Filtros : "PORTO, ANDRÉ LUIZ MELEIRO" "Indexado na Scopus" Removido: "CATALISADORES" Limpar

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  • Source: Water, Air and Soil Pollution. Unidade: IQSC

    Subjects: BACTÉRIAS, PESTICIDAS

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      ANJOS, Charlene Souza dos et al. Biodegradation of Spirodiclofen by Bacillus sp. Isolated from Savannah and Citrus Fruits Soils. Water, Air and Soil Pollution, v. 235, p. 534, 2024Tradução . . Disponível em: https://doi.org/10.1007/s11270-024-07331-x. Acesso em: 07 out. 2024.
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      Anjos, C. S. dos, Lima, R. N., Magnani, R. F., & Porto, A. L. M. (2024). Biodegradation of Spirodiclofen by Bacillus sp. Isolated from Savannah and Citrus Fruits Soils. Water, Air and Soil Pollution, 235, 534. doi:10.1007/s11270-024-07331-x
    • NLM

      Anjos CS dos, Lima RN, Magnani RF, Porto ALM. Biodegradation of Spirodiclofen by Bacillus sp. Isolated from Savannah and Citrus Fruits Soils [Internet]. Water, Air and Soil Pollution. 2024 ;235 534.[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s11270-024-07331-x
    • Vancouver

      Anjos CS dos, Lima RN, Magnani RF, Porto ALM. Biodegradation of Spirodiclofen by Bacillus sp. Isolated from Savannah and Citrus Fruits Soils [Internet]. Water, Air and Soil Pollution. 2024 ;235 534.[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s11270-024-07331-x
  • Source: Results in Chemistry. Unidade: IQSC

    Subjects: BIOMA, SÍNTESE ORGÂNICA, FUNGOS, MEIO AMBIENTE

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      FERREIRA, Irlon Maciel et al. Ene-reductases: Contribution from Brazilian fungi in organic synthesis. Results in Chemistry, v. 5 , p. 100965, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.rechem.2023.100965. Acesso em: 07 out. 2024.
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      Ferreira, I. M., Jimenez, D. E. Q., Lopes, S. Q., Oliveira, A. N. de, Matos, M. J. S., & Porto, A. L. M. (2023). Ene-reductases: Contribution from Brazilian fungi in organic synthesis. Results in Chemistry, 5 , 100965. doi:10.1016/j.rechem.2023.100965
    • NLM

      Ferreira IM, Jimenez DEQ, Lopes SQ, Oliveira AN de, Matos MJS, Porto ALM. Ene-reductases: Contribution from Brazilian fungi in organic synthesis [Internet]. Results in Chemistry. 2023 ;5 100965.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.rechem.2023.100965
    • Vancouver

      Ferreira IM, Jimenez DEQ, Lopes SQ, Oliveira AN de, Matos MJS, Porto ALM. Ene-reductases: Contribution from Brazilian fungi in organic synthesis [Internet]. Results in Chemistry. 2023 ;5 100965.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.rechem.2023.100965
  • Source: Applied Biochemistry and Biotechnology. Unidade: IQSC

    Subjects: INSETICIDAS, BACTÉRIAS

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      VIANA, Juliana Galan e BIROLLI, Willian Garcia e PORTO, Andre Luiz Meleiro. Biodegradation of the Pesticides Bifenthrin and Fipronil by Bacillus Isolated from Orange Leaves. Applied Biochemistry and Biotechnology, v. 195, p. 3295–3310 , 2023Tradução . . Disponível em: https://doi.org/10.1007/s12010-022-04294-9. Acesso em: 07 out. 2024.
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      Viana, J. G., Birolli, W. G., & Porto, A. L. M. (2023). Biodegradation of the Pesticides Bifenthrin and Fipronil by Bacillus Isolated from Orange Leaves. Applied Biochemistry and Biotechnology, 195, 3295–3310 . doi:10.1007/s12010-022-04294-9
    • NLM

      Viana JG, Birolli WG, Porto ALM. Biodegradation of the Pesticides Bifenthrin and Fipronil by Bacillus Isolated from Orange Leaves [Internet]. Applied Biochemistry and Biotechnology. 2023 ; 195 3295–3310 .[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s12010-022-04294-9
    • Vancouver

