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COSTA NETO, Claudio Miguel da e PARREIRAS-E-SILVA, Lucas Tabajara. Deciphering complexity of GPCR signaling and modulation: implications and perspectives for drug discovery. Clinical Science, v. 139, n. 10, p. 463-477, 2025Tradução . . Disponível em: https://observatorio.fm.usp.br/handle/OPI/87157. Acesso em: 25 fev. 2026.
APA
Costa Neto, C. M. da, & Parreiras-e-Silva, L. T. (2025). Deciphering complexity of GPCR signaling and modulation: implications and perspectives for drug discovery. Clinical Science, 139( 10), 463-477. doi:10.1042/CS20245182
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Costa Neto CM da, Parreiras-e-Silva LT. Deciphering complexity of GPCR signaling and modulation: implications and perspectives for drug discovery [Internet]. Clinical Science. 2025 ; 139( 10): 463-477.[citado 2026 fev. 25 ] Available from: https://observatorio.fm.usp.br/handle/OPI/87157
Vancouver
Costa Neto CM da, Parreiras-e-Silva LT. Deciphering complexity of GPCR signaling and modulation: implications and perspectives for drug discovery [Internet]. Clinical Science. 2025 ; 139( 10): 463-477.[citado 2026 fev. 25 ] Available from: https://observatorio.fm.usp.br/handle/OPI/87157
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LIMA, Anna Flavia R. et al. Endothelin-1 down-regulates nuclear factor erythroid 2-related factor-2 and contributes to perivascular adipose tissue dysfunction in obesity. Clinical Science, v. 138, n. 17, p. 1071-1087, 2024Tradução . . Disponível em: https://doi.org/10.1042/CS20240624. Acesso em: 25 fev. 2026.
APA
Lima, A. F. R., Rodrigues, D., Machado, M. R., Oliveira Neto, J. T. de, Bressan, A. F. M., Pedersoli, C. A., et al. (2024). Endothelin-1 down-regulates nuclear factor erythroid 2-related factor-2 and contributes to perivascular adipose tissue dysfunction in obesity. Clinical Science, 138( 17), 1071-1087. doi:10.1042/CS20240624
NLM
Lima A FR, Rodrigues D, Machado MR, Oliveira Neto JT de, Bressan AFM, Pedersoli CA, Alves JV, Silva Neto JA da, Barros PR de, Dias T B, Garcia LV, Bruder-Nascimento A, Bruder-Nascimento T, Carneiro FS, Leiria LOS, Tostes R de CA, Costa RM da. Endothelin-1 down-regulates nuclear factor erythroid 2-related factor-2 and contributes to perivascular adipose tissue dysfunction in obesity [Internet]. Clinical Science. 2024 ; 138( 17): 1071-1087.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20240624
Vancouver
Lima A FR, Rodrigues D, Machado MR, Oliveira Neto JT de, Bressan AFM, Pedersoli CA, Alves JV, Silva Neto JA da, Barros PR de, Dias T B, Garcia LV, Bruder-Nascimento A, Bruder-Nascimento T, Carneiro FS, Leiria LOS, Tostes R de CA, Costa RM da. Endothelin-1 down-regulates nuclear factor erythroid 2-related factor-2 and contributes to perivascular adipose tissue dysfunction in obesity [Internet]. Clinical Science. 2024 ; 138( 17): 1071-1087.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20240624
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RAQUEL, Hiviny de Ataides et al. "Blood-brain barrier lesion - a novel determinant of autonomic imbalance in heart failure and the effects of exercise training ". Clinical Science, v. 137, n. 15, p. 1049-1066, 2023Tradução . . Disponível em: https://doi.org/10.1042/CS20230489. Acesso em: 25 fev. 2026.
