physiology. Cell Physiology. 2016 ; 310( 7): C576-C582.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00210.2015
    • Vancouver

      Calil-Silveira J, Serrano-Nascimento C, Kopp PA, Nunes MT. Iodide excess regulates its own efflux: a possible involvement of pendrin [Internet]. American Journal of Physiology. Cell Physiology. 2016 ; 310( 7): C576-C582.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00210.2015
  • Source: American Journal of Physiology. Cell Physiology. Unidade: ICB

    Subjects: FISIOLOGIA, MEMBRANA PLASMÁSTICA, MODELOS MATEMÁTICOS

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    • ABNT

      OCCHIPINTI, Rossana e MUSA-AZIZ, Raif e BORON, Walter F. Evidence from mathematical modeling that carbonic anhydrase II and IV enhance CO2 fluxes across Xenopus oocyte plasma membranes. American Journal of Physiology. Cell Physiology, v. 307, n. 9, p. C841-C858, 2014Tradução . . Disponível em: https://doi.org/10.1152/ajpcell.00049.2014. Acesso em: 23 maio 2024.
    • APA

      Occhipinti, R., Musa-Aziz, R., & Boron, W. F. (2014). Evidence from mathematical modeling that carbonic anhydrase II and IV enhance CO2 fluxes across Xenopus oocyte plasma membranes. American Journal of Physiology. Cell Physiology, 307( 9), C841-C858. doi:10.1152/ajpcell.00049.2014
    • NLM

      Occhipinti R, Musa-Aziz R, Boron WF. Evidence from mathematical modeling that carbonic anhydrase II and IV enhance CO2 fluxes across Xenopus oocyte plasma membranes [Internet]. American Journal of Physiology. Cell Physiology. 2014 ; 307( 9): C841-C858.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00049.2014
    • Vancouver

      Occhipinti R, Musa-Aziz R, Boron WF. Evidence from mathematical modeling that carbonic anhydrase II and IV enhance CO2 fluxes across Xenopus oocyte plasma membranes [Internet]. American Journal of Physiology. Cell Physiology. 2014 ; 307( 9): C841-C858.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00049.2014
  • Source: American Journal of Physiology. Cell Physiology. Unidade: IF

    Subjects: BIOMECÂNICA, FISIOLOGIA, BIOFÍSICA, CÉLULAS (FISIOLOGIA)

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    • ABNT

      PARK, Chan Young et al. Mapping the cytoskeletal prestress. American Journal of Physiology. Cell Physiology, v. 298, n. 5, p. C1245-C1252, 2010Tradução . . Disponível em: https://doi.org/10.1152/ajpcell.00417.2009. Acesso em: 23 maio 2024.
    • APA

      Park, C. Y., Tambe, D., Alencar, A. M., Trepat, X., Zhou, E. H., Millet, E., et al. (2010). Mapping the cytoskeletal prestress. American Journal of Physiology. Cell Physiology, 298( 5), C1245-C1252. doi:10.1152/ajpcell.00417.2009
    • NLM

      Park CY, Tambe D, Alencar AM, Trepat X, Zhou EH, Millet E, Butler JP, Fredberg JJ. Mapping the cytoskeletal prestress [Internet]. American Journal of Physiology. Cell Physiology. 2010 ; 298( 5): C1245-C1252.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00417.2009
    • Vancouver

      Park CY, Tambe D, Alencar AM, Trepat X, Zhou EH, Millet E, Butler JP, Fredberg JJ. Mapping the cytoskeletal prestress [Internet]. American Journal of Physiology. Cell Physiology. 2010 ; 298( 5): C1245-C1252.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.00417.2009
  • Source: American Journal of Physiology. Cell Physiology. Unidade: ICB

    Subjects: BIOFÍSICA, FISIOLOGIA, HISTOLOGIA

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    • ABNT

      EL-RAZI NETO, S et al. Impairment of insulin secretion in pancreatic islets isolated from walker 256 tumor -bearing rats. American Journal of Physiology. Cell Physiology, v. 40, n. 3 , p. c804-9, 1996Tradução . . Disponível em: https://doi.org/10.1152/ajpcell.1996.271.3.c804. Acesso em: 23 maio 2024.
    • APA

      El-Razi Neto, S., Zorn, T. M. T., Curi, R., & Carpinelli, A. R. (1996). Impairment of insulin secretion in pancreatic islets isolated from walker 256 tumor -bearing rats. American Journal of Physiology. Cell Physiology, 40( 3 ), c804-9. doi:10.1152/ajpcell.1996.271.3.c804
    • NLM

      El-Razi Neto S, Zorn TMT, Curi R, Carpinelli AR. Impairment of insulin secretion in pancreatic islets isolated from walker 256 tumor -bearing rats [Internet]. American Journal of Physiology. Cell Physiology. 1996 ;40( 3 ): c804-9.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.1996.271.3.c804
    • Vancouver

      El-Razi Neto S, Zorn TMT, Curi R, Carpinelli AR. Impairment of insulin secretion in pancreatic islets isolated from walker 256 tumor -bearing rats [Internet]. American Journal of Physiology. Cell Physiology. 1996 ;40( 3 ): c804-9.[citado 2024 maio 23 ] Available from: https://doi.org/10.1152/ajpcell.1996.271.3.c804

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