      Viana JG, Birolli WG, Porto ALM. Biodegradation of the Pesticides Bifenthrin and Fipronil by Bacillus Isolated from Orange Leaves [Internet]. Applied Biochemistry and Biotechnology. 2023 ; 195 3295–3310 .[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s12010-022-04294-9
  • Source: Molecular Catalysis. Unidade: IQSC

    Subjects: ESTERIFICAÇÃO, AMIDAS, SÍNTESE ORGÂNICA

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      LIMA, Rafaely Nascimento e ANJOS, Charlene Souza dos e PORTO, Andre Luiz Meleiro. Biocatalytic synthesis of lipophilic amides by the lipase of Candida antarctica type B. Molecular Catalysis, v. 530, p. 112635, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.mcat.2022.112635. Acesso em: 07 out. 2024.
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      Lima, R. N., Anjos, C. S. dos, & Porto, A. L. M. (2022). Biocatalytic synthesis of lipophilic amides by the lipase of Candida antarctica type B. Molecular Catalysis, 530, 112635. doi:10.1016/j.mcat.2022.112635
    • NLM

      Lima RN, Anjos CS dos, Porto ALM. Biocatalytic synthesis of lipophilic amides by the lipase of Candida antarctica type B [Internet]. Molecular Catalysis. 2022 ;530 112635.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.mcat.2022.112635
    • Vancouver

      Lima RN, Anjos CS dos, Porto ALM. Biocatalytic synthesis of lipophilic amides by the lipase of Candida antarctica type B [Internet]. Molecular Catalysis. 2022 ;530 112635.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.mcat.2022.112635
  • Source: Current Bioactive Compounds. Unidades: IQSC, BIOENGENHARIA

    Subjects: QUÍMICA VERDE, COMPOSTOS HETEROCÍCLICOS, BACTERICIDAS, NEOPLASIAS, CATÁLISE

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      ZANIN, Lucas Lima et al. Synthesis of 1,2,3-triazole compounds by click chemistry in aqueous medium and evaluation of bactericidal and antitumoral properties. Current Bioactive Compounds, v. 18, n. 4, p. e191121198117, 2022Tradução . . Disponível em: https://doi.org/10.2174/1573407217666211119092038. Acesso em: 07 out. 2024.
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      Zanin, L. L., Jimenez, D. E. Q., Birolli, W. G., Venâncio, T., Valdes, T. A., Leitão, A., & Porto, A. L. M. (2022). Synthesis of 1,2,3-triazole compounds by click chemistry in aqueous medium and evaluation of bactericidal and antitumoral properties. Current Bioactive Compounds, 18( 4), e191121198117. doi:10.2174/1573407217666211119092038
    • NLM

      Zanin LL, Jimenez DEQ, Birolli WG, Venâncio T, Valdes TA, Leitão A, Porto ALM. Synthesis of 1,2,3-triazole compounds by click chemistry in aqueous medium and evaluation of bactericidal and antitumoral properties [Internet]. Current Bioactive Compounds. 2022 ; 18( 4): e191121198117.[citado 2024 out. 07 ] Available from: https://doi.org/10.2174/1573407217666211119092038
    • Vancouver

      Zanin LL, Jimenez DEQ, Birolli WG, Venâncio T, Valdes TA, Leitão A, Porto ALM. Synthesis of 1,2,3-triazole compounds by click chemistry in aqueous medium and evaluation of bactericidal and antitumoral properties [Internet]. Current Bioactive Compounds. 2022 ; 18( 4): e191121198117.[citado 2024 out. 07 ] Available from: https://doi.org/10.2174/1573407217666211119092038
  • Source: Biocatalysis and Agricultural Biotechnology. Unidade: IQSC

