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PINA-LOPES, Neydiana Belize de et al. Ammonia transport mediated by urea transporter A isoforms. Biology Open, v. 14, n. 6, p. 14 , 2025Tradução . . Disponível em: https://doi.org/10.1242/bio.061655. Acesso em: 08 out. 2025.
APA
Pina-Lopes, N. B. de, Rosa, J. K., Silva, R. C. P. da, & Musa-Aziz, R. (2025). Ammonia transport mediated by urea transporter A isoforms. Biology Open, 14( 6), 14 . doi:10.1242/bio.061655
NLM
Pina-Lopes NB de, Rosa JK, Silva RCP da, Musa-Aziz R. Ammonia transport mediated by urea transporter A isoforms [Internet]. Biology Open. 2025 ; 14( 6): 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1242/bio.061655
Vancouver
Pina-Lopes NB de, Rosa JK, Silva RCP da, Musa-Aziz R. Ammonia transport mediated by urea transporter A isoforms [Internet]. Biology Open. 2025 ; 14( 6): 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1242/bio.061655
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SECIO-SILVA, Ayla et al. Hypothyroidism impairs the circadian rhythmicity of clock genes and proteins involved in gut nutrient absorption in female mice. Frontiers in Physiology, v. 16, p. 17 , 2025Tradução . . Disponível em: https://doi.org/10.3389/fphys.2025.1515437. Acesso em: 08 out. 2025.
APA
Secio-Silva, A., Evangelista-Silva, P. H., Emrich, F., Selvatici-Tolentino, L., Ferreira, M., Silva, A. B. de P., et al. (2025). Hypothyroidism impairs the circadian rhythmicity of clock genes and proteins involved in gut nutrient absorption in female mice. Frontiers in Physiology, 16, 17 . doi:10.3389/fphys.2025.1515437
NLM
Secio-Silva A, Evangelista-Silva PH, Emrich F, Selvatici-Tolentino L, Ferreira M, Silva AB de P, Gomes BH, Figueira-Costa TN, Oliveira AG, Peliciari-Garcia RA, Bargi-Souza P, Goulart-Silva F. Hypothyroidism impairs the circadian rhythmicity of clock genes and proteins involved in gut nutrient absorption in female mice [Internet]. Frontiers in Physiology. 2025 ; 16 17 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3389/fphys.2025.1515437
Vancouver
Secio-Silva A, Evangelista-Silva PH, Emrich F, Selvatici-Tolentino L, Ferreira M, Silva AB de P, Gomes BH, Figueira-Costa TN, Oliveira AG, Peliciari-Garcia RA, Bargi-Souza P, Goulart-Silva F. Hypothyroidism impairs the circadian rhythmicity of clock genes and proteins involved in gut nutrient absorption in female mice [Internet]. Frontiers in Physiology. 2025 ; 16 17 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3389/fphys.2025.1515437
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LOPES-GONÇALVES, Guilherme et al. Insights into the effects of apelin-13 on renal function and NHE3 activity following ischemia/reperfusion-induced acute kidney injury. Frontiers in Physiology, v. 16, p. 14 , 2025Tradução . . Disponível em: https://doi.org/10.3389/fphys.2025.1544274. Acesso em: 08 out. 2025.
APA
Lopes-Gonçalves, G., Costa-Pessoa, J. M. da, Ponte, M. C. de, Braz, H. M., & Oliveira-Souza, M. (2025). Insights into the effects of apelin-13 on renal function and NHE3 activity following ischemia/reperfusion-induced acute kidney injury. Frontiers in Physiology, 16, 14 . doi:10.3389/fphys.2025.1544274
NLM
Lopes-Gonçalves G, Costa-Pessoa JM da, Ponte MC de, Braz HM, Oliveira-Souza M. Insights into the effects of apelin-13 on renal function and NHE3 activity following ischemia/reperfusion-induced acute kidney injury [Internet]. Frontiers in Physiology. 2025 ; 16 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3389/fphys.2025.1544274
Vancouver
Lopes-Gonçalves G, Costa-Pessoa JM da, Ponte MC de, Braz HM, Oliveira-Souza M. Insights into the effects of apelin-13 on renal function and NHE3 activity following ischemia/reperfusion-induced acute kidney injury [Internet]. Frontiers in Physiology. 2025 ; 16 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3389/fphys.2025.1544274
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ARRUDA, Adriano Cleis et al. 16/8 Intermittent fasting in mice protects from diet-induced obesity by increasing leptin sensitivity and postprandial thermogenesis. Acta Physiologica, v. 241, n. 5, p. 13 , 2025Tradução . . Disponível em: https://doi.org/10.1111/apha.70036. Acesso em: 08 out. 2025.
