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GELETA, Girma Selale et al. Recent advances in nanomaterial-based electrochemical aptasensors for detecting aquatic toxins in shellfish and freshwater. a review. Talanta, v. 297, p. 1-19 art. 128589, 2026Tradução . . Disponível em: https://dx.doi.org/10.1016/j.talanta.2025.128589. Acesso em: 07 dez. 2025.
APA
Geleta, G. S., Saraiva, D. P. M., Ribeiro, L. M. A., Pereira, J. F. da S., & Bertotti, M. (2026). Recent advances in nanomaterial-based electrochemical aptasensors for detecting aquatic toxins in shellfish and freshwater. a review. Talanta, 297, 1-19 art. 128589. doi:10.1016/j.talanta.2025.128589
NLM
Geleta GS, Saraiva DPM, Ribeiro LMA, Pereira JF da S, Bertotti M. Recent advances in nanomaterial-based electrochemical aptasensors for detecting aquatic toxins in shellfish and freshwater. a review [Internet]. Talanta. 2026 ; 297 1-19 art. 128589.[citado 2025 dez. 07 ] Available from: https://dx.doi.org/10.1016/j.talanta.2025.128589
Vancouver
Geleta GS, Saraiva DPM, Ribeiro LMA, Pereira JF da S, Bertotti M. Recent advances in nanomaterial-based electrochemical aptasensors for detecting aquatic toxins in shellfish and freshwater. a review [Internet]. Talanta. 2026 ; 297 1-19 art. 128589.[citado 2025 dez. 07 ] Available from: https://dx.doi.org/10.1016/j.talanta.2025.128589
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CAMPOS, Raphael Victor Barros et al. High-performance piezoelectric generator based on a monocrystalline LiNbO3 fiber. Crystal Growth and Design, v. 25, n. Ja 2025, p. 672-679, 2025Tradução . . Disponível em: https://doi.org/10.1021/acs.cgd.4c01447. Acesso em: 07 dez. 2025.
APA
Campos, R. V. B., Nogueira, F. E. A., Nascimento, J. P. C. do, Carmo, F. F. do, Silva, M. A. S. da, Marcondes, S. P., et al. (2025). High-performance piezoelectric generator based on a monocrystalline LiNbO3 fiber. Crystal Growth and Design, 25( Ja 2025), 672-679. doi:10.1021/acs.cgd.4c01447
NLM
Campos RVB, Nogueira FEA, Nascimento JPC do, Carmo FF do, Silva MAS da, Marcondes SP, Hernandes AC, Boriskina SV, Lozano Sánchez LM, Sombra ASB. High-performance piezoelectric generator based on a monocrystalline LiNbO3 fiber [Internet]. Crystal Growth and Design. 2025 ; 25( Ja 2025): 672-679.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acs.cgd.4c01447
Vancouver
Campos RVB, Nogueira FEA, Nascimento JPC do, Carmo FF do, Silva MAS da, Marcondes SP, Hernandes AC, Boriskina SV, Lozano Sánchez LM, Sombra ASB. High-performance piezoelectric generator based on a monocrystalline LiNbO3 fiber [Internet]. Crystal Growth and Design. 2025 ; 25( Ja 2025): 672-679.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acs.cgd.4c01447
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FERREIRA, Natália Noronha et al. Nose-to-brain delivery of biomimetic nanoparticles for glioblastoma targeted therapy. ACS Applied Materials and Interfaces, v. 17, n. Ja 2025, p. 484-499 + supporting information: s1-s5, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsami.4c16837. Acesso em: 07 dez. 2025.