    Subjects: ESTEROIDES, CÉLULAS

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      PAULA, Samuel Filipe Cardoso de e ROSSET, Isac George e PORTO, Andre Luiz Meleiro. Hydroxylated steroids IN C-7 and C-15 positions from progesterone BIO-OXIDATION by the marine-derived fungus Penicillium oxalicum CBMAI 1996. Biocatalysis and Agricultural Biotechnology, p. 102167, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.bcab.2021.102167. Acesso em: 07 out. 2024.
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      Paula, S. F. C. de, Rosset, I. G., & Porto, A. L. M. (2021). Hydroxylated steroids IN C-7 and C-15 positions from progesterone BIO-OXIDATION by the marine-derived fungus Penicillium oxalicum CBMAI 1996. Biocatalysis and Agricultural Biotechnology, 102167. doi:10.1016/j.bcab.2021.102167
    • NLM

      Paula SFC de, Rosset IG, Porto ALM. Hydroxylated steroids IN C-7 and C-15 positions from progesterone BIO-OXIDATION by the marine-derived fungus Penicillium oxalicum CBMAI 1996 [Internet]. Biocatalysis and Agricultural Biotechnology. 2021 ;102167.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.bcab.2021.102167
    • Vancouver

      Paula SFC de, Rosset IG, Porto ALM. Hydroxylated steroids IN C-7 and C-15 positions from progesterone BIO-OXIDATION by the marine-derived fungus Penicillium oxalicum CBMAI 1996 [Internet]. Biocatalysis and Agricultural Biotechnology. 2021 ;102167.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.bcab.2021.102167
  • Source: Marine Pollution Bulletin. Unidade: IQSC

    Subjects: BIOTRANSFORMAÇÃO, INSETICIDAS, BIODEGRADAÇÃO, FUNGOS

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      SOARES, Paulo Roberto Serrão et al. Biodegradation pathway of the organophosphate pesticides chlorpyrifos, methyl parathion and profenofos by the marine-derived fungus Aspergillus sydowii CBMAI 935 and its potential for methylation reactions of phenolic compounds. Marine Pollution Bulletin, v. 166, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.marpolbul.2021.112185. Acesso em: 07 out. 2024.
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      Soares, P. R. S., Birolli, W. G., Ferreira, I. M., & Porto, A. L. M. (2021). Biodegradation pathway of the organophosphate pesticides chlorpyrifos, methyl parathion and profenofos by the marine-derived fungus Aspergillus sydowii CBMAI 935 and its potential for methylation reactions of phenolic compounds. Marine Pollution Bulletin, 166. doi:10.1016/j.marpolbul.2021.112185
    • NLM

      Soares PRS, Birolli WG, Ferreira IM, Porto ALM. Biodegradation pathway of the organophosphate pesticides chlorpyrifos, methyl parathion and profenofos by the marine-derived fungus Aspergillus sydowii CBMAI 935 and its potential for methylation reactions of phenolic compounds [Internet]. Marine Pollution Bulletin. 2021 ; 166[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.marpolbul.2021.112185
    • Vancouver

      Soares PRS, Birolli WG, Ferreira IM, Porto ALM. Biodegradation pathway of the organophosphate pesticides chlorpyrifos, methyl parathion and profenofos by the marine-derived fungus Aspergillus sydowii CBMAI 935 and its potential for methylation reactions of phenolic compounds [Internet]. Marine Pollution Bulletin. 2021 ; 166[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.marpolbul.2021.112185
  • Source: Biocatalysis and Biotransformation. Unidade: IQSC

    Subjects: REDUÇÃO, BIOTRANSFORMAÇÃO

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      MATOS, Iara Lisboa de e NITSCHKE, Marcia e PORTO, Andre Luiz Meleiro. Regioselective and chemoselective biotransformation of 2` -hydroxychalcone derivatives by marine-derived fungi. Biocatalysis and Biotransformation, v. 41, n. 1, p. 46-56, 2021Tradução . . Disponível em: https://doi.org/10.1080/10242422.2021.1956909. Acesso em: 07 out. 2024.
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      Matos, I. L. de, Nitschke, M., & Porto, A. L. M. (2021). Regioselective and chemoselective biotransformation of 2` -hydroxychalcone derivatives by marine-derived fungi. Biocatalysis and Biotransformation, 41( 1), 46-56. doi:10.1080/10242422.2021.1956909
    • NLM

