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VICARI, Hugo Passos et al. Synthetic cyclopenta[b]indoles exhibit antineoplastic activity by targeting microtubule dynamics in acute myeloid leukemia cells. European Journal of Pharmacology, v. 894, p. 173853-1-173853-10, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.ejphar.2021.173853. Acesso em: 02 nov. 2024.
APA
Vicari, H. P., Lima, K., Gomes, R. da C., Fernandes, D. C., Silva, J. C. L. da, Rodrigues Junior, M. T., et al. (2021). Synthetic cyclopenta[b]indoles exhibit antineoplastic activity by targeting microtubule dynamics in acute myeloid leukemia cells. European Journal of Pharmacology, 894, 173853-1-173853-10. doi:10.1016/j.ejphar.2021.173853
NLM
Vicari HP, Lima K, Gomes R da C, Fernandes DC, Silva JCL da, Rodrigues Junior MT, Oliveira ASB de, Santos RN dos, Andricopulo AD, Coelho F, Costa-Lotufo LV, Machado Neto JA. Synthetic cyclopenta[b]indoles exhibit antineoplastic activity by targeting microtubule dynamics in acute myeloid leukemia cells [Internet]. European Journal of Pharmacology. 2021 ; 894 173853-1-173853-10.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.ejphar.2021.173853
Vancouver
Vicari HP, Lima K, Gomes R da C, Fernandes DC, Silva JCL da, Rodrigues Junior MT, Oliveira ASB de, Santos RN dos, Andricopulo AD, Coelho F, Costa-Lotufo LV, Machado Neto JA. Synthetic cyclopenta[b]indoles exhibit antineoplastic activity by targeting microtubule dynamics in acute myeloid leukemia cells [Internet]. European Journal of Pharmacology. 2021 ; 894 173853-1-173853-10.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.ejphar.2021.173853
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FEU, Amanda Eiriz et al. Glycosylated narciclasine alkaloid in Hippeastrum puniceum (Lam.) Kuntze. South African Journal of Botany, v. 136, n. Ja 2021, p. 30-34, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.sajb.2020.09.006. Acesso em: 02 nov. 2024.
APA
Feu, A. E., Andrade, J. P. de, Ayala, A. P., Almeida, L. C. de, Costa-Lotufo, L. V., Bastida, J., et al. (2021). Glycosylated narciclasine alkaloid in Hippeastrum puniceum (Lam.) Kuntze. South African Journal of Botany, 136( Ja 2021), 30-34. doi:10.1016/j.sajb.2020.09.006
NLM
Feu AE, Andrade JP de, Ayala AP, Almeida LC de, Costa-Lotufo LV, Bastida J, Ellena J, Borges W de S. Glycosylated narciclasine alkaloid in Hippeastrum puniceum (Lam.) Kuntze [Internet]. South African Journal of Botany. 2021 ; 136( Ja 2021): 30-34.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.sajb.2020.09.006
Vancouver
Feu AE, Andrade JP de, Ayala AP, Almeida LC de, Costa-Lotufo LV, Bastida J, Ellena J, Borges W de S. Glycosylated narciclasine alkaloid in Hippeastrum puniceum (Lam.) Kuntze [Internet]. South African Journal of Botany. 2021 ; 136( Ja 2021): 30-34.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.sajb.2020.09.006
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TURANO, Helena Gabriela et al. Molecular structure and functional analysis of pyocin S8 from Pseudomonas aeruginosa reveals the essential requirement of a glutamate residue in the H-N-H motif for DNase activity. Journal of Bacteriology, v. No 2020, n. 21, p. 74-85, 2020Tradução . . Disponível em: https://doi.org/10.1128/JB.00346-20. Acesso em: 02 nov. 2024.
APA
Turano, H. G., Gomes, F., Domingos, R. M., Degenhardt, M. F. de S., Oliveira, C. L. P. de, Garratt, R. C., et al. (2020). Molecular structure and functional analysis of pyocin S8 from Pseudomonas aeruginosa reveals the essential requirement of a glutamate residue in the H-N-H motif for DNase activity. Journal of Bacteriology, No 2020( 21), 74-85. doi:10.1128/JB.00346-20
NLM
Turano HG, Gomes F, Domingos RM, Degenhardt MF de S, Oliveira CLP de, Garratt RC, Netto LES, Lincopan N. Molecular structure and functional analysis of pyocin S8 from Pseudomonas aeruginosa reveals the essential requirement of a glutamate residue in the H-N-H motif for DNase activity [Internet]. Journal of Bacteriology. 2020 ; No 2020( 21): 74-85.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1128/JB.00346-20
Vancouver
Turano HG, Gomes F, Domingos RM, Degenhardt MF de S, Oliveira CLP de, Garratt RC, Netto LES, Lincopan N. Molecular structure and functional analysis of pyocin S8 from Pseudomonas aeruginosa reveals the essential requirement of a glutamate residue in the H-N-H motif for DNase activity [Internet]. Journal of Bacteriology. 2020 ; No 2020( 21): 74-85.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1128/JB.00346-20
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MONTEIRO, Gustavo Claro et al. Synthesis of cytotoxic structural analogs from natural meroterpenes from myrthaceae. 2017, Anais.. Durham: International Union of Pure and Applied Chemistry - IUPAC, 2017. Disponível em: http://www.neopixdmi.com.br/@mci/iupac2017/. Acesso em: 02 nov. 2024.
