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DI FLORA, Daniele Castro et al. The dual role of cGAS-STING signaling in COVID-19: implications for therapy. Cells, v. 14, n. 5, 2025Tradução . . Disponível em: https://doi.org/10.3390/cells14050362. Acesso em: 21 jan. 2026.
APA
Di Flora, D. C., Lara, J. P. Z., Dionizio, A., & Buzalaf, M. A. R. (2025). The dual role of cGAS-STING signaling in COVID-19: implications for therapy. Cells, 14( 5). doi:10.3390/cells14050362
NLM
Di Flora DC, Lara JPZ, Dionizio A, Buzalaf MAR. The dual role of cGAS-STING signaling in COVID-19: implications for therapy [Internet]. Cells. 2025 ; 14( 5):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells14050362
Vancouver
Di Flora DC, Lara JPZ, Dionizio A, Buzalaf MAR. The dual role of cGAS-STING signaling in COVID-19: implications for therapy [Internet]. Cells. 2025 ; 14( 5):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells14050362
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VIEIRA, Willians Fernando et al. The role of exercise on glial cell activity in neuropathic pain management. Cells, v. 14, n. 7, p. 20 , 2025Tradução . . Disponível em: https://doi.org/10.3390/cells14070487. Acesso em: 21 jan. 2026.
APA
Vieira, W. F., Real, C. C., Martins, D. O., & Chacur, M. (2025). The role of exercise on glial cell activity in neuropathic pain management. Cells, 14( 7), 20 . doi:10.3390/cells14070487
NLM
Vieira WF, Real CC, Martins DO, Chacur M. The role of exercise on glial cell activity in neuropathic pain management [Internet]. Cells. 2025 ; 14( 7): 20 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells14070487
Vancouver
Vieira WF, Real CC, Martins DO, Chacur M. The role of exercise on glial cell activity in neuropathic pain management [Internet]. Cells. 2025 ; 14( 7): 20 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells14070487
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PIMENTA, Luciana de Araujo et al. Formyl Peptide Receptors 1 and 2: Essential for Immunomodulation of Crotoxin in Human Macrophages, Unrelated to Cellular Entry. Cells, 2025Tradução . . Disponível em: https://doi.org/10.3390/cells14151159. Acesso em: 21 jan. 2026.
APA
Pimenta, L. de A., Kato, E. E., Sobral, A. C. M., Duarte, E. L., Lamy, M. T., Pasqualoto, K. F. M., & Sampaio, S. C. (2025). Formyl Peptide Receptors 1 and 2: Essential for Immunomodulation of Crotoxin in Human Macrophages, Unrelated to Cellular Entry. Cells. doi:10.3390/cells14151159
NLM
Pimenta L de A, Kato EE, Sobral ACM, Duarte EL, Lamy MT, Pasqualoto KFM, Sampaio SC. Formyl Peptide Receptors 1 and 2: Essential for Immunomodulation of Crotoxin in Human Macrophages, Unrelated to Cellular Entry [Internet]. Cells. 2025 ;[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells14151159
Vancouver
Pimenta L de A, Kato EE, Sobral ACM, Duarte EL, Lamy MT, Pasqualoto KFM, Sampaio SC. Formyl Peptide Receptors 1 and 2: Essential for Immunomodulation of Crotoxin in Human Macrophages, Unrelated to Cellular Entry [Internet]. Cells. 2025 ;[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells14151159
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FALCIONI, Renan et al. Hyperspectral and chlorophyll fluorescence analyses of comparative leaf surfaces reveal cellular influences on leaf optical properties in Tradescantia plants. Cells, v. 13, p. 1-30, 2024Tradução . . Disponível em: https://doi.org/10.3390/cells13110952. Acesso em: 21 jan. 2026.