      Matos IL de, Nitschke M, Porto ALM. Regioselective and chemoselective biotransformation of 2` -hydroxychalcone derivatives by marine-derived fungi [Internet]. Biocatalysis and Biotransformation. 2021 ; 41( 1): 46-56.[citado 2024 out. 07 ] Available from: https://doi.org/10.1080/10242422.2021.1956909
    • Vancouver

      Matos IL de, Nitschke M, Porto ALM. Regioselective and chemoselective biotransformation of 2` -hydroxychalcone derivatives by marine-derived fungi [Internet]. Biocatalysis and Biotransformation. 2021 ; 41( 1): 46-56.[citado 2024 out. 07 ] Available from: https://doi.org/10.1080/10242422.2021.1956909
  • Source: ChemistrySelect. Unidades: FCFRP, IQSC

    Assunto: QUÍMICA VERDE

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      LIMA, Rafaely Nascimento et al. Sustainable Synthesis of Amides from Ethyl 3‐(4‐Hydroxyphenyl) Propionate. ChemistrySelect, v. 6, p. 21, 2021Tradução . . Disponível em: https://doi.org/10.1002/slct.202100883. Acesso em: 07 out. 2024.
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      Lima, R. N., Vaz, A. de L. L., Clososki, G. C., & Porto, A. L. M. (2021). Sustainable Synthesis of Amides from Ethyl 3‐(4‐Hydroxyphenyl) Propionate. ChemistrySelect, 6, 21. doi:10.1002/slct.202100883
    • NLM

      Lima RN, Vaz A de LL, Clososki GC, Porto ALM. Sustainable Synthesis of Amides from Ethyl 3‐(4‐Hydroxyphenyl) Propionate [Internet]. ChemistrySelect. 2021 ;6 21.[citado 2024 out. 07 ] Available from: https://doi.org/10.1002/slct.202100883
    • Vancouver

      Lima RN, Vaz A de LL, Clososki GC, Porto ALM. Sustainable Synthesis of Amides from Ethyl 3‐(4‐Hydroxyphenyl) Propionate [Internet]. ChemistrySelect. 2021 ;6 21.[citado 2024 out. 07 ] Available from: https://doi.org/10.1002/slct.202100883
  • Source: Current Bioactive Compounds. Unidades: IQSC, INTER IFSC/IQSC/ICMC

    Subjects: NEOPLASIAS, ANTIOXIDANTES, BACTERICIDAS

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      LIMA, Rafaely Nascimento et al. Antioxidant, Antitumor and Bactericidal Activities of Ethyl Gallate Quinoxalines. Current Bioactive Compounds, v. 16, n. 6, p. 900-910, 2020Tradução . . Disponível em: https://doi.org/10.2174/1573407215666190318144105. Acesso em: 07 out. 2024.
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      Lima, R. N., Gonçalves, J. R., Silva, V. R., Santos, L. de S., Bezerra, D. P., Soares, M. B. P., et al. (2020). Antioxidant, Antitumor and Bactericidal Activities of Ethyl Gallate Quinoxalines. Current Bioactive Compounds, 16( 6), 900-910. doi:10.2174/1573407215666190318144105
    • NLM

      Lima RN, Gonçalves JR, Silva VR, Santos L de S, Bezerra DP, Soares MBP, Leitão A, Porto ALM. Antioxidant, Antitumor and Bactericidal Activities of Ethyl Gallate Quinoxalines [Internet]. Current Bioactive Compounds. 2020 ; 16( 6): 900-910.[citado 2024 out. 07 ] Available from: https://doi.org/10.2174/1573407215666190318144105
    • Vancouver

      Lima RN, Gonçalves JR, Silva VR, Santos L de S, Bezerra DP, Soares MBP, Leitão A, Porto ALM. Antioxidant, Antitumor and Bactericidal Activities of Ethyl Gallate Quinoxalines [Internet]. Current Bioactive Compounds. 2020 ; 16( 6): 900-910.[citado 2024 out. 07 ] Available from: https://doi.org/10.2174/1573407215666190318144105
  • Source: ACS Catalysis. Unidade: IQSC