APA
Ferreira, N. N., Leite, C. M., Moreno, N. S., Miranda, R. R., Lins, P. M. P., Rodero, C. F., et al. (2025). Nose-to-brain delivery of biomimetic nanoparticles for glioblastoma targeted therapy. ACS Applied Materials and Interfaces, 17( Ja 2025), 484-499 + supporting information: s1-s5. doi:10.1021/acsami.4c16837
NLM
Ferreira NN, Leite CM, Moreno NS, Miranda RR, Lins PMP, Rodero CF, Oliveira Junior E de, Lima EM, Reis RMV, Zucolotto V. Nose-to-brain delivery of biomimetic nanoparticles for glioblastoma targeted therapy [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( Ja 2025): 484-499 + supporting information: s1-s5.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acsami.4c16837
Vancouver
Ferreira NN, Leite CM, Moreno NS, Miranda RR, Lins PMP, Rodero CF, Oliveira Junior E de, Lima EM, Reis RMV, Zucolotto V. Nose-to-brain delivery of biomimetic nanoparticles for glioblastoma targeted therapy [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( Ja 2025): 484-499 + supporting information: s1-s5.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acsami.4c16837
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CAMPAROTTO, Natália Gabriele et al. Comparison on the performance of green and conventional magnetic chitosan-based composites in the removal of complex dyes: synergetic effect, experimental and theoretical studies. International Journal of Biological Macromolecules, v. 289, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.ijbiomac.2024.138657. Acesso em: 07 dez. 2025.
APA
Camparotto, N. G., Fulaneti, G. H. S., Fokoue, H. H., Mastelaro, V. R., Vieira, M. G. A., & Prediger, P. (2025). Comparison on the performance of green and conventional magnetic chitosan-based composites in the removal of complex dyes: synergetic effect, experimental and theoretical studies. International Journal of Biological Macromolecules, 289. doi:10.1016/j.ijbiomac.2024.138657
NLM
Camparotto NG, Fulaneti GHS, Fokoue HH, Mastelaro VR, Vieira MGA, Prediger P. Comparison on the performance of green and conventional magnetic chitosan-based composites in the removal of complex dyes: synergetic effect, experimental and theoretical studies [Internet]. International Journal of Biological Macromolecules. 2025 ; 289[citado 2025 dez. 07 ] Available from: https://doi.org/10.1016/j.ijbiomac.2024.138657
Vancouver
Camparotto NG, Fulaneti GHS, Fokoue HH, Mastelaro VR, Vieira MGA, Prediger P. Comparison on the performance of green and conventional magnetic chitosan-based composites in the removal of complex dyes: synergetic effect, experimental and theoretical studies [Internet]. International Journal of Biological Macromolecules. 2025 ; 289[citado 2025 dez. 07 ] Available from: https://doi.org/10.1016/j.ijbiomac.2024.138657
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ACS Applied Materials and Interfaces. . Washington, DC: American Chemical Society - ACS. Disponível em: https://repositorio.usp.br/directbitstream/f378e949-6961-4fcb-99b9-384e77c4365c/3252169.pdf. Acesso em: 07 dez. 2025. , 2025
APA
ACS Applied Materials and Interfaces. (2025). ACS Applied Materials and Interfaces. Washington, DC: American Chemical Society - ACS. Recuperado de https://repositorio.usp.br/directbitstream/f378e949-6961-4fcb-99b9-384e77c4365c/3252169.pdf
NLM
ACS Applied Materials and Interfaces [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://repositorio.usp.br/directbitstream/f378e949-6961-4fcb-99b9-384e77c4365c/3252169.pdf
Vancouver
ACS Applied Materials and Interfaces [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://repositorio.usp.br/directbitstream/f378e949-6961-4fcb-99b9-384e77c4365c/3252169.pdf
Journal of Biomedical Nanotechnology. (2025). Journal of Biomedical Nanotechnology. Valencia: American Scientific Publishers - ASP. Recuperado de https://repositorio.usp.br/directbitstream/d5c1bee9-e5b8-45e2-8a7b-723a7e502112/3255634.pdf
NLM
Journal of Biomedical Nanotechnology [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://repositorio.usp.br/directbitstream/d5c1bee9-e5b8-45e2-8a7b-723a7e502112/3255634.pdf
Vancouver
Journal of Biomedical Nanotechnology [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://repositorio.usp.br/directbitstream/d5c1bee9-e5b8-45e2-8a7b-723a7e502112/3255634.pdf
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MAGALHÃES, Maria Rita Ramos et al. Quality of plywood bonded with nanolignin-enriched cardanol-formaldehyde adhesive. Fibers, v. 13, p. 1-20, 2025Tradução . . Disponível em: https://doi.org/10.3390/fib13070095. Acesso em: 07 dez. 2025.