APA
Arruda, A. C., Santos, R. B., Freitas- Lima, L. C., Budu, A., Perilhão, M. S., Wasinski, F., et al. (2025). 16/8 Intermittent fasting in mice protects from diet-induced obesity by increasing leptin sensitivity and postprandial thermogenesis. Acta Physiologica, 241( 5), 13 . doi:10.1111/apha.70036
NLM
Arruda AC, Santos RB, Freitas- Lima LC, Budu A, Perilhão MS, Wasinski F, Arthur GM, Guzmán RR, Gomes G, Pesquero JB, Mori MA da S, Araujo RC, Festuccia WTL, Donato Junior J. 16/8 Intermittent fasting in mice protects from diet-induced obesity by increasing leptin sensitivity and postprandial thermogenesis [Internet]. Acta Physiologica. 2025 ; 241( 5): 13 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1111/apha.70036
Vancouver
Arruda AC, Santos RB, Freitas- Lima LC, Budu A, Perilhão MS, Wasinski F, Arthur GM, Guzmán RR, Gomes G, Pesquero JB, Mori MA da S, Araujo RC, Festuccia WTL, Donato Junior J. 16/8 Intermittent fasting in mice protects from diet-induced obesity by increasing leptin sensitivity and postprandial thermogenesis [Internet]. Acta Physiologica. 2025 ; 241( 5): 13 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1111/apha.70036
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MARTINS, Yandara Akamine et al. Streptozotocin and L-Buthionine-Sulfoximine decrease neuron membrane lipid packing and alter insulin signaling. Neurotoxicity Research, v. 43, n. 3, p. 12 , 2025Tradução . . Disponível em: https://doi.org/10.1007/s12640-025-00749-z. Acesso em: 08 out. 2025.
APA
Martins, Y. A., Cardinali, C. A. E. F., Costa, A. P., & Torrão, A. da S. (2025). Streptozotocin and L-Buthionine-Sulfoximine decrease neuron membrane lipid packing and alter insulin signaling. Neurotoxicity Research, 43( 3), 12 . doi:10.1007/s12640-025-00749-z
NLM
Martins YA, Cardinali CAEF, Costa AP, Torrão A da S. Streptozotocin and L-Buthionine-Sulfoximine decrease neuron membrane lipid packing and alter insulin signaling [Internet]. Neurotoxicity Research. 2025 ; 43( 3): 12 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/s12640-025-00749-z
Vancouver
Martins YA, Cardinali CAEF, Costa AP, Torrão A da S. Streptozotocin and L-Buthionine-Sulfoximine decrease neuron membrane lipid packing and alter insulin signaling [Internet]. Neurotoxicity Research. 2025 ; 43( 3): 12 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/s12640-025-00749-z
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MIRANDA, Nicole Castro de Souza et al. Role of substantia Nigra dopaminergic neurons in respiratory modulation and limitations of levodopa in Parkinson's disease. Experimental Neurology, v. 387, p. 13 , 2025Tradução . . Disponível em: https://doi.org/10.1016/j.expneurol.2025.115193. Acesso em: 08 out. 2025.
APA
Miranda, N. C. de S., Aquino, Y. C., Macedo, T. O., Oliveira, L. M., Albernaz-Mariano, K. A., Munhoz, C. D., et al. (2025). Role of substantia Nigra dopaminergic neurons in respiratory modulation and limitations of levodopa in Parkinson's disease. Experimental Neurology, 387, 13 . doi:10.1016/j.expneurol.2025.115193
NLM
Miranda NC de S, Aquino YC, Macedo TO, Oliveira LM, Albernaz-Mariano KA, Munhoz CD, Ramirez J-M, Moreira T dos S, Takakura AC. Role of substantia Nigra dopaminergic neurons in respiratory modulation and limitations of levodopa in Parkinson's disease [Internet]. Experimental Neurology. 2025 ; 387 13 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.expneurol.2025.115193
Vancouver
Miranda NC de S, Aquino YC, Macedo TO, Oliveira LM, Albernaz-Mariano KA, Munhoz CD, Ramirez J-M, Moreira T dos S, Takakura AC. Role of substantia Nigra dopaminergic neurons in respiratory modulation and limitations of levodopa in Parkinson's disease [Internet]. Experimental Neurology. 2025 ; 387 13 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.expneurol.2025.115193
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LEITE, Jaqueline Santos Moreira et al. Liver lipid metabolism, oxidative stress, and inflammation in glutamine-supplemented ob/ob mice. The Journal of Nutritional Biochemistry, v. 138, p. 14 , 2025Tradução . . Disponível em: https://doi.org/10.1016/j.jnutbio.2025.109842. Acesso em: 08 out. 2025.