APA
Falcioni, R., Antunes, W. C., Oliveira, R. B. de, Chicati, M. L., Demattê, J. A. M., & Nanni, M. R. (2024). Hyperspectral and chlorophyll fluorescence analyses of comparative leaf surfaces reveal cellular influences on leaf optical properties in Tradescantia plants. Cells, 13, 1-30. doi:10.3390/cells13110952
NLM
Falcioni R, Antunes WC, Oliveira RB de, Chicati ML, Demattê JAM, Nanni MR. Hyperspectral and chlorophyll fluorescence analyses of comparative leaf surfaces reveal cellular influences on leaf optical properties in Tradescantia plants [Internet]. Cells. 2024 ; 13 1-30.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13110952
Vancouver
Falcioni R, Antunes WC, Oliveira RB de, Chicati ML, Demattê JAM, Nanni MR. Hyperspectral and chlorophyll fluorescence analyses of comparative leaf surfaces reveal cellular influences on leaf optical properties in Tradescantia plants [Internet]. Cells. 2024 ; 13 1-30.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13110952
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ALVES, Paula Ketilly Nascimento et al. Leucine supplementation prevents the development of skeletal muscle dysfunction in a rat model of HFpEF. Cells, v. 13, n. 6, p. 17 , 2024Tradução . . Disponível em: https://doi.org/10.3390/cells13060502. Acesso em: 21 jan. 2026.
APA
Alves, P. K. N., Schauer, A., Augstein, A., Jarabo, M. -E. P., Männel, A., Barthel, P., et al. (2024). Leucine supplementation prevents the development of skeletal muscle dysfunction in a rat model of HFpEF. Cells, 13( 6), 17 . doi:10.3390/cells13060502
NLM
Alves PKN, Schauer A, Augstein A, Jarabo M-EP, Männel A, Barthel P, Vahle B, Linke A, Adams V, Moriscot AS. Leucine supplementation prevents the development of skeletal muscle dysfunction in a rat model of HFpEF [Internet]. Cells. 2024 ; 13( 6): 17 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13060502
Vancouver
Alves PKN, Schauer A, Augstein A, Jarabo M-EP, Männel A, Barthel P, Vahle B, Linke A, Adams V, Moriscot AS. Leucine supplementation prevents the development of skeletal muscle dysfunction in a rat model of HFpEF [Internet]. Cells. 2024 ; 13( 6): 17 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13060502
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SANTANA, Monique de Fátima Mello et al. Proteomic profiling of HDL in newly diagnosed breast cancer based on tumor molecular classification and clinical stage of disease. Cells, v. 13, p. 1-19 art. 1327, 2024Tradução . . Disponível em: https://dx.doi.org/10.3390/cells13161327. Acesso em: 21 jan. 2026.
APA
Santana, M. de F. M., Sawada, M. I. B. A. C., Souza Junior, D. R. de, Giacaglia, M. B., Reis, M., Xavier, J., et al. (2024). Proteomic profiling of HDL in newly diagnosed breast cancer based on tumor molecular classification and clinical stage of disease. Cells, 13, 1-19 art. 1327. doi:10.3390/cells13161327
NLM
Santana M de FM, Sawada MIBAC, Souza Junior DR de, Giacaglia MB, Reis M, Xavier J, Giannella MLCC, Soriano FG, Gebrim LH, Ronsein GE, Passarelli M. Proteomic profiling of HDL in newly diagnosed breast cancer based on tumor molecular classification and clinical stage of disease [Internet]. Cells. 2024 ; 13 1-19 art. 1327.[citado 2026 jan. 21 ] Available from: https://dx.doi.org/10.3390/cells13161327
Vancouver
Santana M de FM, Sawada MIBAC, Souza Junior DR de, Giacaglia MB, Reis M, Xavier J, Giannella MLCC, Soriano FG, Gebrim LH, Ronsein GE, Passarelli M. Proteomic profiling of HDL in newly diagnosed breast cancer based on tumor molecular classification and clinical stage of disease [Internet]. Cells. 2024 ; 13 1-19 art. 1327.[citado 2026 jan. 21 ] Available from: https://dx.doi.org/10.3390/cells13161327
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SEPÚLVEDA, Paulina et al. Thyroid hormone supplementation restores cognitive deficit, insulin signaling, and neuroinflammation in the hippocampus of a sporadic Alzheimer’s-like disease rat model. Cells, v. 13, n. 21, p. 20 , 2024Tradução . . Disponível em: https://doi.org/10.3390/cells13211793. Acesso em: 21 jan. 2026.