APA
Magalhães, M. R. R., Batista, F. G., Furtini, A. C. C., Scatolino, M. V., Brito, F. M. S., Mendes, L. M., et al. (2025). Quality of plywood bonded with nanolignin-enriched cardanol-formaldehyde adhesive. Fibers, 13, 1-20. doi:10.3390/fib13070095
NLM
Magalhães MRR, Batista FG, Furtini ACC, Scatolino MV, Brito FMS, Mendes LM, Protásio T de P, Guimarães Junior JB. Quality of plywood bonded with nanolignin-enriched cardanol-formaldehyde adhesive [Internet]. Fibers. 2025 ; 13 1-20.[citado 2025 dez. 07 ] Available from: https://doi.org/10.3390/fib13070095
Vancouver
Magalhães MRR, Batista FG, Furtini ACC, Scatolino MV, Brito FMS, Mendes LM, Protásio T de P, Guimarães Junior JB. Quality of plywood bonded with nanolignin-enriched cardanol-formaldehyde adhesive [Internet]. Fibers. 2025 ; 13 1-20.[citado 2025 dez. 07 ] Available from: https://doi.org/10.3390/fib13070095
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NOGUEIRA, Francisco Enilton Alves et al. New piezoelectric generator (PG) based on a lithium tantalate (LiTaO3) monocrystal fiber. Crystal Growth and Design, v. 25, n. 14, p. 5330-5337, 2025Tradução . . Disponível em: https://doi.org/10.1021/acs.cgd.5c00476. Acesso em: 07 dez. 2025.
APA
Nogueira, F. E. A., Carmo, F. F. do, Campos, R. V. B., Nascimento, J. P. C. do, Silva, M. A. S. da, Marcondes, S. P., et al. (2025). New piezoelectric generator (PG) based on a lithium tantalate (LiTaO3) monocrystal fiber. Crystal Growth and Design, 25( 14), 5330-5337. doi:10.1021/acs.cgd.5c00476
NLM
Nogueira FEA, Carmo FF do, Campos RVB, Nascimento JPC do, Silva MAS da, Marcondes SP, Hernandes AC, Boriskina SV, Lozano Sánchez LM, Sombra ASB. New piezoelectric generator (PG) based on a lithium tantalate (LiTaO3) monocrystal fiber [Internet]. Crystal Growth and Design. 2025 ; 25( 14): 5330-5337.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acs.cgd.5c00476
Vancouver
Nogueira FEA, Carmo FF do, Campos RVB, Nascimento JPC do, Silva MAS da, Marcondes SP, Hernandes AC, Boriskina SV, Lozano Sánchez LM, Sombra ASB. New piezoelectric generator (PG) based on a lithium tantalate (LiTaO3) monocrystal fiber [Internet]. Crystal Growth and Design. 2025 ; 25( 14): 5330-5337.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acs.cgd.5c00476
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BISTAFFA, Maria Julia et al. Membrane-coated PLGA nanoparticles enhance cisplatin targeting and uptake in lung cancer cells. 2025, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2025. Disponível em: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/211_1748314639.pdf. Acesso em: 07 dez. 2025.
