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  • Source: Journal of Proteomics. Unidades: ICB, IQ

    Subjects: PARASITOLOGIA, LEISHMANIA, LEISHMANIA BRASILIENSIS, LEISHMANIA INFANTUM, LEISHMANIOSE CUTÂNEA, PROTEÔMICA, ANIMAIS PARASITOS, PROTEÍNAS, TEMPERATURA, ESTRESSE

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    • ABNT

      MULE, Simon Ngao et al. The protein map of the protozoan parasite Leishmania (Leishmania) amazonensis, Leishmania (Viannia) braziliensis and Leishmania (Leishmania) infantum during growth phase transition and temperature stress. Journal of Proteomics, v. 295, p. 17 , 2024Tradução . . Disponível em: https://doi.org/10.1016/j.jprot.2024.105088. Acesso em: 12 set. 2024.
    • APA

      Mule, S. N., Saad, J. S., Sauter, I. P., Fernandes, L. R., Oliveira, G. S. de, Quina, D. O., et al. (2024). The protein map of the protozoan parasite Leishmania (Leishmania) amazonensis, Leishmania (Viannia) braziliensis and Leishmania (Leishmania) infantum during growth phase transition and temperature stress. Journal of Proteomics, 295, 17 . doi:10.1016/j.jprot.2024.105088
    • NLM

      Mule SN, Saad JS, Sauter IP, Fernandes LR, Oliveira GS de, Quina DO, Tano FT, Brandt-Almeida D, Padrón G, Larsen MR, Stolf BS, Cortez M, Palmisano G. The protein map of the protozoan parasite Leishmania (Leishmania) amazonensis, Leishmania (Viannia) braziliensis and Leishmania (Leishmania) infantum during growth phase transition and temperature stress [Internet]. Journal of Proteomics. 2024 ; 295 17 .[citado 2024 set. 12 ] Available from: https://doi.org/10.1016/j.jprot.2024.105088
    • Vancouver

      Mule SN, Saad JS, Sauter IP, Fernandes LR, Oliveira GS de, Quina DO, Tano FT, Brandt-Almeida D, Padrón G, Larsen MR, Stolf BS, Cortez M, Palmisano G. The protein map of the protozoan parasite Leishmania (Leishmania) amazonensis, Leishmania (Viannia) braziliensis and Leishmania (Leishmania) infantum during growth phase transition and temperature stress [Internet]. Journal of Proteomics. 2024 ; 295 17 .[citado 2024 set. 12 ] Available from: https://doi.org/10.1016/j.jprot.2024.105088
  • Source: Rhizosphere. Unidades: IQ, IF

    Subjects: NANOPARTÍCULAS, NITROGÊNIO, FEIJÃO, RIZOSFERA

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    • ABNT

      TORRES, Angel De Souza et al. Fe3O4 nanoparticles and Rhizobium inoculation enhance nodulation, nitrogen fixation and growth of common bean plants grown in soil. Rhizosphere, v. 17, p. 1-8 art. 100275, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.rhisph.2020.100275. Acesso em: 12 set. 2024.
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      Torres, A. D. S., Alcaide, E. G., Padilla, E. G., Masunaga, S. H., Effenberger, F. B., Rossi, L. M., et al. (2021). Fe3O4 nanoparticles and Rhizobium inoculation enhance nodulation, nitrogen fixation and growth of common bean plants grown in soil. Rhizosphere, 17, 1-8 art. 100275. doi:10.1016/j.rhisph.2020.100275
    • NLM

      Torres ADS, Alcaide EG, Padilla EG, Masunaga SH, Effenberger FB, Rossi LM, Sánchez RL, Jardim R de F. Fe3O4 nanoparticles and Rhizobium inoculation enhance nodulation, nitrogen fixation and growth of common bean plants grown in soil [Internet]. Rhizosphere. 2021 ; 17 1-8 art. 100275.[citado 2024 set. 12 ] Available from: https://doi.org/10.1016/j.rhisph.2020.100275
    • Vancouver

      Torres ADS, Alcaide EG, Padilla EG, Masunaga SH, Effenberger FB, Rossi LM, Sánchez RL, Jardim R de F. Fe3O4 nanoparticles and Rhizobium inoculation enhance nodulation, nitrogen fixation and growth of common bean plants grown in soil [Internet]. Rhizosphere. 2021 ; 17 1-8 art. 100275.[citado 2024 set. 12 ] Available from: https://doi.org/10.1016/j.rhisph.2020.100275
  • Source: Applied Sciences. Unidades: IQ, IF

