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Covid-19 Metabolomics and Diagnosis: Volume 2. . Cham: Instituto de Química de São Carlos, Universidade de São Paulo. Disponível em: https://doi.org/10.1007/978-3-031-27922-5. Acesso em: 16 nov. 2024. , 2023
APA
Covid-19 Metabolomics and Diagnosis: Volume 2. (2023). Covid-19 Metabolomics and Diagnosis: Volume 2. Cham: Instituto de Química de São Carlos, Universidade de São Paulo. doi:10.1007/978-3-031-27922-5
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Covid-19 Metabolomics and Diagnosis: Volume 2 [Internet]. 2023 ;[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-031-27922-5
Vancouver
Covid-19 Metabolomics and Diagnosis: Volume 2 [Internet]. 2023 ;[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-031-27922-5
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CRESPILHO, Frank Nelson. COVID-19 Metabolomics and Diagnosis: Chemical Science for Prevention and Understanding Outbreaks of Infectious Diseases. . Cham: Instituto de Química de São Carlos, Universidade de São Paulo. Disponível em: https://doi.org/10.1007/978-3-031-15889-6. Acesso em: 16 nov. 2024. , 2023
APA
Crespilho, F. N. (2023). COVID-19 Metabolomics and Diagnosis: Chemical Science for Prevention and Understanding Outbreaks of Infectious Diseases. Cham: Instituto de Química de São Carlos, Universidade de São Paulo. doi:10.1007/978-3-031-15889-6
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Crespilho FN. COVID-19 Metabolomics and Diagnosis: Chemical Science for Prevention and Understanding Outbreaks of Infectious Diseases [Internet]. 2023 ;[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-031-15889-6
Vancouver
Crespilho FN. COVID-19 Metabolomics and Diagnosis: Chemical Science for Prevention and Understanding Outbreaks of Infectious Diseases [Internet]. 2023 ;[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-031-15889-6
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NUÑEZ, Annsy Arredondo et al. Characterization of a type II L-Asparaginase from the halotolerant bacillus subtilis CH11. Life, v. 13, p. 1-12 art. 2145, 2023Tradução . . Disponível em: https://dx.doi.org/10.3390/life13112145. Acesso em: 16 nov. 2024.
APA
Nuñez, A. A., Monteiro, G., Fernández, C. N. F., Antenucci, L., Permi, P., & Zavaleta, A. I. (2023). Characterization of a type II L-Asparaginase from the halotolerant bacillus subtilis CH11. Life, 13, 1-12 art. 2145. doi:10.3390/life13112145
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Nuñez AA, Monteiro G, Fernández CNF, Antenucci L, Permi P, Zavaleta AI. Characterization of a type II L-Asparaginase from the halotolerant bacillus subtilis CH11 [Internet]. Life. 2023 ; 13 1-12 art. 2145.[citado 2024 nov. 16 ] Available from: https://dx.doi.org/10.3390/life13112145
Vancouver
Nuñez AA, Monteiro G, Fernández CNF, Antenucci L, Permi P, Zavaleta AI. Characterization of a type II L-Asparaginase from the halotolerant bacillus subtilis CH11 [Internet]. Life. 2023 ; 13 1-12 art. 2145.[citado 2024 nov. 16 ] Available from: https://dx.doi.org/10.3390/life13112145
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SOUZA-MONTEIRO, Deiweson et al. Salivary glands after prolonged aluminum exposure: proteomic approach underlying biochemical and morphological impairments in rats. International Journal of Molecular Sciences, v. 23, n. 4, 2022Tradução . . Disponível em: https://doi.org/10.3390/ijms23042251. Acesso em: 16 nov. 2024.