    Subjects: CATÁLISE, ALCALOIDES

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      SILVA, Natália Alvarenga da et al. Asymmetric Synthesis of Dihydropinidine Enabled by Concurrent Multienzyme Catalysis and a Biocatalytic Alternative to Krapcho Dealkoxycarbonylation. ACS Catalysis, v. 10, n. 2, p. 1607-1620, 2020Tradução . . Disponível em: https://doi.org/10.1021/acscatal.9b04611. Acesso em: 07 out. 2024.
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      Silva, N. A. da, Payer, S. E., Petermeier, P., Kohlfuerst, C., Porto, A. L. M., Schrittwieser, J. H., & Kroutil, W. (2020). Asymmetric Synthesis of Dihydropinidine Enabled by Concurrent Multienzyme Catalysis and a Biocatalytic Alternative to Krapcho Dealkoxycarbonylation. ACS Catalysis, 10( 2), 1607-1620. doi:10.1021/acscatal.9b04611
    • NLM

      Silva NA da, Payer SE, Petermeier P, Kohlfuerst C, Porto ALM, Schrittwieser JH, Kroutil W. Asymmetric Synthesis of Dihydropinidine Enabled by Concurrent Multienzyme Catalysis and a Biocatalytic Alternative to Krapcho Dealkoxycarbonylation [Internet]. ACS Catalysis. 2020 ; 10( 2): 1607-1620.[citado 2024 out. 07 ] Available from: https://doi.org/10.1021/acscatal.9b04611
    • Vancouver

      Silva NA da, Payer SE, Petermeier P, Kohlfuerst C, Porto ALM, Schrittwieser JH, Kroutil W. Asymmetric Synthesis of Dihydropinidine Enabled by Concurrent Multienzyme Catalysis and a Biocatalytic Alternative to Krapcho Dealkoxycarbonylation [Internet]. ACS Catalysis. 2020 ; 10( 2): 1607-1620.[citado 2024 out. 07 ] Available from: https://doi.org/10.1021/acscatal.9b04611
  • Source: Biocatalysis and Agricultural Biotechnology. Unidade: IQSC

    Subjects: BIOPROCESSOS, FERMENTAÇÃO, GLICOSE, BIODIESEL

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      SANTOS, Darlisson de Alexandria et al. Butanediol production from glycerol and glucose by Serratia marcescens isolated from tropical peat soil. Biocatalysis and Agricultural Biotechnology, v. 26, p. 101615, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.bcab.2020.101615. Acesso em: 07 out. 2024.
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      Santos, D. de A., Casari, L. P., Lucas, S. C. de O., Romão, L. P. da C., & Porto, A. L. M. (2020). Butanediol production from glycerol and glucose by Serratia marcescens isolated from tropical peat soil. Biocatalysis and Agricultural Biotechnology, 26, 101615. doi:10.1016/j.bcab.2020.101615
    • NLM

      Santos D de A, Casari LP, Lucas SC de O, Romão LP da C, Porto ALM. Butanediol production from glycerol and glucose by Serratia marcescens isolated from tropical peat soil [Internet]. Biocatalysis and Agricultural Biotechnology. 2020 ; 26 101615.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.bcab.2020.101615
    • Vancouver

      Santos D de A, Casari LP, Lucas SC de O, Romão LP da C, Porto ALM. Butanediol production from glycerol and glucose by Serratia marcescens isolated from tropical peat soil [Internet]. Biocatalysis and Agricultural Biotechnology. 2020 ; 26 101615.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.bcab.2020.101615
  • Source: Biocatalysis and Agricultural Biotechnology. Unidade: IQSC

    Subjects: QUÍMICA ORGÂNICA, ESTEROIDES, ÁGUA DO MAR

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      PAULA, Samuel Filipe Cardoso de e PORTO, Andre Luiz Meleiro. Cascate reactions of progesterone by mycelia and culture broth from marine - derived fungus Aspergillus sydowii CBMAI 935. Biocatalysis and Agricultural Biotechnology, v. 25, p. 101546, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.bcab.2020.101546. Acesso em: 07 out. 2024.
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      Paula, S. F. C. de, & Porto, A. L. M. (2020). Cascate reactions of progesterone by mycelia and culture broth from marine - derived fungus Aspergillus sydowii CBMAI 935. Biocatalysis and Agricultural Biotechnology, 25, 101546. doi:10.1016/j.bcab.2020.101546
    • NLM