APA
Monteiro, G. C., Cunha, B. L. da, Aguiar, A. C. C., Guido, R. V. C., Costa-Lotufo, L. V., & Bolzani, V. da S. (2017). Synthesis of cytotoxic structural analogs from natural meroterpenes from myrthaceae. In Proceedings. Durham: International Union of Pure and Applied Chemistry - IUPAC. Recuperado de http://www.neopixdmi.com.br/@mci/iupac2017/
NLM
Monteiro GC, Cunha BL da, Aguiar ACC, Guido RVC, Costa-Lotufo LV, Bolzani V da S. Synthesis of cytotoxic structural analogs from natural meroterpenes from myrthaceae [Internet]. Proceedings. 2017 ;[citado 2024 nov. 02 ] Available from: http://www.neopixdmi.com.br/@mci/iupac2017/
Vancouver
Monteiro GC, Cunha BL da, Aguiar ACC, Guido RVC, Costa-Lotufo LV, Bolzani V da S. Synthesis of cytotoxic structural analogs from natural meroterpenes from myrthaceae [Internet]. Proceedings. 2017 ;[citado 2024 nov. 02 ] Available from: http://www.neopixdmi.com.br/@mci/iupac2017/
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PEREIRA, Marcos D. P. et al. Chemical composition, antiprotozoal and cytotoxic activities of indole alkaloids and benzofuran neolignan of Aristolochia cordigera. Planta Medica, v. 83, n. 11, p. 912-920 + supporting information, 2017Tradução . . Disponível em: https://doi.org/10.1055/s-0043-104776. Acesso em: 02 nov. 2024.
APA
Pereira, M. D. P., Silva, T. da, Aguiar, A. C. C., Oliva, G., Guido, R. V. C., Uliana, S. R. B., et al. (2017). Chemical composition, antiprotozoal and cytotoxic activities of indole alkaloids and benzofuran neolignan of Aristolochia cordigera. Planta Medica, 83( 11), 912-920 + supporting information. doi:10.1055/s-0043-104776
NLM
Pereira MDP, Silva T da, Aguiar ACC, Oliva G, Guido RVC, Uliana SRB, Yokoyama-Yasunaka JKU, Lopes LMX. Chemical composition, antiprotozoal and cytotoxic activities of indole alkaloids and benzofuran neolignan of Aristolochia cordigera [Internet]. Planta Medica. 2017 ; 83( 11): 912-920 + supporting information.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1055/s-0043-104776
Vancouver
Pereira MDP, Silva T da, Aguiar ACC, Oliva G, Guido RVC, Uliana SRB, Yokoyama-Yasunaka JKU, Lopes LMX. Chemical composition, antiprotozoal and cytotoxic activities of indole alkaloids and benzofuran neolignan of Aristolochia cordigera [Internet]. Planta Medica. 2017 ; 83( 11): 912-920 + supporting information.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1055/s-0043-104776
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MANTILLA, Brian S. et al. Role of Δ1-pyrroline5-carboxylate-dehydrogenase supports mitochondrial metabolism and host-cell invasion of Trypanosoma cruzi. Journal of Biological Chemistry, v. 290, n. 12, p. 7767-7790, 2015Tradução . . Disponível em: https://doi.org/10.1074/jbc.M114.574525. Acesso em: 02 nov. 2024.
APA
Mantilla, B. S., Paes, L. S., Pral, E. M. F., Martil, D. E., Thiemann, O. H., Fernández-Silva, P., et al. (2015). Role of Δ1-pyrroline5-carboxylate-dehydrogenase supports mitochondrial metabolism and host-cell invasion of Trypanosoma cruzi. Journal of Biological Chemistry, 290( 12), 7767-7790. doi:10.1074/jbc.M114.574525
NLM
Mantilla BS, Paes LS, Pral EMF, Martil DE, Thiemann OH, Fernández-Silva P, Bastos EL, Silber AM. Role of Δ1-pyrroline5-carboxylate-dehydrogenase supports mitochondrial metabolism and host-cell invasion of Trypanosoma cruzi [Internet]. Journal of Biological Chemistry. 2015 ; 290( 12): 7767-7790.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1074/jbc.M114.574525
Vancouver
Mantilla BS, Paes LS, Pral EMF, Martil DE, Thiemann OH, Fernández-Silva P, Bastos EL, Silber AM. Role of Δ1-pyrroline5-carboxylate-dehydrogenase supports mitochondrial metabolism and host-cell invasion of Trypanosoma cruzi [Internet]. Journal of Biological Chemistry. 2015 ; 290( 12): 7767-7790.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1074/jbc.M114.574525
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MANTILLA, B. S. et al. TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. FEBS Journal. Oxford: Wiley-Blackwell. . Acesso em: 02 nov. 2024. , 2012
APA
Mantilla, B. S., Paes, L. S., Gomes, D. C., Martil, D. E., Thiemann, O. H., Bastos, E. L., et al. (2012). TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. FEBS Journal. Oxford: Wiley-Blackwell.