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Souza-Monteiro, D., Guerra, M. C. dos S., Bittencourt, L. O., Aragão, W. A. B., Dionizio, A., Silveira, F. M., et al. (2022). Salivary glands after prolonged aluminum exposure: proteomic approach underlying biochemical and morphological impairments in rats. International Journal of Molecular Sciences, 23( 4). doi:10.3390/ijms23042251
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Souza-Monteiro D, Guerra MC dos S, Bittencourt LO, Aragão WAB, Dionizio A, Silveira FM, Buzalaf MAR, Martins MD, Crespo-Lopez ME, Lima RR. Salivary glands after prolonged aluminum exposure: proteomic approach underlying biochemical and morphological impairments in rats [Internet]. International Journal of Molecular Sciences. 2022 ; 23( 4):[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms23042251
Vancouver
Souza-Monteiro D, Guerra MC dos S, Bittencourt LO, Aragão WAB, Dionizio A, Silveira FM, Buzalaf MAR, Martins MD, Crespo-Lopez ME, Lima RR. Salivary glands after prolonged aluminum exposure: proteomic approach underlying biochemical and morphological impairments in rats [Internet]. International Journal of Molecular Sciences. 2022 ; 23( 4):[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms23042251
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IOST, Rodrigo M. Volume-confined biomolecules for application in biocatalysis. Advances in Bioelectrochemistry,Volume 2, Biomimetic, Bioelectrocatalysis and Materials Interfaces. Tradução . Cham: Instituto de Química de São Carlos, Universidade de São Paulo, 2022. . Disponível em: https://doi.org/10.1007/978-3-030-95270-9. Acesso em: 16 nov. 2024.
APA
Iost, R. M. (2022). Volume-confined biomolecules for application in biocatalysis. In Advances in Bioelectrochemistry,Volume 2, Biomimetic, Bioelectrocatalysis and Materials Interfaces. Cham: Instituto de Química de São Carlos, Universidade de São Paulo. doi:10.1007/978-3-030-95270-9
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Iost RM. Volume-confined biomolecules for application in biocatalysis [Internet]. In: Advances in Bioelectrochemistry,Volume 2, Biomimetic, Bioelectrocatalysis and Materials Interfaces. Cham: Instituto de Química de São Carlos, Universidade de São Paulo; 2022. [citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-030-95270-9
Vancouver
Iost RM. Volume-confined biomolecules for application in biocatalysis [Internet]. In: Advances in Bioelectrochemistry,Volume 2, Biomimetic, Bioelectrocatalysis and Materials Interfaces. Cham: Instituto de Química de São Carlos, Universidade de São Paulo; 2022. [citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-030-95270-9
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IOST, Rodrigo M. Surface-confined biomolecules for application in bioelectronics. Advances in Bioelectrochemistry, Volume 1, Surface, Electron Transfer and Techniques. Tradução . Cham: Instituto de Química de São Carlos, Universidade de São Paulo, 2022. . Disponível em: https://doi.org/10.1007/978-3-030-94988-4_4. Acesso em: 16 nov. 2024.
APA
Iost, R. M. (2022). Surface-confined biomolecules for application in bioelectronics. In Advances in Bioelectrochemistry, Volume 1, Surface, Electron Transfer and Techniques. Cham: Instituto de Química de São Carlos, Universidade de São Paulo. doi:10.1007/978-3-030-94988-4_4
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Iost RM. Surface-confined biomolecules for application in bioelectronics [Internet]. In: Advances in Bioelectrochemistry, Volume 1, Surface, Electron Transfer and Techniques. Cham: Instituto de Química de São Carlos, Universidade de São Paulo; 2022. [citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-030-94988-4_4
Vancouver
Iost RM. Surface-confined biomolecules for application in bioelectronics [Internet]. In: Advances in Bioelectrochemistry, Volume 1, Surface, Electron Transfer and Techniques. Cham: Instituto de Química de São Carlos, Universidade de São Paulo; 2022. [citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/978-3-030-94988-4_4
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OLIVEIRA, Aline A et al. Examining the effect of charged lipids on mitochondrial outer membrane dynamics using atomistic simulations. Biomolecules, v. 12, n. 2, p. 183-197, 2022Tradução . . Disponível em: https://doi.org/10.3390/biom12020183. Acesso em: 16 nov. 2024.