APA
Leite, J. S. M., Takahashi, H. K., Munhoz, A. C., Curi, R., Cruzat, V., Araujo, L. C. da C., et al. (2025). Liver lipid metabolism, oxidative stress, and inflammation in glutamine-supplemented ob/ob mice. The Journal of Nutritional Biochemistry, 138, 14 . doi:10.1016/j.jnutbio.2025.109842
NLM
Leite JSM, Takahashi HK, Munhoz AC, Curi R, Cruzat V, Araujo LC da C, Vilas-Boas EA, Carvalho CR de O, Donato Junior J, Carpinelli AR. Liver lipid metabolism, oxidative stress, and inflammation in glutamine-supplemented ob/ob mice [Internet]. The Journal of Nutritional Biochemistry. 2025 ; 138 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.jnutbio.2025.109842
Vancouver
Leite JSM, Takahashi HK, Munhoz AC, Curi R, Cruzat V, Araujo LC da C, Vilas-Boas EA, Carvalho CR de O, Donato Junior J, Carpinelli AR. Liver lipid metabolism, oxidative stress, and inflammation in glutamine-supplemented ob/ob mice [Internet]. The Journal of Nutritional Biochemistry. 2025 ; 138 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.jnutbio.2025.109842
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CASTRO, Érique de et al. Fish oil and EPA improve insulin sensitivity, in part through adipocyte mTORC2 activation in diet-induced obese male mice. Molecular Nutrition & Food Research, v. 69, n. 6, 2025Tradução . . Disponível em: https://doi.org/10.1002/mnfr.70001. Acesso em: 08 out. 2025.
APA
Castro, É. de, Vieira, T. dos S., Peixoto, A. S., Leonardi, B. F., Tomazelli, C. A., Lino, C. A., et al. (2025). Fish oil and EPA improve insulin sensitivity, in part through adipocyte mTORC2 activation in diet-induced obese male mice. Molecular Nutrition & Food Research, 69( 6). doi:10.1002/mnfr.70001
NLM
Castro É de, Vieira T dos S, Peixoto AS, Leonardi BF, Tomazelli CA, Lino CA, Oliveira TE, Pessoa NM, Pessoa ÉVM, Abe-Honda MA, Corte NP, Silva Junior LP da, Pires AB, Chaves Filho A de B, Moustaid-Moussa N, Festuccia WTL. Fish oil and EPA improve insulin sensitivity, in part through adipocyte mTORC2 activation in diet-induced obese male mice [Internet]. Molecular Nutrition & Food Research. 2025 ; 69( 6):[citado 2025 out. 08 ] Available from: https://doi.org/10.1002/mnfr.70001
Vancouver
Castro É de, Vieira T dos S, Peixoto AS, Leonardi BF, Tomazelli CA, Lino CA, Oliveira TE, Pessoa NM, Pessoa ÉVM, Abe-Honda MA, Corte NP, Silva Junior LP da, Pires AB, Chaves Filho A de B, Moustaid-Moussa N, Festuccia WTL. Fish oil and EPA improve insulin sensitivity, in part through adipocyte mTORC2 activation in diet-induced obese male mice [Internet]. Molecular Nutrition & Food Research. 2025 ; 69( 6):[citado 2025 out. 08 ] Available from: https://doi.org/10.1002/mnfr.70001
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GUSMÃO, Daniela Oliveira et al. GH-releasing hormone neurons regulate the Hypothalamic-Pituitary-Somatotropic axis via Short-Loop negative feedback. Endocrinology, v. 166, n. 5, 2025Tradução . . Disponível em: https://doi.org/10.1210/endocr/bqaf062. Acesso em: 08 out. 2025.
