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  • Source: Toxics. Unidades: CENA, ESALQ, FCF

    Subjects: CYANOPHYTA, EMBRIÃO DE ANIMAL, METABÓLITOS SECUNDÁRIOS, PEIXES DE ÁGUA DOCE, PEPTÍDEOS, TOXINAS EM ANIMAL

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    • ABNT

      FREITAS, Paloma Nathane Nunes de et al. Evaluation of the toxicity of microcyclamide produced by Microcystis aeruginosa in Danio rerio embryos. Toxics, v. 11, p. 1- 11, 2023Tradução . . Disponível em: https://doi.org/10.3390/toxics11020128. Acesso em: 19 nov. 2024.
    • APA

      Freitas, P. N. N. de, Teramoto, K. K., Souza, A. O. de, & Pinto, E. (2023). Evaluation of the toxicity of microcyclamide produced by Microcystis aeruginosa in Danio rerio embryos. Toxics, 11, 1- 11. doi:10.3390/toxics11020128
    • NLM

      Freitas PNN de, Teramoto KK, Souza AO de, Pinto E. Evaluation of the toxicity of microcyclamide produced by Microcystis aeruginosa in Danio rerio embryos [Internet]. Toxics. 2023 ; 11 1- 11.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/toxics11020128
    • Vancouver

      Freitas PNN de, Teramoto KK, Souza AO de, Pinto E. Evaluation of the toxicity of microcyclamide produced by Microcystis aeruginosa in Danio rerio embryos [Internet]. Toxics. 2023 ; 11 1- 11.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/toxics11020128
  • Source: Applied Sciences. Unidades: CENA, FCF

    Subjects: CYANOPHYTA, MICROALGAS, LIPÍDEOS, ÁCIDOS GRAXOS, TECNOLOGIA DE MICRO-ONDAS

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    • ABNT

      MORETTO, Jéssica Aparecida Silva et al. Microwave-assisted extraction of fatty acids from cultured and commercial phytoplankton species. Applied Sciences, v. 12, p. 2407, 2022Tradução . . Disponível em: https://doi.org/10.3390/app12052407. Acesso em: 19 nov. 2024.
    • APA

      Moretto, J. A. S., Souza, A. O. de, Berneira, L. M., Brigagão, L. G. G., Pereira, C. M. P. de, Converti, A., & Pinto, E. (2022). Microwave-assisted extraction of fatty acids from cultured and commercial phytoplankton species. Applied Sciences, 12, 2407. doi:10.3390/app12052407
    • NLM

      Moretto JAS, Souza AO de, Berneira LM, Brigagão LGG, Pereira CMP de, Converti A, Pinto E. Microwave-assisted extraction of fatty acids from cultured and commercial phytoplankton species [Internet]. Applied Sciences. 2022 ; 12 2407.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/app12052407
    • Vancouver

      Moretto JAS, Souza AO de, Berneira LM, Brigagão LGG, Pereira CMP de, Converti A, Pinto E. Microwave-assisted extraction of fatty acids from cultured and commercial phytoplankton species [Internet]. Applied Sciences. 2022 ; 12 2407.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/app12052407
  • Source: Toxins. Unidades: CENA, FCF

    Subjects: CYANOPHYTA, EUTROFIZAÇÃO

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    • ABNT

      ARRUDA, Renan Silva et al. "Floc and sink" technique removes cyanobacteria and Microcystins from tropical reservoir water. Toxins, v. 13, p. 1-17 art. 405, 2021Tradução . . Disponível em: https://doi.org/10.3390/toxins13060405. Acesso em: 19 nov. 2024.
    • APA

      Arruda, R. S., Noyma, N. P., Magalhães, L. de, Mesquita, M. C. B., Almeida, É. C. de, Pinto, E., et al. (2021). "Floc and sink" technique removes cyanobacteria and Microcystins from tropical reservoir water. Toxins, 13, 1-17 art. 405. doi:10.3390/toxins13060405
    • NLM

      Arruda RS, Noyma NP, Magalhães L de, Mesquita MCB, Almeida ÉC de, Pinto E, Lürling M, Marinho MM. "Floc and sink" technique removes cyanobacteria and Microcystins from tropical reservoir water [Internet]. Toxins. 2021 ; 13 1-17 art. 405.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/toxins13060405
    • Vancouver

      Arruda RS, Noyma NP, Magalhães L de, Mesquita MCB, Almeida ÉC de, Pinto E, Lürling M, Marinho MM. "Floc and sink" technique removes cyanobacteria and Microcystins from tropical reservoir water [Internet]. Toxins. 2021 ; 13 1-17 art. 405.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/toxins13060405
  • Source: Pharmaceuticals. Unidades: FCF, CENA

    Subjects: CYANOPHYTA, ÁGUA DOCE

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    • ABNT

      FERNANDES, Kelly Afonsina et al. Availability of guanitoxin in water samples containing Sphaerospermopsis torques-reginae cells submitted to dissolution tests. Pharmaceuticals, v. 13, p. 1-12 art. 402, 2020Tradução . . Disponível em: https://doi.org/10.3390/ph13110402. Acesso em: 19 nov. 2024.
    • APA

      Fernandes, K. A., Ferraz, H. G., Vereau, F., & Pinto, E. (2020). Availability of guanitoxin in water samples containing Sphaerospermopsis torques-reginae cells submitted to dissolution tests. Pharmaceuticals, 13, 1-12 art. 402. doi:10.3390/ph13110402
    • NLM