APA
Oliveira, A. A., Róg, T., Silva, A. B. F. da, Amaro, R. E., Johnson, M. S., & Postila, P. A. (2022). Examining the effect of charged lipids on mitochondrial outer membrane dynamics using atomistic simulations. Biomolecules, 12( 2), 183-197. doi:10.3390/biom12020183
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Oliveira AA, Róg T, Silva ABF da, Amaro RE, Johnson MS, Postila PA. Examining the effect of charged lipids on mitochondrial outer membrane dynamics using atomistic simulations [Internet]. Biomolecules. 2022 ; 12( 2): 183-197.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/biom12020183
Vancouver
Oliveira AA, Róg T, Silva ABF da, Amaro RE, Johnson MS, Postila PA. Examining the effect of charged lipids on mitochondrial outer membrane dynamics using atomistic simulations [Internet]. Biomolecules. 2022 ; 12( 2): 183-197.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/biom12020183
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CONDELES, André Luís e TOLEDO JUNIOR, José Carlos. The labile iron pool reacts rapidly and catalytically with Peroxynitrite. Biomolecules, v. 11, n. 9, p. 1-19, 2021Tradução . . Disponível em: https://doi.org/10.3390/biom11091331. Acesso em: 16 nov. 2024.
APA
Condeles, A. L., & Toledo Junior, J. C. (2021). The labile iron pool reacts rapidly and catalytically with Peroxynitrite. Biomolecules, 11( 9), 1-19. doi:10.3390/biom11091331
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Condeles AL, Toledo Junior JC. The labile iron pool reacts rapidly and catalytically with Peroxynitrite [Internet]. Biomolecules. 2021 ; 11( 9): 1-19.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/biom11091331
Vancouver
Condeles AL, Toledo Junior JC. The labile iron pool reacts rapidly and catalytically with Peroxynitrite [Internet]. Biomolecules. 2021 ; 11( 9): 1-19.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/biom11091331
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SANTANA, Jeferson Santos et al. Polyureas versatile polymers for new academic and technological applications. Polymers, v. 13, p. 1-44 art. 4393, 2021Tradução . . Disponível em: https://doi.org/10.3390/polym13244393. Acesso em: 16 nov. 2024.
APA
Santana, J. S., Cardoso, E. S., Triboni, E. R., & Politi, M. J. (2021). Polyureas versatile polymers for new academic and technological applications. Polymers, 13, 1-44 art. 4393. doi:10.3390/polym13244393
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Santana JS, Cardoso ES, Triboni ER, Politi MJ. Polyureas versatile polymers for new academic and technological applications [Internet]. Polymers. 2021 ; 13 1-44 art. 4393.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/polym13244393
Vancouver
Santana JS, Cardoso ES, Triboni ER, Politi MJ. Polyureas versatile polymers for new academic and technological applications [Internet]. Polymers. 2021 ; 13 1-44 art. 4393.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/polym13244393
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BERNARDI, Aline Vianna et al. LPMO AfAA9_B and cellobiohydrolase AfCel6A from A. fumigatus boost enzymatic saccharification activity of cellulase cocktail. International Journal of Molecular Sciences, v. 22, n. 1, p. 1-23, 2021Tradução . . Disponível em: https://doi.org/10.3390/ijms22010276. Acesso em: 16 nov. 2024.