APA
Gusmão, D. O., Sousa, M. E. de, Sousa, L. M. M. de, Silva, J. N., List, E. O., Kopchick, J. J., et al. (2025). GH-releasing hormone neurons regulate the Hypothalamic-Pituitary-Somatotropic axis via Short-Loop negative feedback. Endocrinology, 166( 5). doi:10.1210/endocr/bqaf062
NLM
Gusmão DO, Sousa ME de, Sousa LMM de, Silva JN, List EO, Kopchick JJ, Frazão R, Donato Junior J. GH-releasing hormone neurons regulate the Hypothalamic-Pituitary-Somatotropic axis via Short-Loop negative feedback [Internet]. Endocrinology. 2025 ; 166( 5):[citado 2025 out. 08 ] Available from: https://doi.org/10.1210/endocr/bqaf062
Vancouver
Gusmão DO, Sousa ME de, Sousa LMM de, Silva JN, List EO, Kopchick JJ, Frazão R, Donato Junior J. GH-releasing hormone neurons regulate the Hypothalamic-Pituitary-Somatotropic axis via Short-Loop negative feedback [Internet]. Endocrinology. 2025 ; 166( 5):[citado 2025 out. 08 ] Available from: https://doi.org/10.1210/endocr/bqaf062
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BIANCHETTI, Maria Eduada Goulart e FERREIRA, Ana Flávia Fernandes e BRITTO, Luiz Roberto Giorgetti de. Inhibition of neuroinflammation by GIBH-130 (AD-16) reduces neurodegeneration, motor deficits, and proinflammatory cytokines in a hemiparkinsonian model. Frontiers in Neuroanatomy, v. 18, p. 12 , 2024Tradução . . Disponível em: https://doi.org/10.3389/fnana.2024.1511951. Acesso em: 08 out. 2025.
APA
Bianchetti, M. E. G., Ferreira, A. F. F., & Britto, L. R. G. de. (2024). Inhibition of neuroinflammation by GIBH-130 (AD-16) reduces neurodegeneration, motor deficits, and proinflammatory cytokines in a hemiparkinsonian model. Frontiers in Neuroanatomy, 18, 12 . doi:10.3389/fnana.2024.1511951
NLM
Bianchetti MEG, Ferreira AFF, Britto LRG de. Inhibition of neuroinflammation by GIBH-130 (AD-16) reduces neurodegeneration, motor deficits, and proinflammatory cytokines in a hemiparkinsonian model [Internet]. Frontiers in Neuroanatomy. 2024 ; 18 12 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3389/fnana.2024.1511951
Vancouver
Bianchetti MEG, Ferreira AFF, Britto LRG de. Inhibition of neuroinflammation by GIBH-130 (AD-16) reduces neurodegeneration, motor deficits, and proinflammatory cytokines in a hemiparkinsonian model [Internet]. Frontiers in Neuroanatomy. 2024 ; 18 12 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3389/fnana.2024.1511951
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METZGER, Martin Andreas e DONATO JUNIOR, José. Emotional contagion builds resilience. Science, v. 385, n. 6713, p. 1045-1046, 2024Tradução . . Disponível em: https://doi.org/10.1126/science.adr9296. Acesso em: 08 out. 2025.
APA
Metzger, M. A., & Donato Junior, J. (2024). Emotional contagion builds resilience. Science, 385( 6713), 1045-1046. doi:10.1126/science.adr9296
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FRANCO, Thaina Maquedo et al. Effects of bradykinin B2 receptor ablation from tyrosine hydroxylase cells on behavioral and motor aspects in male and female mice. International Journal of Molecular Sciences, v. 25, n. 3, p. 14 , 2024Tradução . . Disponível em: https://doi.org/10.3390/ijms25031490. Acesso em: 08 out. 2025.