      Paula SFC de, Porto ALM. Cascate reactions of progesterone by mycelia and culture broth from marine - derived fungus Aspergillus sydowii CBMAI 935 [Internet]. Biocatalysis and Agricultural Biotechnology. 2020 ; 25 101546.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.bcab.2020.101546
    • Vancouver

      Paula SFC de, Porto ALM. Cascate reactions of progesterone by mycelia and culture broth from marine - derived fungus Aspergillus sydowii CBMAI 935 [Internet]. Biocatalysis and Agricultural Biotechnology. 2020 ; 25 101546.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.bcab.2020.101546
  • Source: Marine Biotechnology. Unidades: IQSC, IFSC

    Subjects: MEIO AMBIENTE, BIOTRANSFORMAÇÃO, FUNGOS, ESTEROIDES

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      QUEIROZ, Thayane Melo de e ELLENA, Javier e PORTO, Andre Luiz Meleiro. Biotransformation of Ethinylestradiol by Whole Cells of Brazilian Marine-Derived Fungus Penicillium oxalicum CBMAI 1996. Marine Biotechnology, v. 22, n. 5, p. 673-682, 2020Tradução . . Disponível em: https://doi.org/10.1007/s10126-020-09989-w. Acesso em: 07 out. 2024.
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      Queiroz, T. M. de, Ellena, J., & Porto, A. L. M. (2020). Biotransformation of Ethinylestradiol by Whole Cells of Brazilian Marine-Derived Fungus Penicillium oxalicum CBMAI 1996. Marine Biotechnology, 22( 5), 673-682. doi:10.1007/s10126-020-09989-w
    • NLM

      Queiroz TM de, Ellena J, Porto ALM. Biotransformation of Ethinylestradiol by Whole Cells of Brazilian Marine-Derived Fungus Penicillium oxalicum CBMAI 1996 [Internet]. Marine Biotechnology. 2020 ; 22( 5): 673-682.[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s10126-020-09989-w
    • Vancouver

      Queiroz TM de, Ellena J, Porto ALM. Biotransformation of Ethinylestradiol by Whole Cells of Brazilian Marine-Derived Fungus Penicillium oxalicum CBMAI 1996 [Internet]. Marine Biotechnology. 2020 ; 22( 5): 673-682.[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s10126-020-09989-w
  • Source: Bioresource Technology. Unidade: IQSC

    Subjects: CATÁLISE, LIPASE

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      BIROLLI, Willian Garcia e PORTO, Andre Luiz Meleiro e FONSECA, Luís Pina. Miniemulsion in biocatalysis, a new approach employing a solid reagent and an easy protocol for product isolation applied to the aldol reaction by Rhizopus niveus lipase. Bioresource Technology, v. 297, p. 122441, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2019.122441. Acesso em: 07 out. 2024.
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      Birolli, W. G., Porto, A. L. M., & Fonseca, L. P. (2020). Miniemulsion in biocatalysis, a new approach employing a solid reagent and an easy protocol for product isolation applied to the aldol reaction by Rhizopus niveus lipase. Bioresource Technology, 297, 122441. doi:10.1016/j.biortech.2019.122441
    • NLM

      Birolli WG, Porto ALM, Fonseca LP. Miniemulsion in biocatalysis, a new approach employing a solid reagent and an easy protocol for product isolation applied to the aldol reaction by Rhizopus niveus lipase [Internet]. Bioresource Technology. 2020 ; 297 122441.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.biortech.2019.122441
    • Vancouver

      Birolli WG, Porto ALM, Fonseca LP. Miniemulsion in biocatalysis, a new approach employing a solid reagent and an easy protocol for product isolation applied to the aldol reaction by Rhizopus niveus lipase [Internet]. Bioresource Technology. 2020 ; 297 122441.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.biortech.2019.122441
  • Source: Marine Biotechnology. Unidade: IQSC