APA
Sepúlveda, P., Ferreira, A. F. F., Sandoval, C., Nunes, M. T., & Torrão, A. da S. (2024). Thyroid hormone supplementation restores cognitive deficit, insulin signaling, and neuroinflammation in the hippocampus of a sporadic Alzheimer’s-like disease rat model. Cells, 13( 21), 20 . doi:10.3390/cells13211793
NLM
Sepúlveda P, Ferreira AFF, Sandoval C, Nunes MT, Torrão A da S. Thyroid hormone supplementation restores cognitive deficit, insulin signaling, and neuroinflammation in the hippocampus of a sporadic Alzheimer’s-like disease rat model [Internet]. Cells. 2024 ; 13( 21): 20 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13211793
Vancouver
Sepúlveda P, Ferreira AFF, Sandoval C, Nunes MT, Torrão A da S. Thyroid hormone supplementation restores cognitive deficit, insulin signaling, and neuroinflammation in the hippocampus of a sporadic Alzheimer’s-like disease rat model [Internet]. Cells. 2024 ; 13( 21): 20 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13211793
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COSTA, Anderson Luís da et al. The Relationship between HERV, Interleukin, and Transcription Factor Expression in ZIKV Infected versus Uninfected Trophoblastic Cells. Cells, v. 13, n. 17, p. 15 , 2024Tradução . . Disponível em: https://doi.org/10.3390/cells13171491. Acesso em: 21 jan. 2026.
APA
Costa, A. L. da, Prieto-Oliveira, P., Duarte-Barbosa, M., Andreata-Santos, R., Peter, C. M., Brito, T., et al. (2024). The Relationship between HERV, Interleukin, and Transcription Factor Expression in ZIKV Infected versus Uninfected Trophoblastic Cells. Cells, 13( 17), 15 . doi:10.3390/cells13171491
NLM
Costa AL da, Prieto-Oliveira P, Duarte-Barbosa M, Andreata-Santos R, Peter CM, Brito T, Antoneli F, Durães-Carvalho R, Briones MRS, Maricato JT, Machado DJ, Janini LMR, Zanotto PM de A. The Relationship between HERV, Interleukin, and Transcription Factor Expression in ZIKV Infected versus Uninfected Trophoblastic Cells [Internet]. Cells. 2024 ; 13( 17): 15 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13171491
Vancouver
Costa AL da, Prieto-Oliveira P, Duarte-Barbosa M, Andreata-Santos R, Peter CM, Brito T, Antoneli F, Durães-Carvalho R, Briones MRS, Maricato JT, Machado DJ, Janini LMR, Zanotto PM de A. The Relationship between HERV, Interleukin, and Transcription Factor Expression in ZIKV Infected versus Uninfected Trophoblastic Cells [Internet]. Cells. 2024 ; 13( 17): 15 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13171491
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MELO, Luana Felix de et al. Decellularized bovine skeletal muscle scaffolds: structural characterization and preliminary cytocompatibility evaluation. Cells, v. 13, n. 8, p. 1-17, 2024Tradução . . Disponível em: https://doi.org/10.3390/cells13080688. Acesso em: 21 jan. 2026.
APA
Melo, L. F. de, Almeida, G. H. D. R., Azarias, F. R., Carreira, A. C. O., Ferreira, C. S. A., Ferreira, A. J. P., et al. (2024). Decellularized bovine skeletal muscle scaffolds: structural characterization and preliminary cytocompatibility evaluation. Cells, 13( 8), 1-17. doi:10.3390/cells13080688
NLM
Melo LF de, Almeida GHDR, Azarias FR, Carreira ACO, Ferreira CSA, Ferreira AJP, Pereira E de SBM, Pomini KT, Castro MVM de, Silva LMD, Maria DA, Rici REG. Decellularized bovine skeletal muscle scaffolds: structural characterization and preliminary cytocompatibility evaluation [Internet]. Cells. 2024 ; 13( 8): 1-17.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13080688
Vancouver
Melo LF de, Almeida GHDR, Azarias FR, Carreira ACO, Ferreira CSA, Ferreira AJP, Pereira E de SBM, Pomini KT, Castro MVM de, Silva LMD, Maria DA, Rici REG. Decellularized bovine skeletal muscle scaffolds: structural characterization and preliminary cytocompatibility evaluation [Internet]. Cells. 2024 ; 13( 8): 1-17.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13080688
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FERREIRA, Davi Azevedo et al. Evaluation of anti-inflammatory activity of the new cardiotonic steroid γ-benzylidene digoxin 8 (BD-8) in mice. Cells, v. 13, n. 18, 2024Tradução . . Disponível em: https://doi.org/10.3390/cells13181568. Acesso em: 21 jan. 2026.