APA
Franco, T. M., Tavares, M. R., Novaes, L. S., Peixoto-Santos, J. E., Araujo, R. C., Bader, M., et al. (2024). Effects of bradykinin B2 receptor ablation from tyrosine hydroxylase cells on behavioral and motor aspects in male and female mice. International Journal of Molecular Sciences, 25( 3), 14 . doi:10.3390/ijms25031490
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Franco TM, Tavares MR, Novaes LS, Peixoto-Santos JE, Araujo RC, Bader M, Wasinski F, Munhoz CD, Donato Junior J. Effects of bradykinin B2 receptor ablation from tyrosine hydroxylase cells on behavioral and motor aspects in male and female mice [Internet]. International Journal of Molecular Sciences. 2024 ; 25( 3): 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3390/ijms25031490
Vancouver
Franco TM, Tavares MR, Novaes LS, Peixoto-Santos JE, Araujo RC, Bader M, Wasinski F, Munhoz CD, Donato Junior J. Effects of bradykinin B2 receptor ablation from tyrosine hydroxylase cells on behavioral and motor aspects in male and female mice [Internet]. International Journal of Molecular Sciences. 2024 ; 25( 3): 14 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3390/ijms25031490
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ALVARADO, Alembert Eistein Lino et al. Central and peripheral mechanisms underlying respiratory deficits in a mouse model of accelerated senescence. European Journal of Applied Physiology, v. 476, p. 1665-1776, 2024Tradução . . Disponível em: https://doi.org/10.1007/s00424-024-03006-y. Acesso em: 08 out. 2025.
APA
Alvarado, A. E. L., Maia, O. A. de C., Oliveira, M. A. de, Takakura, A. C., Lima, W. T. de, & Moreira, T. dos S. (2024). Central and peripheral mechanisms underlying respiratory deficits in a mouse model of accelerated senescence. European Journal of Applied Physiology, 476, 1665-1776. doi:10.1007/s00424-024-03006-y
NLM
Alvarado AEL, Maia OA de C, Oliveira MA de, Takakura AC, Lima WT de, Moreira T dos S. Central and peripheral mechanisms underlying respiratory deficits in a mouse model of accelerated senescence [Internet]. European Journal of Applied Physiology. 2024 ; 476 1665-1776.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/s00424-024-03006-y
Vancouver
Alvarado AEL, Maia OA de C, Oliveira MA de, Takakura AC, Lima WT de, Moreira T dos S. Central and peripheral mechanisms underlying respiratory deficits in a mouse model of accelerated senescence [Internet]. European Journal of Applied Physiology. 2024 ; 476 1665-1776.[citado 2025 out. 08 ] Available from: https://doi.org/10.1007/s00424-024-03006-y
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SANTANA, Tamires Miranda et al. Trans-resveratrol reduced hepatic oxidative stress in an animal model without inducing an upregulation of nuclear factor erythroid 2-related factor 2. Journal of Clinical Biochemistry and Nutrition, v. 75, n. 1, p. 40-45, 2024Tradução . . Disponível em: https://doi.org/10.3164/jcbn.23-124. Acesso em: 08 out. 2025.
APA
Santana, T. M., Caria, S. J., Carlini, G. C. G., Tavares, M. R., Castro, I. A. de, Rogero, M. M., & Donato Junior, J. (2024). Trans-resveratrol reduced hepatic oxidative stress in an animal model without inducing an upregulation of nuclear factor erythroid 2-related factor 2. Journal of Clinical Biochemistry and Nutrition, 75( 1), 40-45. doi:10.3164/jcbn.23-124
NLM
Santana TM, Caria SJ, Carlini GCG, Tavares MR, Castro IA de, Rogero MM, Donato Junior J. Trans-resveratrol reduced hepatic oxidative stress in an animal model without inducing an upregulation of nuclear factor erythroid 2-related factor 2 [Internet]. Journal of Clinical Biochemistry and Nutrition. 2024 ; 75( 1): 40-45.[citado 2025 out. 08 ] Available from: https://doi.org/10.3164/jcbn.23-124
Vancouver
Santana TM, Caria SJ, Carlini GCG, Tavares MR, Castro IA de, Rogero MM, Donato Junior J. Trans-resveratrol reduced hepatic oxidative stress in an animal model without inducing an upregulation of nuclear factor erythroid 2-related factor 2 [Internet]. Journal of Clinical Biochemistry and Nutrition. 2024 ; 75( 1): 40-45.[citado 2025 out. 08 ] Available from: https://doi.org/10.3164/jcbn.23-124
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CABRAL, Laís M. et al. TNFR1-mediated neuroinflammation is necessary for respiratory deficits observed in 6-hydroxydopamine mouse model of Parkinsońs Disease. Brain Research, v. 1822, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.brainres.2023.148586. Acesso em: 08 out. 2025.