APA
Raquel, H. de A., Perego, S. M., Masson, G. S., Jensen, L., Colquhoun, A., & Michelini, L. C. (2023). "Blood-brain barrier lesion - a novel determinant of autonomic imbalance in heart failure and the effects of exercise training ". Clinical Science, 137( 15), 1049-1066. doi:10.1042/CS20230489
NLM
Raquel H de A, Perego SM, Masson GS, Jensen L, Colquhoun A, Michelini LC. "Blood-brain barrier lesion - a novel determinant of autonomic imbalance in heart failure and the effects of exercise training " [Internet]. Clinical Science. 2023 ; 137( 15): 1049-1066.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20230489
Vancouver
Raquel H de A, Perego SM, Masson GS, Jensen L, Colquhoun A, Michelini LC. "Blood-brain barrier lesion - a novel determinant of autonomic imbalance in heart failure and the effects of exercise training " [Internet]. Clinical Science. 2023 ; 137( 15): 1049-1066.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20230489
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POLONIO, Carolina Manganeli et al. Murine endometrial-derived mesenchymal stem cells suppress experimental autoimmune encephalomyelitis depending on indoleamine-2,3-dioxygenase expression. Clinical Science, v. 135, p. 1065–1082, 2021Tradução . . Disponível em: https://doi.org/10.1042/CS20201544. Acesso em: 25 fev. 2026.
APA
Polonio, C. M., Freitas, C. L. de, Oliveira, M. G. de, Rossato, C., Brandão, W. N., Zanluqui, N. G., et al. (2021). Murine endometrial-derived mesenchymal stem cells suppress experimental autoimmune encephalomyelitis depending on indoleamine-2,3-dioxygenase expression. Clinical Science, 135, 1065–1082. doi:10.1042/CS20201544
NLM
Polonio CM, Freitas CL de, Oliveira MG de, Rossato C, Brandão WN, Zanluqui NG, Oliveira LG de, Mimura LAN, Silva MBB, Calich VLG, Nisenbaum MG, Halpern S, Evangelista L, Maluf M, Perin PM, Czeresnia CE, Peron JPS. Murine endometrial-derived mesenchymal stem cells suppress experimental autoimmune encephalomyelitis depending on indoleamine-2,3-dioxygenase expression [Internet]. Clinical Science. 2021 ; 135 1065–1082.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20201544
Vancouver
Polonio CM, Freitas CL de, Oliveira MG de, Rossato C, Brandão WN, Zanluqui NG, Oliveira LG de, Mimura LAN, Silva MBB, Calich VLG, Nisenbaum MG, Halpern S, Evangelista L, Maluf M, Perin PM, Czeresnia CE, Peron JPS. Murine endometrial-derived mesenchymal stem cells suppress experimental autoimmune encephalomyelitis depending on indoleamine-2,3-dioxygenase expression [Internet]. Clinical Science. 2021 ; 135 1065–1082.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20201544
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SILVA, Priscila de Andrade Ranéia e et al. Inflammatory effect of Bothropstoxin-I from Bothrops jararacussu venom mediated by NLRP3 inflammasome involves ATP and P2X7 receptor. Clinical Science, v. 135, n. 5, p. 687–701, 2021Tradução . . Disponível em: https://doi.org/10.1042/CS20201419. Acesso em: 25 fev. 2026.
APA
Silva, P. de A. R. e, Lima, D. S. de, Luiz, J. P. M., Câmara, N. O. S., Alves Filho, J. C. F., Pontillo, A., et al. (2021). Inflammatory effect of Bothropstoxin-I from Bothrops jararacussu venom mediated by NLRP3 inflammasome involves ATP and P2X7 receptor. Clinical Science, 135( 5), 687–701. doi:10.1042/CS20201419
NLM
Silva P de AR e, Lima DS de, Luiz JPM, Câmara NOS, Alves Filho JCF, Pontillo A, Bortoluci KR, Mauro EF de L. Inflammatory effect of Bothropstoxin-I from Bothrops jararacussu venom mediated by NLRP3 inflammasome involves ATP and P2X7 receptor [Internet]. Clinical Science. 2021 ; 135( 5): 687–701.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20201419
Vancouver
Silva P de AR e, Lima DS de, Luiz JPM, Câmara NOS, Alves Filho JCF, Pontillo A, Bortoluci KR, Mauro EF de L. Inflammatory effect of Bothropstoxin-I from Bothrops jararacussu venom mediated by NLRP3 inflammasome involves ATP and P2X7 receptor [Internet]. Clinical Science. 2021 ; 135( 5): 687–701.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20201419
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DARDI, Patrizia et al. Vena cava presents endothelial dysfunction prior to thoracic aorta in heart failure: the pivotal role of nNOS uncoupling/ oxidative stress. Clinical Science, 2021Tradução . . Disponível em: https://doi.org/10.1042/CS20210810. Acesso em: 25 fev. 2026.