APA
Bernardi, A. V., Gerolamo, L. E., Gouvêa, P. F. de, Yonamine, D. K., Pereira, L. M. S., Oliveira, A. H. C. de, et al. (2021). LPMO AfAA9_B and cellobiohydrolase AfCel6A from A. fumigatus boost enzymatic saccharification activity of cellulase cocktail. International Journal of Molecular Sciences, 22( 1), 1-23. doi:10.3390/ijms22010276
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Bernardi AV, Gerolamo LE, Gouvêa PF de, Yonamine DK, Pereira LMS, Oliveira AHC de, Uyemura SA, Dinamarco TM. LPMO AfAA9_B and cellobiohydrolase AfCel6A from A. fumigatus boost enzymatic saccharification activity of cellulase cocktail [Internet]. International Journal of Molecular Sciences. 2021 ; 22( 1): 1-23.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms22010276
Vancouver
Bernardi AV, Gerolamo LE, Gouvêa PF de, Yonamine DK, Pereira LMS, Oliveira AHC de, Uyemura SA, Dinamarco TM. LPMO AfAA9_B and cellobiohydrolase AfCel6A from A. fumigatus boost enzymatic saccharification activity of cellulase cocktail [Internet]. International Journal of Molecular Sciences. 2021 ; 22( 1): 1-23.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms22010276
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BARRA, Angélica Luana Carrilho et al. Structural dynamics and perspectives of vitamin B6 biosynthesis enzymes in plasmodium: advances and open questions. Frontiers in Cellular and Infection Microbiology, v. 11, p. 688380-1-688380-11, 2021Tradução . . Disponível em: https://doi.org/10.3389/fcimb.2021.688380. Acesso em: 16 nov. 2024.
APA
Barra, A. L. C., Ullah, N., Morão, L. G., Wrenger, C., Betzel, C., & Nascimento, A. S. (2021). Structural dynamics and perspectives of vitamin B6 biosynthesis enzymes in plasmodium: advances and open questions. Frontiers in Cellular and Infection Microbiology, 11, 688380-1-688380-11. doi:10.3389/fcimb.2021.688380
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Barra ALC, Ullah N, Morão LG, Wrenger C, Betzel C, Nascimento AS. Structural dynamics and perspectives of vitamin B6 biosynthesis enzymes in plasmodium: advances and open questions [Internet]. Frontiers in Cellular and Infection Microbiology. 2021 ; 11 688380-1-688380-11.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fcimb.2021.688380
Vancouver
Barra ALC, Ullah N, Morão LG, Wrenger C, Betzel C, Nascimento AS. Structural dynamics and perspectives of vitamin B6 biosynthesis enzymes in plasmodium: advances and open questions [Internet]. Frontiers in Cellular and Infection Microbiology. 2021 ; 11 688380-1-688380-11.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fcimb.2021.688380
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MAZZEU, Bruna F. et al. The methionine 549 and leucine 552 residues of friedelin synthase from maytenus ilicifolia are important for substrate binding specificity. Molecules, v. No 2021, n. 22, p. 6806-1-6806-13, 2021Tradução . . Disponível em: https://doi.org/10.3390/molecules26226806. Acesso em: 16 nov. 2024.
APA
Mazzeu, B. F., Souza-Moreira, T. M., Oliveira, A. A. de, Remlinger, M., Felippe, L. G., Valentini, S. R., et al. (2021). The methionine 549 and leucine 552 residues of friedelin synthase from maytenus ilicifolia are important for substrate binding specificity. Molecules, No 2021( 22), 6806-1-6806-13. doi:10.3390/molecules26226806
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Mazzeu BF, Souza-Moreira TM, Oliveira AA de, Remlinger M, Felippe LG, Valentini SR, Guido RVC, Zanelli CF, Furlan M. The methionine 549 and leucine 552 residues of friedelin synthase from maytenus ilicifolia are important for substrate binding specificity [Internet]. Molecules. 2021 ; No 2021( 22): 6806-1-6806-13.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/molecules26226806
Vancouver
Mazzeu BF, Souza-Moreira TM, Oliveira AA de, Remlinger M, Felippe LG, Valentini SR, Guido RVC, Zanelli CF, Furlan M. The methionine 549 and leucine 552 residues of friedelin synthase from maytenus ilicifolia are important for substrate binding specificity [Internet]. Molecules. 2021 ; No 2021( 22): 6806-1-6806-13.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/molecules26226806
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TAIRUM, Carlos A et al. Effects of Serine or Threonine in the Active Site of Typical 2-Cys Prx on Hyperoxidation Susceptibility and on Chaperone Activity. Antioxidants, v. 10, n. 7, 2021Tradução . . Disponível em: https://doi.org/10.3390/antiox10071032. Acesso em: 16 nov. 2024.