    Assunto: BIODEGRADAÇÃO

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      BIROLLI, Willian Garcia et al. Biodegradation of the pyrethroid pesticide esfenvalerate by marine-derived fungi. Marine Biotechnology, v. 18, n. 4, p. 511-520, 2016Tradução . . Disponível em: https://doi.org/10.1007/s10126-016-9710-z. Acesso em: 07 out. 2024.
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      Birolli, W. G., Alvarenga, N., Seleghim, M. H. R., & Porto, A. L. M. (2016). Biodegradation of the pyrethroid pesticide esfenvalerate by marine-derived fungi. Marine Biotechnology, 18( 4), 511-520. doi:10.1007/s10126-016-9710-z
    • NLM

      Birolli WG, Alvarenga N, Seleghim MHR, Porto ALM. Biodegradation of the pyrethroid pesticide esfenvalerate by marine-derived fungi [Internet]. Marine Biotechnology. 2016 ; 18( 4): 511-520.[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s10126-016-9710-z
    • Vancouver

      Birolli WG, Alvarenga N, Seleghim MHR, Porto ALM. Biodegradation of the pyrethroid pesticide esfenvalerate by marine-derived fungi [Internet]. Marine Biotechnology. 2016 ; 18( 4): 511-520.[citado 2024 out. 07 ] Available from: https://doi.org/10.1007/s10126-016-9710-z
  • Source: Current biotechnology. Unidade: IQSC

    Assunto: BIOTECNOLOGIA

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      MOUAD, Ana Maria e PORTO, Andre Luiz Meleiro. Biocatalytic transformations of organic compounds by Brazilian marine-derived fungi. Current biotechnology, v. 5, p. 333 - 338, 2016Tradução . . Disponível em: https://doi.org/10.2174/2211550105666160305114243. Acesso em: 07 out. 2024.
    • APA

      Mouad, A. M., & Porto, A. L. M. (2016). Biocatalytic transformations of organic compounds by Brazilian marine-derived fungi. Current biotechnology, 5, 333 - 338. doi:10.2174/2211550105666160305114243
    • NLM

      Mouad AM, Porto ALM. Biocatalytic transformations of organic compounds by Brazilian marine-derived fungi [Internet]. Current biotechnology. 2016 ;5 333 - 338.[citado 2024 out. 07 ] Available from: https://doi.org/10.2174/2211550105666160305114243
    • Vancouver

      Mouad AM, Porto ALM. Biocatalytic transformations of organic compounds by Brazilian marine-derived fungi [Internet]. Current biotechnology. 2016 ;5 333 - 338.[citado 2024 out. 07 ] Available from: https://doi.org/10.2174/2211550105666160305114243
  • Source: Materials Chemistry and Physics. Unidade: IQSC

    Assunto: CATÁLISE

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      NOGUEIRA, Francisco Guilherme Esteves et al. Alternative route for the synthesis of high surface-area h-Al2O3/Nb2O5 catalyst from aluminum waste. Materials Chemistry and Physics, v. 184, p. 23-30, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.matchemphys.2016.08.032. Acesso em: 07 out. 2024.
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      Nogueira, F. G. E., Asencios, Y. J. O., Rodella, C. B., Porto, A. L. M., & Assaf, E. M. (2016). Alternative route for the synthesis of high surface-area h-Al2O3/Nb2O5 catalyst from aluminum waste. Materials Chemistry and Physics, 184, 23-30. doi:10.1016/j.matchemphys.2016.08.032
    • NLM

      Nogueira FGE, Asencios YJO, Rodella CB, Porto ALM, Assaf EM. Alternative route for the synthesis of high surface-area h-Al2O3/Nb2O5 catalyst from aluminum waste [Internet]. Materials Chemistry and Physics. 2016 ; 184 23-30.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.matchemphys.2016.08.032
    • Vancouver

      Nogueira FGE, Asencios YJO, Rodella CB, Porto ALM, Assaf EM. Alternative route for the synthesis of high surface-area h-Al2O3/Nb2O5 catalyst from aluminum waste [Internet]. Materials Chemistry and Physics. 2016 ; 184 23-30.[citado 2024 out. 07 ] Available from: https://doi.org/10.1016/j.matchemphys.2016.08.032

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