APA
Bistaffa, M. J., Rodero, C. F., Zapata, A. M. M., Leite, C. M., Sterman, R. G., Cardoso, V. M. de O., & Zucolotto, V. (2025). Membrane-coated PLGA nanoparticles enhance cisplatin targeting and uptake in lung cancer cells. In Presentation program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/211_1748314639.pdf
NLM
Bistaffa MJ, Rodero CF, Zapata AMM, Leite CM, Sterman RG, Cardoso VM de O, Zucolotto V. Membrane-coated PLGA nanoparticles enhance cisplatin targeting and uptake in lung cancer cells [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/211_1748314639.pdf
Vancouver
Bistaffa MJ, Rodero CF, Zapata AMM, Leite CM, Sterman RG, Cardoso VM de O, Zucolotto V. Membrane-coated PLGA nanoparticles enhance cisplatin targeting and uptake in lung cancer cells [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/211_1748314639.pdf
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GALAIN, Isabel et al. Radiosensitization with Bi2S3 nanoparticles: impact on tumor cell vability and post-irradiation proliferation. 2025, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2025. Disponível em: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1628_1748314716.pdf. Acesso em: 07 dez. 2025.
APA
Galain, I., Barthaburu, M. E. P., Zucolotto, V., & Aguiar, I. (2025). Radiosensitization with Bi2S3 nanoparticles: impact on tumor cell vability and post-irradiation proliferation. In Presentation program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1628_1748314716.pdf
NLM
Galain I, Barthaburu MEP, Zucolotto V, Aguiar I. Radiosensitization with Bi2S3 nanoparticles: impact on tumor cell vability and post-irradiation proliferation [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1628_1748314716.pdf
Vancouver
Galain I, Barthaburu MEP, Zucolotto V, Aguiar I. Radiosensitization with Bi2S3 nanoparticles: impact on tumor cell vability and post-irradiation proliferation [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1628_1748314716.pdf
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MORENO, Natalia Sanchez et al. Enhancing temozolomide delivery using biomimetic nanoparticles with tumor and immune cell membrane coatings. 2025, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2025. Disponível em: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/2164_1748314749.pdf. Acesso em: 07 dez. 2025.
APA
Moreno, N. S., Ferreira, N. N., Leite, C. M., Oliveira, M. E. H., & Zucolotto, V. (2025). Enhancing temozolomide delivery using biomimetic nanoparticles with tumor and immune cell membrane coatings. In Presentation program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/2164_1748314749.pdf
NLM
Moreno NS, Ferreira NN, Leite CM, Oliveira MEH, Zucolotto V. Enhancing temozolomide delivery using biomimetic nanoparticles with tumor and immune cell membrane coatings [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/2164_1748314749.pdf
Vancouver
Moreno NS, Ferreira NN, Leite CM, Oliveira MEH, Zucolotto V. Enhancing temozolomide delivery using biomimetic nanoparticles with tumor and immune cell membrane coatings [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/2164_1748314749.pdf
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ROBELDO, Thaiane Alcarde et al. Nanocarriers for the optimized targeted delivery for genetic therapies applied to the pancreatic cancer. 2025, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2025. Disponível em: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1184_1748610089.pdf. Acesso em: 07 dez. 2025.
APA
Robeldo, T. A., Leite, A. E. T., Vilela, R. R. do C., & Zucolotto, V. (2025). Nanocarriers for the optimized targeted delivery for genetic therapies applied to the pancreatic cancer. In Presentation program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1184_1748610089.pdf
NLM
Robeldo TA, Leite AET, Vilela RR do C, Zucolotto V. Nanocarriers for the optimized targeted delivery for genetic therapies applied to the pancreatic cancer [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1184_1748610089.pdf
Vancouver
Robeldo TA, Leite AET, Vilela RR do C, Zucolotto V. Nanocarriers for the optimized targeted delivery for genetic therapies applied to the pancreatic cancer [Internet]. Presentation program. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.eventweb.com.br/xxiiisbpmat/specific-files/manuscripts/xxiiisbpmat/1184_1748610089.pdf
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SEIBERT, Janaína Brandão et al. Easy obtainment and biological applicability of pinocarvyl acetate by encapsulating of the Microlicia graveolens essential oil in oil-in-water nanoemulsions. Pharmaceutics, v. 17, p. 1-16, 2025Tradução . . Disponível em: https://doi.org/10.3390/pharmaceutics17091130. Acesso em: 07 dez. 2025.