APA
Ferreira, D. A., Medeiros, A. B. A., Soares, M. M., Lima, É. de A., Oliveira, G. C. S. L. de, Leite, M. B. da S., et al. (2024). Evaluation of anti-inflammatory activity of the new cardiotonic steroid γ-benzylidene digoxin 8 (BD-8) in mice. Cells, 13( 18). doi:10.3390/cells13181568
NLM
Ferreira DA, Medeiros ABA, Soares MM, Lima É de A, Oliveira GCSL de, Leite MB da S, Machado MV, Villar JAFP, Barbosa LA, Moura MT, Rodrigues-Mascarenhas S, Scavone C. Evaluation of anti-inflammatory activity of the new cardiotonic steroid γ-benzylidene digoxin 8 (BD-8) in mice [Internet]. Cells. 2024 ; 13( 18):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13181568
Vancouver
Ferreira DA, Medeiros ABA, Soares MM, Lima É de A, Oliveira GCSL de, Leite MB da S, Machado MV, Villar JAFP, Barbosa LA, Moura MT, Rodrigues-Mascarenhas S, Scavone C. Evaluation of anti-inflammatory activity of the new cardiotonic steroid γ-benzylidene digoxin 8 (BD-8) in mice [Internet]. Cells. 2024 ; 13( 18):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells13181568
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ALMEIDA, Gustavo Henrique Doná Rodrigues et al. Perfusion and ultrasonication produce a decellularized porcine whole-ovary scaffold with a preserved microarchitecture. Cells, v. 12, n. 14, p. 1-20, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12141864. Acesso em: 21 jan. 2026.
APA
Almeida, G. H. D. R., Silva Júnior, L. N. da, Gibin, M. S., Santos, H. dos, Pereira, B. de O. H., Pinho, L. B. M., et al. (2023). Perfusion and ultrasonication produce a decellularized porcine whole-ovary scaffold with a preserved microarchitecture. Cells, 12( 14), 1-20. doi:10.3390/cells12141864
NLM
Almeida GHDR, Silva Júnior LN da, Gibin MS, Santos H dos, Pereira B de OH, Pinho LBM, Baesso ML, Sato F, Hernandes L, Long CR, Relly L, Miglino MA, Carreira ACO. Perfusion and ultrasonication produce a decellularized porcine whole-ovary scaffold with a preserved microarchitecture [Internet]. Cells. 2023 ; 12( 14): 1-20.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12141864
Vancouver
Almeida GHDR, Silva Júnior LN da, Gibin MS, Santos H dos, Pereira B de OH, Pinho LBM, Baesso ML, Sato F, Hernandes L, Long CR, Relly L, Miglino MA, Carreira ACO. Perfusion and ultrasonication produce a decellularized porcine whole-ovary scaffold with a preserved microarchitecture [Internet]. Cells. 2023 ; 12( 14): 1-20.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12141864
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OLIVEIRA-CARAMEZ, Maria Luiza de et al. Evidence for epistatic interaction between HLA-G and LILRB1 in the pathogenesis of nonsegmental vitiligo. Cells, v. 12, n. 4, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12040630. Acesso em: 21 jan. 2026.