APA
Dardi, P., Perazza, L. R., Couto, G. K., Campos, G. P., Capettini, L. dos S. A., & Rossoni, L. V. (2021). Vena cava presents endothelial dysfunction prior to thoracic aorta in heart failure: the pivotal role of nNOS uncoupling/ oxidative stress. Clinical Science. doi:10.1042/CS20210810
NLM
Dardi P, Perazza LR, Couto GK, Campos GP, Capettini L dos SA, Rossoni LV. Vena cava presents endothelial dysfunction prior to thoracic aorta in heart failure: the pivotal role of nNOS uncoupling/ oxidative stress [Internet]. Clinical Science. 2021 ;[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20210810
Vancouver
Dardi P, Perazza LR, Couto GK, Campos GP, Capettini L dos SA, Rossoni LV. Vena cava presents endothelial dysfunction prior to thoracic aorta in heart failure: the pivotal role of nNOS uncoupling/ oxidative stress [Internet]. Clinical Science. 2021 ;[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20210810
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SILVA, Josiane Fernandes da et al. Lysophosphatidylcholine induces oxidative stress in human endothelial cells via NOX5 activation: implications in atherosclerosis. Clinical Science, v. 135, n. 15, p. 1845-1858, 2021Tradução . . Disponível em: https://doi.org/10.1042/CS20210468. Acesso em: 25 fev. 2026.
APA
Silva, J. F. da, Alves, J. V., Silva Neto, J. A. da, Costa, R. M. da, Neves, K. B., Lopes, R. A. M., et al. (2021). Lysophosphatidylcholine induces oxidative stress in human endothelial cells via NOX5 activation: implications in atherosclerosis. Clinical Science, 135( 15), 1845-1858. doi:10.1042/CS20210468
NLM
Silva JF da, Alves JV, Silva Neto JA da, Costa RM da, Neves KB, Lopes RAM, Carmargo L L, Rios FJ, Montezano AC, Touyz RM, Tostes R de CA. Lysophosphatidylcholine induces oxidative stress in human endothelial cells via NOX5 activation: implications in atherosclerosis [Internet]. Clinical Science. 2021 ; 135( 15): 1845-1858.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20210468
Vancouver
Silva JF da, Alves JV, Silva Neto JA da, Costa RM da, Neves KB, Lopes RAM, Carmargo L L, Rios FJ, Montezano AC, Touyz RM, Tostes R de CA. Lysophosphatidylcholine induces oxidative stress in human endothelial cells via NOX5 activation: implications in atherosclerosis [Internet]. Clinical Science. 2021 ; 135( 15): 1845-1858.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20210468
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MAGALHÃES, Flávio Castro et al. High-volume endurance exercise training stimulates hematopoiesis by increasing ACE NH2-terminal activity. Clinical Science, v. 135, n. 20, p. 2377-2391, 2021Tradução . . Disponível em: https://doi.org/10.1042/CS20210739. Acesso em: 25 fev. 2026.
APA
Magalhães, F. C., Fernandes, T., Bassaneze, V., Mattos, K. C., Schettert, I., Marques, F. L. N., et al. (2021). High-volume endurance exercise training stimulates hematopoiesis by increasing ACE NH2-terminal activity. Clinical Science, 135( 20), 2377-2391. doi:10.1042/CS20210739
NLM
Magalhães FC, Fernandes T, Bassaneze V, Mattos KC, Schettert I, Marques FLN, Krieger JE, Nava R, Barauna VG, Oliveira EM de. High-volume endurance exercise training stimulates hematopoiesis by increasing ACE NH2-terminal activity [Internet]. Clinical Science. 2021 ; 135( 20): 2377-2391.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20210739
Vancouver
Magalhães FC, Fernandes T, Bassaneze V, Mattos KC, Schettert I, Marques FLN, Krieger JE, Nava R, Barauna VG, Oliveira EM de. High-volume endurance exercise training stimulates hematopoiesis by increasing ACE NH2-terminal activity [Internet]. Clinical Science. 2021 ; 135( 20): 2377-2391.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20210739
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FONTES, Milene Tavares et al. Renin-angiotensin system overactivation in perivascular adipose tissue contributes to vascular dysfunction in heart failure. Clinical Science, 2020Tradução . . Disponível em: https://doi.org/10.1042/CS20201099. Acesso em: 25 fev. 2026.