APA
Seibert, J. B., Amparo, T. R., Sousa, L. R. D., Rodrigues, I. V., Petit, A., Pervier, P., et al. (2025). Easy obtainment and biological applicability of pinocarvyl acetate by encapsulating of the Microlicia graveolens essential oil in oil-in-water nanoemulsions. Pharmaceutics, 17, 1-16. doi:10.3390/pharmaceutics17091130
NLM
Seibert JB, Amparo TR, Sousa LRD, Rodrigues IV, Petit A, Pervier P, Azevedo MC, Sales Junior PA, Murta SMF, Carneiro CM, Teixeira LF de M, Souza GHB de, Vieira PM de A, Santos ODH dos. Easy obtainment and biological applicability of pinocarvyl acetate by encapsulating of the Microlicia graveolens essential oil in oil-in-water nanoemulsions [Internet]. Pharmaceutics. 2025 ; 17 1-16.[citado 2025 dez. 07 ] Available from: https://doi.org/10.3390/pharmaceutics17091130
Vancouver
Seibert JB, Amparo TR, Sousa LRD, Rodrigues IV, Petit A, Pervier P, Azevedo MC, Sales Junior PA, Murta SMF, Carneiro CM, Teixeira LF de M, Souza GHB de, Vieira PM de A, Santos ODH dos. Easy obtainment and biological applicability of pinocarvyl acetate by encapsulating of the Microlicia graveolens essential oil in oil-in-water nanoemulsions [Internet]. Pharmaceutics. 2025 ; 17 1-16.[citado 2025 dez. 07 ] Available from: https://doi.org/10.3390/pharmaceutics17091130
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TORRESI, Susana Inês Córdoba de e GERMANO, Lucas Dias e DE ANGELIS, Leonardo Domenico. Plasmon enhanced oxygen evolution reaction on Au decorated Ni(OH)2 nanostructures: the role of alkaline cations solvation. 2025, Anais.. Lausanne: International Society of Electrochemistry, 2025. Disponível em: https://topical39.ise-online.org/img_conf/ISE-TM-39%20Program%20web.pdf. Acesso em: 07 dez. 2025.
APA
Torresi, S. I. C. de, Germano, L. D., & De Angelis, L. D. (2025). Plasmon enhanced oxygen evolution reaction on Au decorated Ni(OH)2 nanostructures: the role of alkaline cations solvation. In Program. Lausanne: International Society of Electrochemistry. Recuperado de https://topical39.ise-online.org/img_conf/ISE-TM-39%20Program%20web.pdf
NLM
Torresi SIC de, Germano LD, De Angelis LD. Plasmon enhanced oxygen evolution reaction on Au decorated Ni(OH)2 nanostructures: the role of alkaline cations solvation [Internet]. Program. 2025 ;[citado 2025 dez. 07 ] Available from: https://topical39.ise-online.org/img_conf/ISE-TM-39%20Program%20web.pdf
Vancouver
Torresi SIC de, Germano LD, De Angelis LD. Plasmon enhanced oxygen evolution reaction on Au decorated Ni(OH)2 nanostructures: the role of alkaline cations solvation [Internet]. Program. 2025 ;[citado 2025 dez. 07 ] Available from: https://topical39.ise-online.org/img_conf/ISE-TM-39%20Program%20web.pdf
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ZACCARIOTTO, Gabriel de Camargo et al. Cancer nanovaccines: mechanisms, design principles, and clinical translation. ACS Nano, v. 19, n. 17, p. 16204-16223, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsnano.4c15765. Acesso em: 07 dez. 2025.