APA
Oliveira-Caramez, M. L. de, Veiga-Castelli, L., Souza, A. S., Cardili, R. N., Courtin, D., Santos, M. J. S. F. L., et al. (2023). Evidence for epistatic interaction between HLA-G and LILRB1 in the pathogenesis of nonsegmental vitiligo. Cells, 12( 4). doi:10.3390/cells12040630
NLM
Oliveira-Caramez ML de, Veiga-Castelli L, Souza AS, Cardili RN, Courtin D, Santos MJSFL, Donadi EA, Giuliatti S, Sabbagh A, Castelli EC, Mendes Junior CT. Evidence for epistatic interaction between HLA-G and LILRB1 in the pathogenesis of nonsegmental vitiligo [Internet]. Cells. 2023 ; 12( 4):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12040630
Vancouver
Oliveira-Caramez ML de, Veiga-Castelli L, Souza AS, Cardili RN, Courtin D, Santos MJSFL, Donadi EA, Giuliatti S, Sabbagh A, Castelli EC, Mendes Junior CT. Evidence for epistatic interaction between HLA-G and LILRB1 in the pathogenesis of nonsegmental vitiligo [Internet]. Cells. 2023 ; 12( 4):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12040630
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DI FLORA, Daniele Castro et al. Analysis of plasma proteins involved in inflammation, immune response/complement system, and blood coagulation upon admission of COVID-19 patients to hospital may help to predict the prognosis of the disease. Cells, v. 12, n. 12, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12121601. Acesso em: 21 jan. 2026.
APA
Di Flora, D. C., Dionizio, A., Pereira, H. A. B. da S., Garbieri, T. F., Grizzo, L. T., Dionisio, T. J., et al. (2023). Analysis of plasma proteins involved in inflammation, immune response/complement system, and blood coagulation upon admission of COVID-19 patients to hospital may help to predict the prognosis of the disease. Cells, 12( 12). doi:10.3390/cells12121601
NLM
Di Flora DC, Dionizio A, Pereira HAB da S, Garbieri TF, Grizzo LT, Dionisio TJ, Leite A de L, Silva-Costa LC, Buzalaf NR, Reis FN, Pereira VBR, Rosa DMC, Santos CF dos, Buzalaf MAR. Analysis of plasma proteins involved in inflammation, immune response/complement system, and blood coagulation upon admission of COVID-19 patients to hospital may help to predict the prognosis of the disease [Internet]. Cells. 2023 ; 12( 12):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12121601
Vancouver
Di Flora DC, Dionizio A, Pereira HAB da S, Garbieri TF, Grizzo LT, Dionisio TJ, Leite A de L, Silva-Costa LC, Buzalaf NR, Reis FN, Pereira VBR, Rosa DMC, Santos CF dos, Buzalaf MAR. Analysis of plasma proteins involved in inflammation, immune response/complement system, and blood coagulation upon admission of COVID-19 patients to hospital may help to predict the prognosis of the disease [Internet]. Cells. 2023 ; 12( 12):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12121601
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OLIVEIRA, Brenner Kássio Ferreira de et al. Amazonia phytotherapy reduces ischemia and reperfusion injury in the kidneys. Cells, v. 12, n. Ju 2023, p. 1-15, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12131688. Acesso em: 21 jan. 2026.
APA
Oliveira, B. K. F. de, Silva, E. de O., Ventura, S., Vieira, G. H. F., Victoria, C. D. de P., Volpini, R. A., & Vattimo, M. de F. F. (2023). Amazonia phytotherapy reduces ischemia and reperfusion injury in the kidneys. Cells, 12( Ju 2023), 1-15. doi:10.3390/cells12131688
NLM
Oliveira BKF de, Silva E de O, Ventura S, Vieira GHF, Victoria CD de P, Volpini RA, Vattimo M de FF. Amazonia phytotherapy reduces ischemia and reperfusion injury in the kidneys [Internet]. Cells. 2023 ; 12( Ju 2023): 1-15.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12131688
Vancouver
Oliveira BKF de, Silva E de O, Ventura S, Vieira GHF, Victoria CD de P, Volpini RA, Vattimo M de FF. Amazonia phytotherapy reduces ischemia and reperfusion injury in the kidneys [Internet]. Cells. 2023 ; 12( Ju 2023): 1-15.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12131688
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CAETANO, Marcos A. F. et al. Butyrate protects myenteric neurons loss in mice following experimental ulcerative colitis. Cells, v. 12, n. 13, p. 1-23, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12131672. Acesso em: 21 jan. 2026.