    Subjects: NANOPARTÍCULAS, MACRONUTRIENTES

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      DE SOUZA, A et al. Impact of Fe3O4 nanoparticle on nutrient accumulation in common bean plants grown in soil. Applied Sciences, v. 1, n. 4, p. 1-8, 2019Tradução . . Disponível em: https://doi.org/10.1007/s42452-019-0321-y. Acesso em: 12 set. 2024.
    • APA

      De Souza, A., Alcoide, E. G., Masunaga, S. H., Rosabal, L. F., Effenberger, F., Rossi, L. M., & Jardim, R. de F. (2019). Impact of Fe3O4 nanoparticle on nutrient accumulation in common bean plants grown in soil. Applied Sciences, 1( 4), 1-8. doi:10.1007/s42452-019-0321-y
    • NLM

      De Souza A, Alcoide EG, Masunaga SH, Rosabal LF, Effenberger F, Rossi LM, Jardim R de F. Impact of Fe3O4 nanoparticle on nutrient accumulation in common bean plants grown in soil [Internet]. Applied Sciences. 2019 ; 1( 4): 1-8.[citado 2024 set. 12 ] Available from: https://doi.org/10.1007/s42452-019-0321-y
    • Vancouver

      De Souza A, Alcoide EG, Masunaga SH, Rosabal LF, Effenberger F, Rossi LM, Jardim R de F. Impact of Fe3O4 nanoparticle on nutrient accumulation in common bean plants grown in soil [Internet]. Applied Sciences. 2019 ; 1( 4): 1-8.[citado 2024 set. 12 ] Available from: https://doi.org/10.1007/s42452-019-0321-y
  • Source: Solid State Sciences. Unidade: IQ

    Subjects: NANOPARTÍCULAS, ELETRÓLITOS

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      PILA, C.Ricardo Milian et al. Effect of the LLTO nanoparticles on the conducting properties of PEO-based solid electrolyte. Solid State Sciences, v. 88, p. 41-47, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.solidstatesciences.2018.10.014. Acesso em: 12 set. 2024.
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      Pila, C. R. M., Cappe, E. P., Mohallem, N. D. S., Alves, O. L., Frutis, M. A. A., Ramirez, N. S., et al. (2019). Effect of the LLTO nanoparticles on the conducting properties of PEO-based solid electrolyte. Solid State Sciences, 88, 41-47. doi:10.1016/j.solidstatesciences.2018.10.014
    • NLM

      Pila CRM, Cappe EP, Mohallem NDS, Alves OL, Frutis MAA, Ramirez NS, Torresi RM, León H, Laffita YM. Effect of the LLTO nanoparticles on the conducting properties of PEO-based solid electrolyte [Internet]. Solid State Sciences. 2019 ; 88 41-47.[citado 2024 set. 12 ] Available from: https://doi.org/10.1016/j.solidstatesciences.2018.10.014
    • Vancouver

      Pila CRM, Cappe EP, Mohallem NDS, Alves OL, Frutis MAA, Ramirez NS, Torresi RM, León H, Laffita YM. Effect of the LLTO nanoparticles on the conducting properties of PEO-based solid electrolyte [Internet]. Solid State Sciences. 2019 ; 88 41-47.[citado 2024 set. 12 ] Available from: https://doi.org/10.1016/j.solidstatesciences.2018.10.014
  • Source: PLOS ONE. Unidade: IQ

    Subjects: PEPTÍDEOS, PROTEÍNAS

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      CARRETERO, Gustavo Penteado Battesine et al. Dissecting the mechanism of action of actinoporins. Role of the N-terminal amphipathic alpha-helix in membrane binding and pore activity of sticholysins I and II. PLOS ONE, v. 13, n. 8, p. 1-23 art. e0202981, 2018Tradução . . Disponível em: https://doi.org/10.1371/journal.pone.0202981. Acesso em: 12 set. 2024.
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      Carretero, G. P. B., Vicente, E. F., Cilli, E. M., Alvarez, C. M., Jenssen, H., & Schreier, S. (2018). Dissecting the mechanism of action of actinoporins. Role of the N-terminal amphipathic alpha-helix in membrane binding and pore activity of sticholysins I and II. PLOS ONE, 13( 8), 1-23 art. e0202981. doi:10.1371/journal.pone.0202981
    • NLM