APA
Zaccariotto, G. de C., Bistaffa, M. J., Zapata, A. M. M., Rodero, C. F., Coelho, F., Quitiba, J. V. B., et al. (2025). Cancer nanovaccines: mechanisms, design principles, and clinical translation. ACS Nano, 19( 17), 16204-16223. doi:10.1021/acsnano.4c15765
NLM
Zaccariotto G de C, Bistaffa MJ, Zapata AMM, Rodero CF, Coelho F, Quitiba JVB, Lima LLP de, Sterman RG, Cardoso VM de O, Zucolotto V. Cancer nanovaccines: mechanisms, design principles, and clinical translation [Internet]. ACS Nano. 2025 ; 19( 17): 16204-16223.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acsnano.4c15765
Vancouver
Zaccariotto G de C, Bistaffa MJ, Zapata AMM, Rodero CF, Coelho F, Quitiba JVB, Lima LLP de, Sterman RG, Cardoso VM de O, Zucolotto V. Cancer nanovaccines: mechanisms, design principles, and clinical translation [Internet]. ACS Nano. 2025 ; 19( 17): 16204-16223.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acsnano.4c15765
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KIMURA, Angela Hitomi et al. Hydrogel containing biogenic silver nanoparticles and origanum vulgare essential oil for burn wounds: antimicrobial efficacy using ex vivo and in vivo methods against multidrug-resistant microorganisms. Pharmaceutics, v. 17, n. 4, p. 23 , 2025Tradução . . Disponível em: https://doi.org/10.3390/pharmaceutics17040503. Acesso em: 07 dez. 2025.
APA
Kimura, A. H., Dahmer, D., Isawa, L. A., Silva, A. B. O. da, Souza, L. M. dos S., Takata, P. H., et al. (2025). Hydrogel containing biogenic silver nanoparticles and origanum vulgare essential oil for burn wounds: antimicrobial efficacy using ex vivo and in vivo methods against multidrug-resistant microorganisms. Pharmaceutics, 17( 4), 23 . doi:10.3390/pharmaceutics17040503
NLM
Kimura AH, Dahmer D, Isawa LA, Silva ABO da, Souza LM dos S, Takata PH, Scandorieiro S, Deonas AN, Germiniani-Cardozo J, Vespero EC, Perugini MRE, Lonni AASG, Nakazato G, Kobayashi RKT, Lincopan N. Hydrogel containing biogenic silver nanoparticles and origanum vulgare essential oil for burn wounds: antimicrobial efficacy using ex vivo and in vivo methods against multidrug-resistant microorganisms [Internet]. Pharmaceutics. 2025 ; 17( 4): 23 .[citado 2025 dez. 07 ] Available from: https://doi.org/10.3390/pharmaceutics17040503
Vancouver
Kimura AH, Dahmer D, Isawa LA, Silva ABO da, Souza LM dos S, Takata PH, Scandorieiro S, Deonas AN, Germiniani-Cardozo J, Vespero EC, Perugini MRE, Lonni AASG, Nakazato G, Kobayashi RKT, Lincopan N. Hydrogel containing biogenic silver nanoparticles and origanum vulgare essential oil for burn wounds: antimicrobial efficacy using ex vivo and in vivo methods against multidrug-resistant microorganisms [Internet]. Pharmaceutics. 2025 ; 17( 4): 23 .[citado 2025 dez. 07 ] Available from: https://doi.org/10.3390/pharmaceutics17040503
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MASIERO, Jéssica Fagionato e BOU-CHACRA, Nadia Araci. Borage oil nanoemulsion for the treatment of atopic dermatitis: preparation, physicochemical characterization and toxicity evaluation. 2025. Tese (Doutorado) – Universidade de São Paulo, São Paulo, 2025. Disponível em: https://www.teses.usp.br/teses/disponiveis/9/9139/tde-01102025-101311/. Acesso em: 07 dez. 2025.