APA
Caetano, M. A. F., Magalhães, H. I. R., Duarte, J. R. L., Conceição, L. B., & Castelucci, P. (2023). Butyrate protects myenteric neurons loss in mice following experimental ulcerative colitis. Cells, 12( 13), 1-23. doi:10.3390/cells12131672
NLM
Caetano MAF, Magalhães HIR, Duarte JRL, Conceição LB, Castelucci P. Butyrate protects myenteric neurons loss in mice following experimental ulcerative colitis [Internet]. Cells. 2023 ; 12( 13): 1-23.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12131672
Vancouver
Caetano MAF, Magalhães HIR, Duarte JRL, Conceição LB, Castelucci P. Butyrate protects myenteric neurons loss in mice following experimental ulcerative colitis [Internet]. Cells. 2023 ; 12( 13): 1-23.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12131672
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SANDRI, Silvana et al. Role of Annexin A1 Secreted by Neutrophils in Melanoma Metastasis. Cells, v. 12, p. 1-19 art. 425, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12030425. Acesso em: 21 jan. 2026.
APA
Sandri, S., Hebeda, C. B., Broering, M. F., Silva, M. de P., Moredo, L. F., Silva, M. J. de B. e, et al. (2023). Role of Annexin A1 Secreted by Neutrophils in Melanoma Metastasis. Cells, 12, 1-19 art. 425. doi:10.3390/cells12030425
NLM
Sandri S, Hebeda CB, Broering MF, Silva M de P, Moredo LF, Silva MJ de B e, Molina AS, Pinto CAL, Duprat Neto JP, Reutelingsperger CP, Gil CD, Farsky SHP. Role of Annexin A1 Secreted by Neutrophils in Melanoma Metastasis [Internet]. Cells. 2023 ; 12 1-19 art. 425.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12030425
Vancouver
Sandri S, Hebeda CB, Broering MF, Silva M de P, Moredo LF, Silva MJ de B e, Molina AS, Pinto CAL, Duprat Neto JP, Reutelingsperger CP, Gil CD, Farsky SHP. Role of Annexin A1 Secreted by Neutrophils in Melanoma Metastasis [Internet]. Cells. 2023 ; 12 1-19 art. 425.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12030425
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ALVES, Paula Ketilly Nascimento et al. Leucine supplementation improves diastolic function in HFpEF by HDAC4 inhibition. Cells, v. 12, n. 21, p. 24 , 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12212561. Acesso em: 21 jan. 2026.
APA
Alves, P. K. N., Schauer, A., Augstein, A., Männel, A., Barthel, P., Joachim, D., et al. (2023). Leucine supplementation improves diastolic function in HFpEF by HDAC4 inhibition. Cells, 12( 21), 24 . doi:10.3390/cells12212561
NLM
Alves PKN, Schauer A, Augstein A, Männel A, Barthel P, Joachim D, Friedrich J, Prieto ME, Linke A, Adams V, Moriscot AS. Leucine supplementation improves diastolic function in HFpEF by HDAC4 inhibition [Internet]. Cells. 2023 ; 12( 21): 24 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12212561
Vancouver
Alves PKN, Schauer A, Augstein A, Männel A, Barthel P, Joachim D, Friedrich J, Prieto ME, Linke A, Adams V, Moriscot AS. Leucine supplementation improves diastolic function in HFpEF by HDAC4 inhibition [Internet]. Cells. 2023 ; 12( 21): 24 .[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12212561
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SOUZA, William Danilo Fernandes de e FONSECA, Denise Morais da e SARTORI, Alexandrina. COVID-19 and Multiple Sclerosis: a complex relationship possibly aggravated by Low Vitamin D levels. Cells, v. 12, n. 5, p. 1-28, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12050684. Acesso em: 21 jan. 2026.
