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  • Fonte: Marine Biotechnology. Unidade: IQSC

    Assunto: CATÁLISE

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    • ABNT

      BIROLLI, Willian Garcia et al. Synthesis of Knoevenagel Adducts Under Microwave Irradiation and Biocatalytic Ene-Reduction by the Marine-Derived Fungus Cladosporium sp. CBMAI 1237 for the Production of 2-Cyano-3-Phenylpropanamide Derivatives. Marine Biotechnology, v. 22, p. 317–330, 2020Tradução . . Disponível em: https://doi.org/10.1007*2Fs10126-020-09953-8. Acesso em: 13 jul. 2024.
    • APA

      Birolli, W. G., Zanin, L. L., Jimenez, D. E. Q., & Porto, A. L. M. (2020). Synthesis of Knoevenagel Adducts Under Microwave Irradiation and Biocatalytic Ene-Reduction by the Marine-Derived Fungus Cladosporium sp. CBMAI 1237 for the Production of 2-Cyano-3-Phenylpropanamide Derivatives. Marine Biotechnology, 22, 317–330. doi:10.1007%2Fs10126-020-09953-8
    • NLM

      Birolli WG, Zanin LL, Jimenez DEQ, Porto ALM. Synthesis of Knoevenagel Adducts Under Microwave Irradiation and Biocatalytic Ene-Reduction by the Marine-Derived Fungus Cladosporium sp. CBMAI 1237 for the Production of 2-Cyano-3-Phenylpropanamide Derivatives [Internet]. Marine Biotechnology. 2020 ; 22 317–330.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1007*2Fs10126-020-09953-8
    • Vancouver

      Birolli WG, Zanin LL, Jimenez DEQ, Porto ALM. Synthesis of Knoevenagel Adducts Under Microwave Irradiation and Biocatalytic Ene-Reduction by the Marine-Derived Fungus Cladosporium sp. CBMAI 1237 for the Production of 2-Cyano-3-Phenylpropanamide Derivatives [Internet]. Marine Biotechnology. 2020 ; 22 317–330.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1007*2Fs10126-020-09953-8
  • Fonte: Marine Biotechnology. Unidade: IQSC

    Assuntos: BIOTRANSFORMAÇÃO, SÍNTESE ORGÂNICA

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    • ABNT

      MATOS, Iara Lisboa de e NITSCHKE, Marcia e PORTO, Andre Luiz Meleiro. Hydrogenation of halogenated 2′- hydroxychalcones by Mycelia of Marine-derived Fungus Penicillium raistrickii. Marine Biotechnology, v. 21, p. 430-439 jun, 2019Tradução . . Disponível em: https://doi.org/10.1007/s10126-019-09893-y. Acesso em: 13 jul. 2024.
    • APA

      Matos, I. L. de, Nitschke, M., & Porto, A. L. M. (2019). Hydrogenation of halogenated 2′- hydroxychalcones by Mycelia of Marine-derived Fungus Penicillium raistrickii. Marine Biotechnology, 21, 430-439 jun. doi:10.1007/s10126-019-09893-y
    • NLM

      Matos IL de, Nitschke M, Porto ALM. Hydrogenation of halogenated 2′- hydroxychalcones by Mycelia of Marine-derived Fungus Penicillium raistrickii [Internet]. Marine Biotechnology. 2019 ; 21 430-439 jun.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1007/s10126-019-09893-y
    • Vancouver

      Matos IL de, Nitschke M, Porto ALM. Hydrogenation of halogenated 2′- hydroxychalcones by Mycelia of Marine-derived Fungus Penicillium raistrickii [Internet]. Marine Biotechnology. 2019 ; 21 430-439 jun.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1007/s10126-019-09893-y
  • Fonte: Photodiagnosis and Photodynamic Therapy. Unidade: IQSC

    Assuntos: FOTOTERAPIA, PERIODONTIA

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    • ABNT

      MACEDO, Paula Delello et al. Hypericin-glucamine antimicrobial photodynamic therapy in the progression of experimentally induced periodontal disease in rats. Photodiagnosis and Photodynamic Therapy, v. 25, p. 43-49, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2018.11.003. Acesso em: 13 jul. 2024.
    • APA

      Macedo, P. D., Corbi, S. T., Oliveira, G. J. P. L. de, Perussi, J. R., Ribeiro, A. O., & Marcantonio, R. A. C. (2019). Hypericin-glucamine antimicrobial photodynamic therapy in the progression of experimentally induced periodontal disease in rats. Photodiagnosis and Photodynamic Therapy, 25, 43-49. doi:10.1016/j.pdpdt.2018.11.003
    • NLM