NLM
Mantilla BS, Paes LS, Gomes DC, Martil DE, Thiemann OH, Bastos EL, Fernandez-Silva P, Meyer-Fernandes JR, Silber AM. TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. FEBS Journal. 2012 ; 279 129-130.[citado 2024 nov. 02 ]
Vancouver
Mantilla BS, Paes LS, Gomes DC, Martil DE, Thiemann OH, Bastos EL, Fernandez-Silva P, Meyer-Fernandes JR, Silber AM. TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. FEBS Journal. 2012 ; 279 129-130.[citado 2024 nov. 02 ]
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MANTILLA, Brian Suárez et al. TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. 2012, Anais.. Madri: Sociedad Española de Bioquímica y Biología Molecular - SEBBM, 2012. . Acesso em: 02 nov. 2024.
APA
Mantilla, B. S., Paes, L. S., Gomes, D. C., Martil, D. E., Thiemann, O. H., Bastos, E. L., et al. (2012). TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. In Program. Madri: Sociedad Española de Bioquímica y Biología Molecular - SEBBM.
NLM
Mantilla BS, Paes LS, Gomes DC, Martil DE, Thiemann OH, Bastos EL, Fernandez-Silva P, Fernandes RM, Silber AM. TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. Program. 2012 ;[citado 2024 nov. 02 ]
Vancouver
Mantilla BS, Paes LS, Gomes DC, Martil DE, Thiemann OH, Bastos EL, Fernandez-Silva P, Fernandes RM, Silber AM. TcP5CDH modulates mitochondrial respiratory chain in the protozoan specie Trypanosoma cruzi. Program. 2012 ;[citado 2024 nov. 02 ]
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GODOI, Paulo Henrique Conaggin et al. Structure of the Thiazole biosynthetic enzyme THI1 from Arabidopsis thaliana. Journal of Biological Chemistry, v. 281, n. 41, p. 30957-30966, 2006Tradução . . Disponível em: https://doi.org/10.1074/jbc.m604469200. Acesso em: 02 nov. 2024.
APA
Godoi, P. H. C., Galhardo, R. da S., Luche, D. D., Van Sluys, M. -A., Menck, C. F. M., & Oliva, G. (2006). Structure of the Thiazole biosynthetic enzyme THI1 from Arabidopsis thaliana. Journal of Biological Chemistry, 281( 41), 30957-30966. doi:10.1074/jbc.m604469200
NLM
Godoi PHC, Galhardo R da S, Luche DD, Van Sluys M-A, Menck CFM, Oliva G. Structure of the Thiazole biosynthetic enzyme THI1 from Arabidopsis thaliana [Internet]. Journal of Biological Chemistry. 2006 ; 281( 41): 30957-30966.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1074/jbc.m604469200
Vancouver
Godoi PHC, Galhardo R da S, Luche DD, Van Sluys M-A, Menck CFM, Oliva G. Structure of the Thiazole biosynthetic enzyme THI1 from Arabidopsis thaliana [Internet]. Journal of Biological Chemistry. 2006 ; 281( 41): 30957-30966.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1074/jbc.m604469200
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OLIVA, Glaucius et al. Structure of thil: thiamin biosynthesis in Arabdopsis thaliana. Acta Crystallographica A. Copenhagen: Blackwell Munksgaard. . Acesso em: 02 nov. 2024. , 2005
APA
Oliva, G., Godói, P. H. C., Van Sluys, M. -A., & Menck, C. F. M. (2005). Structure of thil: thiamin biosynthesis in Arabdopsis thaliana. Acta Crystallographica A. Copenhagen: Blackwell Munksgaard.
NLM
Oliva G, Godói PHC, Van Sluys M-A, Menck CFM. Structure of thil: thiamin biosynthesis in Arabdopsis thaliana. Acta Crystallographica A. 2005 ; 61 C210.[citado 2024 nov. 02 ]
Vancouver
Oliva G, Godói PHC, Van Sluys M-A, Menck CFM. Structure of thil: thiamin biosynthesis in Arabdopsis thaliana. Acta Crystallographica A. 2005 ; 61 C210.[citado 2024 nov. 02 ]