APA
Souza, W. D. F. de, Fonseca, D. M. da, & Sartori, A. (2023). COVID-19 and Multiple Sclerosis: a complex relationship possibly aggravated by Low Vitamin D levels. Cells, 12( 5), 1-28. doi:10.3390/cells12050684
NLM
Souza WDF de, Fonseca DM da, Sartori A. COVID-19 and Multiple Sclerosis: a complex relationship possibly aggravated by Low Vitamin D levels [Internet]. Cells. 2023 ; 12( 5): 1-28.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12050684
Vancouver
Souza WDF de, Fonseca DM da, Sartori A. COVID-19 and Multiple Sclerosis: a complex relationship possibly aggravated by Low Vitamin D levels [Internet]. Cells. 2023 ; 12( 5): 1-28.[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12050684
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ABNT
SOUZA, Gabriel Orefice de et al. mTORC1 signaling in AgRP neurons is not required to induce major neuroendocrine adaptations to food restriction. Cells, v. 12, n. 20, p. 17 , 2023Tradução . . Disponível em: https://repositorio.usp.br/directbitstream/54a8af38-0118-46fd-a7ae-d9f06d3df018/mTORC1%20Signaling%20in%20AgRP%20Neurons%20Is%20Not%20Required%20to%20Induce%20Major%20Neuroendocrine%20Adaptations%20to%20Food%20Restriction.pdf. Acesso em: 21 jan. 2026.
APA
Souza, G. O. de, Teixeira, P. D. S., Camara, N. O. S., & Donato Junior, J. (2023). mTORC1 signaling in AgRP neurons is not required to induce major neuroendocrine adaptations to food restriction. Cells, 12( 20), 17 . doi:10.3390/cells12202442
NLM
Souza GO de, Teixeira PDS, Camara NOS, Donato Junior J. mTORC1 signaling in AgRP neurons is not required to induce major neuroendocrine adaptations to food restriction [Internet]. Cells. 2023 ; 12( 20): 17 .[citado 2026 jan. 21 ] Available from: https://repositorio.usp.br/directbitstream/54a8af38-0118-46fd-a7ae-d9f06d3df018/mTORC1%20Signaling%20in%20AgRP%20Neurons%20Is%20Not%20Required%20to%20Induce%20Major%20Neuroendocrine%20Adaptations%20to%20Food%20Restriction.pdf
Vancouver
Souza GO de, Teixeira PDS, Camara NOS, Donato Junior J. mTORC1 signaling in AgRP neurons is not required to induce major neuroendocrine adaptations to food restriction [Internet]. Cells. 2023 ; 12( 20): 17 .[citado 2026 jan. 21 ] Available from: https://repositorio.usp.br/directbitstream/54a8af38-0118-46fd-a7ae-d9f06d3df018/mTORC1%20Signaling%20in%20AgRP%20Neurons%20Is%20Not%20Required%20to%20Induce%20Major%20Neuroendocrine%20Adaptations%20to%20Food%20Restriction.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
FORATORI-JUNIOR, Gerson Aparecido et al. Is there a difference in the proteomic profile of stimulated and unstimulated saliva samples from pregnant women with/without obesity and periodontitis?. Cells, v. 12, n. 10, 2023Tradução . . Disponível em: https://doi.org/10.3390/cells12101389. Acesso em: 21 jan. 2026.
APA
Foratori-Junior, G. A., Ventura, T. M. O., Grizzo, L. T., Jesuino, B. G., Castilho, A. V. S. S., Buzalaf, M. A. R., & Sales Peres, S. H. de C. (2023). Is there a difference in the proteomic profile of stimulated and unstimulated saliva samples from pregnant women with/without obesity and periodontitis? Cells, 12( 10). doi:10.3390/cells12101389
NLM
Foratori-Junior GA, Ventura TMO, Grizzo LT, Jesuino BG, Castilho AVSS, Buzalaf MAR, Sales Peres SH de C. Is there a difference in the proteomic profile of stimulated and unstimulated saliva samples from pregnant women with/without obesity and periodontitis? [Internet]. Cells. 2023 ; 12( 10):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12101389
Vancouver
Foratori-Junior GA, Ventura TMO, Grizzo LT, Jesuino BG, Castilho AVSS, Buzalaf MAR, Sales Peres SH de C. Is there a difference in the proteomic profile of stimulated and unstimulated saliva samples from pregnant women with/without obesity and periodontitis? [Internet]. Cells. 2023 ; 12( 10):[citado 2026 jan. 21 ] Available from: https://doi.org/10.3390/cells12101389