APA
Tairum, C. A., Santos, M. C., Breyer, C. A., Oliveira, A. L. P. de, Cabrera, V. I. M., Toledo-Silva, G., et al. (2021). Effects of Serine or Threonine in the Active Site of Typical 2-Cys Prx on Hyperoxidation Susceptibility and on Chaperone Activity. Antioxidants, 10( 7). doi:10.3390/antiox10071032
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Tairum CA, Santos MC, Breyer CA, Oliveira ALP de, Cabrera VIM, Toledo-Silva G, Mori GM, Toyama MH, Netto LES, Oliveira MA de. Effects of Serine or Threonine in the Active Site of Typical 2-Cys Prx on Hyperoxidation Susceptibility and on Chaperone Activity [Internet]. Antioxidants. 2021 ; 10( 7):[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/antiox10071032
Vancouver
Tairum CA, Santos MC, Breyer CA, Oliveira ALP de, Cabrera VIM, Toledo-Silva G, Mori GM, Toyama MH, Netto LES, Oliveira MA de. Effects of Serine or Threonine in the Active Site of Typical 2-Cys Prx on Hyperoxidation Susceptibility and on Chaperone Activity [Internet]. Antioxidants. 2021 ; 10( 7):[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/antiox10071032
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VESCHI, Ekeveliny Amabile et al. Localization of annexin A6 in matrix vesicles during physiological mineralization. International Journal of Molecular Sciences, v. 21, n. 4, p. 1-16, 2020Tradução . . Disponível em: https://doi.org/10.3390/ijms21041367. Acesso em: 16 nov. 2024.
APA
Veschi, E. A., Correia, M. B., Strzelecka-Kiliszek, A., Bandorowicz-Pikula, J., Pikula, S., Granjon, T., et al. (2020). Localization of annexin A6 in matrix vesicles during physiological mineralization. International Journal of Molecular Sciences, 21( 4), 1-16. doi:10.3390/ijms21041367
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Veschi EA, Correia MB, Strzelecka-Kiliszek A, Bandorowicz-Pikula J, Pikula S, Granjon T, Mebarek S, Magne D, Ramos AP, Rosato N, Millán JL, Buchet R, Bottini M, Ciancaglini P. Localization of annexin A6 in matrix vesicles during physiological mineralization [Internet]. International Journal of Molecular Sciences. 2020 ; 21( 4): 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms21041367
Vancouver
Veschi EA, Correia MB, Strzelecka-Kiliszek A, Bandorowicz-Pikula J, Pikula S, Granjon T, Mebarek S, Magne D, Ramos AP, Rosato N, Millán JL, Buchet R, Bottini M, Ciancaglini P. Localization of annexin A6 in matrix vesicles during physiological mineralization [Internet]. International Journal of Molecular Sciences. 2020 ; 21( 4): 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms21041367
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LOPES, Géssica Oliveira et al. Effects of fluoride long-term exposure over the cerebellum: global proteomic profile, oxidative biochemistry, cell density, and motor behavior evaluation. International Journal of Molecular Sciences, v. 21, n. 19, 2020Tradução . . Disponível em: https://doi.org/10.3390/ijms21197297. Acesso em: 16 nov. 2024.