APA
Cabral, L. M., Oliveira, L. M., Miranda, N. C., Kawamoto, E. M., Costa, S. K. P., Moreira, T. S., & Takakura, A. C. (2024). TNFR1-mediated neuroinflammation is necessary for respiratory deficits observed in 6-hydroxydopamine mouse model of Parkinsońs Disease. Brain Research, 1822. doi:10.1016/j.brainres.2023.148586
NLM
Cabral LM, Oliveira LM, Miranda NC, Kawamoto EM, Costa SKP, Moreira TS, Takakura AC. TNFR1-mediated neuroinflammation is necessary for respiratory deficits observed in 6-hydroxydopamine mouse model of Parkinsońs Disease [Internet]. Brain Research. 2024 ; 1822[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.brainres.2023.148586
Vancouver
Cabral LM, Oliveira LM, Miranda NC, Kawamoto EM, Costa SKP, Moreira TS, Takakura AC. TNFR1-mediated neuroinflammation is necessary for respiratory deficits observed in 6-hydroxydopamine mouse model of Parkinsońs Disease [Internet]. Brain Research. 2024 ; 1822[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.brainres.2023.148586
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SOUZA, Gabriel Orefice de e SANTOS, Willian Oliveira dos e DONATO JUNIOR, José. Ironing out obesity. Trends in Endocrinology and Metabolism, v. 35, n. 6, p. 456-458, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.tem.2024.04.001. Acesso em: 08 out. 2025.
APA
Souza, G. O. de, Santos, W. O. dos, & Donato Junior, J. (2024). Ironing out obesity. Trends in Endocrinology and Metabolism, 35( 6), 456-458. doi:10.1016/j.tem.2024.04.001
NLM
Souza GO de, Santos WO dos, Donato Junior J. Ironing out obesity [Internet]. Trends in Endocrinology and Metabolism. 2024 ; 35( 6): 456-458.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.tem.2024.04.001
Vancouver
Souza GO de, Santos WO dos, Donato Junior J. Ironing out obesity [Internet]. Trends in Endocrinology and Metabolism. 2024 ; 35( 6): 456-458.[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.tem.2024.04.001
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FERREIRA, Ana Flávia Fernandes et al. Neurodegeneration and glial morphological changes are both prevented by TRPM2 inhibition during the progression of a Parkinson's disease mouse model. Experimental Neurology, v. 377, p. 15 , 2024Tradução . . Disponível em: https://doi.org/10.1016/j.expneurol.2024.114780. Acesso em: 08 out. 2025.
APA
Ferreira, A. F. F., Ulrich, H., Feng, Z. -P., Sun, H. -S., & Britto, L. R. G. de. (2024). Neurodegeneration and glial morphological changes are both prevented by TRPM2 inhibition during the progression of a Parkinson's disease mouse model. Experimental Neurology, 377, 15 . doi:10.1016/j.expneurol.2024.114780
NLM
Ferreira AFF, Ulrich H, Feng Z-P, Sun H-S, Britto LRG de. Neurodegeneration and glial morphological changes are both prevented by TRPM2 inhibition during the progression of a Parkinson's disease mouse model [Internet]. Experimental Neurology. 2024 ; 377 15 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.expneurol.2024.114780
Vancouver
Ferreira AFF, Ulrich H, Feng Z-P, Sun H-S, Britto LRG de. Neurodegeneration and glial morphological changes are both prevented by TRPM2 inhibition during the progression of a Parkinson's disease mouse model [Internet]. Experimental Neurology. 2024 ; 377 15 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1016/j.expneurol.2024.114780
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GUSMÃO, Daniela Oliveira et al. Characterization and regulation of the neonatal growth hormone surge. Endocrinology, v. 165, n. 12, p. 12 , 2024Tradução . . Disponível em: https://doi.org/10.1210/endocr/bqae140. Acesso em: 08 out. 2025.