      Carretero GPB, Vicente EF, Cilli EM, Alvarez CM, Jenssen H, Schreier S. Dissecting the mechanism of action of actinoporins. Role of the N-terminal amphipathic alpha-helix in membrane binding and pore activity of sticholysins I and II [Internet]. PLOS ONE. 2018 ; 13( 8): 1-23 art. e0202981.[citado 2024 set. 12 ] Available from: https://doi.org/10.1371/journal.pone.0202981
    • Vancouver

      Carretero GPB, Vicente EF, Cilli EM, Alvarez CM, Jenssen H, Schreier S. Dissecting the mechanism of action of actinoporins. Role of the N-terminal amphipathic alpha-helix in membrane binding and pore activity of sticholysins I and II [Internet]. PLOS ONE. 2018 ; 13( 8): 1-23 art. e0202981.[citado 2024 set. 12 ] Available from: https://doi.org/10.1371/journal.pone.0202981
  • Source: Resumo. Conference titles: Encontro de Outono. Unidades: IQ, IF

    Subjects: FÍSICA DA MATÉRIA CONDENSADA, MATERIAIS NANOESTRUTURADOS

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      MASUNAGA, Sueli Hatsumi et al. Magnetite nanoparticles accumulation in plant organs of common bean plants grown in soil. 2018, Anais.. São Paulo: SBF, 2018. Disponível em: https://sec.sbfisica.org.br/eventos/enfmc/xli/sys/resumos/R0185-1.pdf. Acesso em: 12 set. 2024.
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      Masunaga, S. H., Govea-Alcaide, E., Souza, A. de, Fajardo-Rosabal, L., Rossi, L. M., & Jardim, R. de F. (2018). Magnetite nanoparticles accumulation in plant organs of common bean plants grown in soil. In Resumo. São Paulo: SBF. Recuperado de https://sec.sbfisica.org.br/eventos/enfmc/xli/sys/resumos/R0185-1.pdf
    • NLM

      Masunaga SH, Govea-Alcaide E, Souza A de, Fajardo-Rosabal L, Rossi LM, Jardim R de F. Magnetite nanoparticles accumulation in plant organs of common bean plants grown in soil [Internet]. Resumo. 2018 ;[citado 2024 set. 12 ] Available from: https://sec.sbfisica.org.br/eventos/enfmc/xli/sys/resumos/R0185-1.pdf
    • Vancouver

      Masunaga SH, Govea-Alcaide E, Souza A de, Fajardo-Rosabal L, Rossi LM, Jardim R de F. Magnetite nanoparticles accumulation in plant organs of common bean plants grown in soil [Internet]. Resumo. 2018 ;[citado 2024 set. 12 ] Available from: https://sec.sbfisica.org.br/eventos/enfmc/xli/sys/resumos/R0185-1.pdf
  • Source: Journal of Nanoparticle Research. Unidade: IQ

    Subjects: NANOPARTÍCULAS, MAGNETISMO

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      ALCAIDE, E. Govea et al. Tracking iron oxide nanoparticles in plant organs using magnetic measurements. Journal of Nanoparticle Research, v. 18, p. 1-13 art. 305, 2016Tradução . . Disponível em: https://doi.org/10.1007/s11051-016-3610-z. Acesso em: 12 set. 2024.
    • APA

      Alcaide, E. G., Masunaga, S. H., Souza, A. de, Rosabal, L. F., Effenberger, F. B., Rossi, L. M., & Jardim, R. F. (2016). Tracking iron oxide nanoparticles in plant organs using magnetic measurements. Journal of Nanoparticle Research, 18, 1-13 art. 305. doi:10.1007/s11051-016-3610-z
    • NLM

      Alcaide EG, Masunaga SH, Souza A de, Rosabal LF, Effenberger FB, Rossi LM, Jardim RF. Tracking iron oxide nanoparticles in plant organs using magnetic measurements [Internet]. Journal of Nanoparticle Research. 2016 ; 18 1-13 art. 305.[citado 2024 set. 12 ] Available from: https://doi.org/10.1007/s11051-016-3610-z
    • Vancouver

      Alcaide EG, Masunaga SH, Souza A de, Rosabal LF, Effenberger FB, Rossi LM, Jardim RF. Tracking iron oxide nanoparticles in plant organs using magnetic measurements [Internet]. Journal of Nanoparticle Research. 2016 ; 18 1-13 art. 305.[citado 2024 set. 12 ] Available from: https://doi.org/10.1007/s11051-016-3610-z

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