APA
Lopes, G. O., Ferreira, M. K. M., Davis, L., Bittencourt, L. O., Aragão, W. A. B., Dionizio, A., et al. (2020). Effects of fluoride long-term exposure over the cerebellum: global proteomic profile, oxidative biochemistry, cell density, and motor behavior evaluation. International Journal of Molecular Sciences, 21( 19). doi:10.3390/ijms21197297
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Lopes GO, Ferreira MKM, Davis L, Bittencourt LO, Aragão WAB, Dionizio A, Buzalaf MAR, Crespo-Lopez ME, Maia CSF, Lima RR. Effects of fluoride long-term exposure over the cerebellum: global proteomic profile, oxidative biochemistry, cell density, and motor behavior evaluation [Internet]. International Journal of Molecular Sciences. 2020 ; 21( 19):[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms21197297
Vancouver
Lopes GO, Ferreira MKM, Davis L, Bittencourt LO, Aragão WAB, Dionizio A, Buzalaf MAR, Crespo-Lopez ME, Maia CSF, Lima RR. Effects of fluoride long-term exposure over the cerebellum: global proteomic profile, oxidative biochemistry, cell density, and motor behavior evaluation [Internet]. International Journal of Molecular Sciences. 2020 ; 21( 19):[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms21197297
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MONEDEIRO, Fernanda Ferreira da Silva Souza et al. Monitoring of bactericidal effects of silver nanoparticles based on protein signatures and VOC emissions from Escherichia coli and selected salivary bacteria. Journal of Clinical Medicine, v. 8, n. 11, p. 1-23, 2019Tradução . . Disponível em: https://doi.org/10.3390/jcm8112024. Acesso em: 16 nov. 2024.
APA
Monedeiro, F. F. da S. S., Pomastowski, P., Milanowski, M., Ligor, T., & Buszewski, B. (2019). Monitoring of bactericidal effects of silver nanoparticles based on protein signatures and VOC emissions from Escherichia coli and selected salivary bacteria. Journal of Clinical Medicine, 8( 11), 1-23. doi:10.3390/jcm8112024
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Monedeiro FF da SS, Pomastowski P, Milanowski M, Ligor T, Buszewski B. Monitoring of bactericidal effects of silver nanoparticles based on protein signatures and VOC emissions from Escherichia coli and selected salivary bacteria [Internet]. Journal of Clinical Medicine. 2019 ; 8( 11): 1-23.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/jcm8112024
Vancouver
Monedeiro FF da SS, Pomastowski P, Milanowski M, Ligor T, Buszewski B. Monitoring of bactericidal effects of silver nanoparticles based on protein signatures and VOC emissions from Escherichia coli and selected salivary bacteria [Internet]. Journal of Clinical Medicine. 2019 ; 8( 11): 1-23.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/jcm8112024
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FERNANDES, Cleverson Rodrigues et al. High-fat and fat-enriched diets impair the benefits of moderate physical training in the aorta and the heart in rats. Frontiers in Nutrition, v. 4, 2017Tradução . . Disponível em: https://doi.org/10.3389/fnut.2017.00021. Acesso em: 16 nov. 2024.
APA
Fernandes, C. R., Kannen, V., Mata, K. M., Frajacomo, F. T., Jordão Junior, A. A., Gasparotto, B., et al. (2017). High-fat and fat-enriched diets impair the benefits of moderate physical training in the aorta and the heart in rats. Frontiers in Nutrition, 4. doi:10.3389/fnut.2017.00021
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Fernandes CR, Kannen V, Mata KM, Frajacomo FT, Jordão Junior AA, Gasparotto B, Sakita JY, Elias Junior J, Leonardi DS, Mauad FM, Ramos SG, Uyemura SA, Garcia SB. High-fat and fat-enriched diets impair the benefits of moderate physical training in the aorta and the heart in rats [Internet]. Frontiers in Nutrition. 2017 ; 4[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fnut.2017.00021
Vancouver
Fernandes CR, Kannen V, Mata KM, Frajacomo FT, Jordão Junior AA, Gasparotto B, Sakita JY, Elias Junior J, Leonardi DS, Mauad FM, Ramos SG, Uyemura SA, Garcia SB. High-fat and fat-enriched diets impair the benefits of moderate physical training in the aorta and the heart in rats [Internet]. Frontiers in Nutrition. 2017 ; 4[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fnut.2017.00021
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HAMIN NETO, Youssef A. A. et al. Analysis of the specificity and biochemical characterization of metalloproteases isolated from Eupenicillium javanicum using fluorescence resonance energy transfer peptides. Frontiers in Microbiology, v. 7, 2017Tradução . . Disponível em: https://doi.org/10.3389/fmicb.2016.02141. Acesso em: 16 nov. 2024.