      Macedo PD, Corbi ST, Oliveira GJPL de, Perussi JR, Ribeiro AO, Marcantonio RAC. Hypericin-glucamine antimicrobial photodynamic therapy in the progression of experimentally induced periodontal disease in rats [Internet]. Photodiagnosis and Photodynamic Therapy. 2019 ;25 43-49.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1016/j.pdpdt.2018.11.003
    • Vancouver

      Macedo PD, Corbi ST, Oliveira GJPL de, Perussi JR, Ribeiro AO, Marcantonio RAC. Hypericin-glucamine antimicrobial photodynamic therapy in the progression of experimentally induced periodontal disease in rats [Internet]. Photodiagnosis and Photodynamic Therapy. 2019 ;25 43-49.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1016/j.pdpdt.2018.11.003
  • Fonte: Journal of Applied Oral Science. Unidade: FOB

    Assuntos: RESTAURAÇÃO EM DENTE POSTERIOR, PREPARO DA CAVIDADE DENTÁRIA, RESINAS COMPOSTAS

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    • ABNT

      MONDELLI, José et al. Assessment of a conservative approach for restoration of extensively destroyed posterior teeth. Journal of Applied Oral Science, v. 27, p. 7 , 2019Tradução . . Disponível em: https://doi.org/10.1590/1678-7757-2018-0631. Acesso em: 13 jul. 2024.
    • APA

      Mondelli, J., Rizzante, F. A. P., Valera, F. B., Roperto, R., Mondelli, R. F. L., & Furuse, A. Y. (2019). Assessment of a conservative approach for restoration of extensively destroyed posterior teeth. Journal of Applied Oral Science, 27, 7 . doi:10.1590/1678-7757-2018-0631
    • NLM

      Mondelli J, Rizzante FAP, Valera FB, Roperto R, Mondelli RFL, Furuse AY. Assessment of a conservative approach for restoration of extensively destroyed posterior teeth [Internet]. Journal of Applied Oral Science. 2019 ; 277 .[citado 2024 jul. 13 ] Available from: https://doi.org/10.1590/1678-7757-2018-0631
    • Vancouver

      Mondelli J, Rizzante FAP, Valera FB, Roperto R, Mondelli RFL, Furuse AY. Assessment of a conservative approach for restoration of extensively destroyed posterior teeth [Internet]. Journal of Applied Oral Science. 2019 ; 277 .[citado 2024 jul. 13 ] Available from: https://doi.org/10.1590/1678-7757-2018-0631
  • Fonte: Molecular Microbiology. Unidades: ICB, FCF, IME

    Assunto: BIOLOGIA MOLECULAR

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    • ABNT

      FERNANDEZ-BECERRA, Carmen et al. Variant proteins of Plasmodium vivax are not clonally expressed in natural infections. Molecular Microbiology, v. 58, n. 3, p. 648-658, 2005Tradução . . Disponível em: https://doi.org/10.1111/j.1365-2958.2005.04850.x. Acesso em: 13 jul. 2024.
    • APA

      Fernandez-Becerra, C., Pein, O., Oliveira, T. R. de, Yamamoto, M. M., Cassola, A. C., Rocha, C., et al. (2005). Variant proteins of Plasmodium vivax are not clonally expressed in natural infections. Molecular Microbiology, 58( 3), 648-658. doi:10.1111/j.1365-2958.2005.04850.x
    • NLM

      Fernandez-Becerra C, Pein O, Oliveira TR de, Yamamoto MM, Cassola AC, Rocha C, Soares I da S, Pereira CA de B, Obando HADP. Variant proteins of Plasmodium vivax are not clonally expressed in natural infections [Internet]. Molecular Microbiology. 2005 ; 58( 3): 648-658.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1111/j.1365-2958.2005.04850.x
    • Vancouver

      Fernandez-Becerra C, Pein O, Oliveira TR de, Yamamoto MM, Cassola AC, Rocha C, Soares I da S, Pereira CA de B, Obando HADP. Variant proteins of Plasmodium vivax are not clonally expressed in natural infections [Internet]. Molecular Microbiology. 2005 ; 58( 3): 648-658.[citado 2024 jul. 13 ] Available from: https://doi.org/10.1111/j.1365-2958.2005.04850.x

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