APA
Gusmão, D. O., Sousa, L. M. M. de, Sousa, M. E. S. de, Rusew, S. J. dos R., Rusew, S. J. dos R., List, E. O., et al. (2024). Characterization and regulation of the neonatal growth hormone surge. Endocrinology, 165( 12), 12 . doi:10.1210/endocr/bqae140
NLM
Gusmão DO, Sousa LMM de, Sousa MES de, Rusew SJ dos R, Rusew SJ dos R, List EO, Kopchick JJ, Gomes AF, Campideli-Santana AC, Szawka RE, Donato Junior J. Characterization and regulation of the neonatal growth hormone surge [Internet]. Endocrinology. 2024 ; 165( 12): 12 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1210/endocr/bqae140
Vancouver
Gusmão DO, Sousa LMM de, Sousa MES de, Rusew SJ dos R, Rusew SJ dos R, List EO, Kopchick JJ, Gomes AF, Campideli-Santana AC, Szawka RE, Donato Junior J. Characterization and regulation of the neonatal growth hormone surge [Internet]. Endocrinology. 2024 ; 165( 12): 12 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1210/endocr/bqae140
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
BIANCO, Vanessa Del et al. Aerobic exercise training protects against insulin resistance, despite low-sodium diet-induced increased inflammation and visceral adiposity. International Journal of Molecular Sciences ISSN:1422-0067, v. 25, n. 18, p. 24 , 2024Tradução . . Disponível em: https://doi.org/10.3390/ijms251810179. Acesso em: 08 out. 2025.
APA
Bianco, V. D., Ferreira, G. da S., Bochi, A. P. G., Pinto, P. R., Rodrigues, L. G., Furukawa, L. N. S., et al. (2024). Aerobic exercise training protects against insulin resistance, despite low-sodium diet-induced increased inflammation and visceral adiposity. International Journal of Molecular Sciences ISSN:1422-0067, 25( 18), 24 . doi:10.3390/ijms251810179
NLM
Bianco VD, Ferreira G da S, Bochi APG, Pinto PR, Rodrigues LG, Furukawa LNS, Okamoto MM, Almeida JA, Silveira LKR da, Santos AS, Bispo KCS, Silva AA da, Velosa APP, Teodoro WPR, Nakandakare ER, Corrêa-Giannella ML, Capelozzi VL, Machado UF, Catanozi S. Aerobic exercise training protects against insulin resistance, despite low-sodium diet-induced increased inflammation and visceral adiposity [Internet]. International Journal of Molecular Sciences ISSN:1422-0067. 2024 ; 25( 18): 24 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3390/ijms251810179
Vancouver
Bianco VD, Ferreira G da S, Bochi APG, Pinto PR, Rodrigues LG, Furukawa LNS, Okamoto MM, Almeida JA, Silveira LKR da, Santos AS, Bispo KCS, Silva AA da, Velosa APP, Teodoro WPR, Nakandakare ER, Corrêa-Giannella ML, Capelozzi VL, Machado UF, Catanozi S. Aerobic exercise training protects against insulin resistance, despite low-sodium diet-induced increased inflammation and visceral adiposity [Internet]. International Journal of Molecular Sciences ISSN:1422-0067. 2024 ; 25( 18): 24 .[citado 2025 out. 08 ] Available from: https://doi.org/10.3390/ijms251810179
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
BEZERRA, Filipe Menezes et al. The pattern of GH action in the mouse brain. Endocrinology ISSN:1945-7170, v. 165, n. 7, p. 16 , 2024Tradução . . Disponível em: https://doi.org/10.1210/endocr/bqae057. Acesso em: 08 out. 2025.
APA
Bezerra, F. M., Wasinski, F., Nunes, A. P., Bernardes, E. S., Santos, S. N. dos, Silva, F. F. A. da, et al. (2024). The pattern of GH action in the mouse brain. Endocrinology ISSN:1945-7170, 165( 7), 16 . doi:10.1210/endocr/bqae057
NLM
Bezerra FM, Wasinski F, Nunes AP, Bernardes ES, Santos SN dos, Silva FFA da, Cibele N. Peroni, Oliveira JE, Kopchick JJ, Brown RSE, Fernandez G, Francesco PND, Perelló M, Soares CRJ, Donato Junior J. The pattern of GH action in the mouse brain [Internet]. Endocrinology ISSN:1945-7170. 2024 ; 165( 7): 16 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1210/endocr/bqae057
Vancouver
Bezerra FM, Wasinski F, Nunes AP, Bernardes ES, Santos SN dos, Silva FFA da, Cibele N. Peroni, Oliveira JE, Kopchick JJ, Brown RSE, Fernandez G, Francesco PND, Perelló M, Soares CRJ, Donato Junior J. The pattern of GH action in the mouse brain [Internet]. Endocrinology ISSN:1945-7170. 2024 ; 165( 7): 16 .[citado 2025 out. 08 ] Available from: https://doi.org/10.1210/endocr/bqae057