APA
Hamin Neto, Y. A. A., Oliveira, L. C. G. de, Oliveira, J. R. de, Juliano, M. A., Juliano, L., Arantes, E. C., & Cabral, H. (2017). Analysis of the specificity and biochemical characterization of metalloproteases isolated from Eupenicillium javanicum using fluorescence resonance energy transfer peptides. Frontiers in Microbiology, 7. doi:10.3389/fmicb.2016.02141
NLM
Hamin Neto YAA, Oliveira LCG de, Oliveira JR de, Juliano MA, Juliano L, Arantes EC, Cabral H. Analysis of the specificity and biochemical characterization of metalloproteases isolated from Eupenicillium javanicum using fluorescence resonance energy transfer peptides [Internet]. Frontiers in Microbiology. 2017 ; 7[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fmicb.2016.02141
Vancouver
Hamin Neto YAA, Oliveira LCG de, Oliveira JR de, Juliano MA, Juliano L, Arantes EC, Cabral H. Analysis of the specificity and biochemical characterization of metalloproteases isolated from Eupenicillium javanicum using fluorescence resonance energy transfer peptides [Internet]. Frontiers in Microbiology. 2017 ; 7[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fmicb.2016.02141
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LOZANO, Norka B. H. Lozano et al. Pattern recognition techniques applied to the study of leishmanial glyceraldehyde-3-phosphate dehydrogenase inhibition. International Journal of Molecular Sciences, v. 15, n. 2, p. 3186-3203, 2014Tradução . . Disponível em: https://doi.org/10.3390/ijms15023186. Acesso em: 16 nov. 2024.
APA
Lozano, N. B. H. L., Oliveira, R. F., Weber, K. C., Honório, K. M., Guido, R. V. C., Andricopulo, A. D., et al. (2014). Pattern recognition techniques applied to the study of leishmanial glyceraldehyde-3-phosphate dehydrogenase inhibition. International Journal of Molecular Sciences, 15( 2), 3186-3203. doi:10.3390/ijms15023186
NLM
Lozano NBHL, Oliveira RF, Weber KC, Honório KM, Guido RVC, Andricopulo AD, Sousa AG, Silva ABF da. Pattern recognition techniques applied to the study of leishmanial glyceraldehyde-3-phosphate dehydrogenase inhibition [Internet]. International Journal of Molecular Sciences. 2014 ; 15( 2): 3186-3203.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms15023186
Vancouver
Lozano NBHL, Oliveira RF, Weber KC, Honório KM, Guido RVC, Andricopulo AD, Sousa AG, Silva ABF da. Pattern recognition techniques applied to the study of leishmanial glyceraldehyde-3-phosphate dehydrogenase inhibition [Internet]. International Journal of Molecular Sciences. 2014 ; 15( 2): 3186-3203.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3390/ijms15023186
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ABNT
TONELLI, Renata Rosito e COLLI, Walter e ALVES, Maria Júlia Manso. Selection of binding targets in parasites using phage-display and aptamer libraries in vivo and in vitro. Frontiers in Immunology, v. 3, p. 1-16, 2013Tradução . . Disponível em: https://doi.org/10.3389/fimmu.2012.00419. Acesso em: 16 nov. 2024.
APA
Tonelli, R. R., Colli, W., & Alves, M. J. M. (2013). Selection of binding targets in parasites using phage-display and aptamer libraries in vivo and in vitro. Frontiers in Immunology, 3, 1-16. doi:10.3389/fimmu.2012.00419
NLM
Tonelli RR, Colli W, Alves MJM. Selection of binding targets in parasites using phage-display and aptamer libraries in vivo and in vitro [Internet]. Frontiers in Immunology. 2013 ; 3 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fimmu.2012.00419
Vancouver
Tonelli RR, Colli W, Alves MJM. Selection of binding targets in parasites using phage-display and aptamer libraries in vivo and in vitro [Internet]. Frontiers in Immunology. 2013 ; 3 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fimmu.2012.00419