APA
Masiero, J. F., & Bou-Chacra, N. A. (2025). Borage oil nanoemulsion for the treatment of atopic dermatitis: preparation, physicochemical characterization and toxicity evaluation (Tese (Doutorado). Universidade de São Paulo, São Paulo. Recuperado de https://www.teses.usp.br/teses/disponiveis/9/9139/tde-01102025-101311/
NLM
Masiero JF, Bou-Chacra NA. Borage oil nanoemulsion for the treatment of atopic dermatitis: preparation, physicochemical characterization and toxicity evaluation [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.teses.usp.br/teses/disponiveis/9/9139/tde-01102025-101311/
Vancouver
Masiero JF, Bou-Chacra NA. Borage oil nanoemulsion for the treatment of atopic dermatitis: preparation, physicochemical characterization and toxicity evaluation [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://www.teses.usp.br/teses/disponiveis/9/9139/tde-01102025-101311/
Critical Reviews in Therapeutic Drug Carrier Systems. (2025). Critical Reviews in Therapeutic Drug Carrier Systems. Danbury: Begell House. Recuperado de https://repositorio.usp.br/directbitstream/54ed4967-81c0-4c84-b3b6-70a420b8bbc3/3252494.pdf
NLM
Critical Reviews in Therapeutic Drug Carrier Systems [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://repositorio.usp.br/directbitstream/54ed4967-81c0-4c84-b3b6-70a420b8bbc3/3252494.pdf
Vancouver
Critical Reviews in Therapeutic Drug Carrier Systems [Internet]. 2025 ;[citado 2025 dez. 07 ] Available from: https://repositorio.usp.br/directbitstream/54ed4967-81c0-4c84-b3b6-70a420b8bbc3/3252494.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
CARDOSO, Valéria Maria de Oliveira et al. Nanomedicine innovations for lung cancer diagnosis and therapy. ACS Applied Materials and Interfaces, v. 17, n. 9, p. 13197-132209, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsami.4c16840. Acesso em: 07 dez. 2025.
APA
Cardoso, V. M. de O., Bistaffa, M. J., Sterman, R. G., Lima, L. L. P. de, Toldo, G. S., Bernardi, J. C., & Zucolotto, V. (2025). Nanomedicine innovations for lung cancer diagnosis and therapy. ACS Applied Materials and Interfaces, 17( 9), 13197-132209. doi:10.1021/acsami.4c16840
NLM
Cardoso VM de O, Bistaffa MJ, Sterman RG, Lima LLP de, Toldo GS, Bernardi JC, Zucolotto V. Nanomedicine innovations for lung cancer diagnosis and therapy [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 9): 13197-132209.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acsami.4c16840
Vancouver
Cardoso VM de O, Bistaffa MJ, Sterman RG, Lima LLP de, Toldo GS, Bernardi JC, Zucolotto V. Nanomedicine innovations for lung cancer diagnosis and therapy [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 9): 13197-132209.[citado 2025 dez. 07 ] Available from: https://doi.org/10.1021/acsami.4c16840
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ABNT
SOUZA, Adelcio Marques de et al. Analytical model for ballistic 2D nanotransistors. IEEE Open Journal of Nanotechnology, p. 1-11, 2025Tradução . . Disponível em: http://dx.doi.org/10.1109/OJNANO.2025.3598219. Acesso em: 07 dez. 2025.
APA
Souza, A. M. de, Celino, D. R., Ragi, R., & Romero, M. A. (2025). Analytical model for ballistic 2D nanotransistors. IEEE Open Journal of Nanotechnology, 1-11. doi:10.1109/OJNANO.2025.3598219
NLM
Souza AM de, Celino DR, Ragi R, Romero MA. Analytical model for ballistic 2D nanotransistors [Internet]. IEEE Open Journal of Nanotechnology. 2025 ; 1-11.[citado 2025 dez. 07 ] Available from: http://dx.doi.org/10.1109/OJNANO.2025.3598219
Vancouver
Souza AM de, Celino DR, Ragi R, Romero MA. Analytical model for ballistic 2D nanotransistors [Internet]. IEEE Open Journal of Nanotechnology. 2025 ; 1-11.[citado 2025 dez. 07 ] Available from: http://dx.doi.org/10.1109/OJNANO.2025.3598219