      Fernandes KA, Ferraz HG, Vereau F, Pinto E. Availability of guanitoxin in water samples containing Sphaerospermopsis torques-reginae cells submitted to dissolution tests [Internet]. Pharmaceuticals. 2020 ; 13 1-12 art. 402.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/ph13110402
    • Vancouver

      Fernandes KA, Ferraz HG, Vereau F, Pinto E. Availability of guanitoxin in water samples containing Sphaerospermopsis torques-reginae cells submitted to dissolution tests [Internet]. Pharmaceuticals. 2020 ; 13 1-12 art. 402.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/ph13110402
  • Source: Molecules. Unidades: FCF, CENA

    Subjects: ALCALOIDES, BIOMASSA

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    • ABNT

      GONZÁLEZ-BLANCO, Carlos et al. Alternative isolation protocol for desulfo and zwitterionic cylindrospermopsin alkaloids and comparison of their toxicity in HepG2 cells. Molecules, v. 25, n. 13, p. 1-18 art. 3027, 2020Tradução . . Disponível em: https://doi.org/10.3390/molecules25133027. Acesso em: 19 nov. 2024.
    • APA

      González-Blanco, C., Dörr, F. A., Albuquerque, R. C., Onuki, J., & Pinto, E. (2020). Alternative isolation protocol for desulfo and zwitterionic cylindrospermopsin alkaloids and comparison of their toxicity in HepG2 cells. Molecules, 25( 13), 1-18 art. 3027. doi:10.3390/molecules25133027
    • NLM

      González-Blanco C, Dörr FA, Albuquerque RC, Onuki J, Pinto E. Alternative isolation protocol for desulfo and zwitterionic cylindrospermopsin alkaloids and comparison of their toxicity in HepG2 cells [Internet]. Molecules. 2020 ; 25( 13): 1-18 art. 3027.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/molecules25133027
    • Vancouver

      González-Blanco C, Dörr FA, Albuquerque RC, Onuki J, Pinto E. Alternative isolation protocol for desulfo and zwitterionic cylindrospermopsin alkaloids and comparison of their toxicity in HepG2 cells [Internet]. Molecules. 2020 ; 25( 13): 1-18 art. 3027.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/molecules25133027
  • Source: Plant Cell Reports. Unidades: ESALQ, FCF, CENA

    Subjects: CAROTENOIDES, GENÔMICA, TOMATE

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    • ABNT

      PINHEIRO, Thaísa Tessutti et al. Citrus carotenoid isomerase gene characterization by complementation of the “Micro-Tom” tangerine mutant. Plant Cell Reports, v. 38, p. 623-636, 2019Tradução . . Disponível em: https://doi.org/10.1007/s00299-019-02393-2. Acesso em: 19 nov. 2024.
    • APA

      Pinheiro, T. T., Peres, L. E. P., Purgatto, E., Latado, R. R., Maniero, R. A., Martins, M. M., & Figueira, A. V. de O. (2019). Citrus carotenoid isomerase gene characterization by complementation of the “Micro-Tom” tangerine mutant. Plant Cell Reports, 38, 623-636. doi:10.1007/s00299-019-02393-2
    • NLM

      Pinheiro TT, Peres LEP, Purgatto E, Latado RR, Maniero RA, Martins MM, Figueira AV de O. Citrus carotenoid isomerase gene characterization by complementation of the “Micro-Tom” tangerine mutant [Internet]. Plant Cell Reports. 2019 ; 38 623-636.[citado 2024 nov. 19 ] Available from: https://doi.org/10.1007/s00299-019-02393-2
    • Vancouver

      Pinheiro TT, Peres LEP, Purgatto E, Latado RR, Maniero RA, Martins MM, Figueira AV de O. Citrus carotenoid isomerase gene characterization by complementation of the “Micro-Tom” tangerine mutant [Internet]. Plant Cell Reports. 2019 ; 38 623-636.[citado 2024 nov. 19 ] Available from: https://doi.org/10.1007/s00299-019-02393-2
  • Source: Marine Drugs. Unidades: CENA, FCF

    Subjects: CYANOPHYTA, PEPTÍDEOS, ESPECTROMETRIA DE MASSAS

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    • ABNT

      SANZ, Miriam et al. Structural characterization of new peptide variants produced by cyanobacteria from the Brazilian Atlantic coastal forest using liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry. Marine Drugs, v. 13, p. 3892-3919, 2015Tradução . . Disponível em: https://doi.org/10.3390/md13063892. Acesso em: 19 nov. 2024.
    • APA

      Sanz, M., Andreote, A. P. D., Fiore, M. de F., Dörr, F. A., & Pinto, E. (2015). Structural characterization of new peptide variants produced by cyanobacteria from the Brazilian Atlantic coastal forest using liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry. Marine Drugs, 13, 3892-3919. doi:10.3390/md13063892
    • NLM

      Sanz M, Andreote APD, Fiore M de F, Dörr FA, Pinto E. Structural characterization of new peptide variants produced by cyanobacteria from the Brazilian Atlantic coastal forest using liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry [Internet]. Marine Drugs. 2015 ; 13 3892-3919.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/md13063892
    • Vancouver

      Sanz M, Andreote APD, Fiore M de F, Dörr FA, Pinto E. Structural characterization of new peptide variants produced by cyanobacteria from the Brazilian Atlantic coastal forest using liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry [Internet]. Marine Drugs. 2015 ; 13 3892-3919.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/md13063892

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