APA
Fontes, M. T., Paula, S. M., Lino, C. A., Senger, N., Couto, G. K., Barreto-Chaves, M. L. M., et al. (2020). Renin-angiotensin system overactivation in perivascular adipose tissue contributes to vascular dysfunction in heart failure. Clinical Science. doi:10.1042/CS20201099
NLM
Fontes MT, Paula SM, Lino CA, Senger N, Couto GK, Barreto-Chaves MLM, Mill JG, Rossoni LV. Renin-angiotensin system overactivation in perivascular adipose tissue contributes to vascular dysfunction in heart failure [Internet]. Clinical Science. 2020 ;[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20201099
Vancouver
Fontes MT, Paula SM, Lino CA, Senger N, Couto GK, Barreto-Chaves MLM, Mill JG, Rossoni LV. Renin-angiotensin system overactivation in perivascular adipose tissue contributes to vascular dysfunction in heart failure [Internet]. Clinical Science. 2020 ;[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20201099
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ALMEIDA, Lucas Ferreira de et al. Role of the renin–angiotensin system in kidney development and programming of adult blood pressure. Clinical Science, v. 134, n. 6, p. 641-656, 2020Tradução . . Disponível em: https://doi.org/10.1042/CS20190765. Acesso em: 25 fev. 2026.
APA
Almeida, L. F. de, Tofteng, S. S., Madsen, K., & Jensen, B. L. (2020). Role of the renin–angiotensin system in kidney development and programming of adult blood pressure. Clinical Science, 134( 6), 641-656. doi:10.1042/CS20190765
NLM
Almeida LF de, Tofteng S S, Madsen K, Jensen B L. Role of the renin–angiotensin system in kidney development and programming of adult blood pressure [Internet]. Clinical Science. 2020 ; 134( 6): 641-656.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20190765
Vancouver
Almeida LF de, Tofteng S S, Madsen K, Jensen B L. Role of the renin–angiotensin system in kidney development and programming of adult blood pressure [Internet]. Clinical Science. 2020 ; 134( 6): 641-656.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20190765
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BRAGA, Tárcio Teodoro et al. NLRP3 gain-of-function in CD4+ T lymphocytes ameliorates experimental autoimmune encephalomyelitis. Clinical Science, v. 133, n. 17, p. 1901-1916, 2019Tradução . . Disponível em: https://doi.org/10.1042/CS20190506. Acesso em: 25 fev. 2026.
APA
Braga, T. T., Brandão, W. N., Azevedo, H., Terra, F. F., Feitosa, A. C. L. M., Pereira, F. V., et al. (2019). NLRP3 gain-of-function in CD4+ T lymphocytes ameliorates experimental autoimmune encephalomyelitis. Clinical Science, 133( 17), 1901-1916. doi:10.1042/CS20190506
NLM
Braga TT, Brandão WN, Azevedo H, Terra FF, Feitosa ACLM, Pereira FV, Oliveira V de A, Hiyane MI, Peron JPS, Câmara NOS. NLRP3 gain-of-function in CD4+ T lymphocytes ameliorates experimental autoimmune encephalomyelitis [Internet]. Clinical Science. 2019 ; 133( 17): 1901-1916.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20190506
Vancouver
Braga TT, Brandão WN, Azevedo H, Terra FF, Feitosa ACLM, Pereira FV, Oliveira V de A, Hiyane MI, Peron JPS, Câmara NOS. NLRP3 gain-of-function in CD4+ T lymphocytes ameliorates experimental autoimmune encephalomyelitis [Internet]. Clinical Science. 2019 ; 133( 17): 1901-1916.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20190506
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ANDRADE, David Campos et al. Ablation of brainstem C1 neurons improves cardiac function in volume overload heart failure. Clinical Science, v. 133, n. 3, p. 393-405, 2019Tradução . . Disponível em: https://doi.org/10.1042/CS20180589. Acesso em: 25 fev. 2026.
APA
Andrade, D. C., Toledo, C., Díaz, H. S., Lucero, C., Álvarez, A. A., Santos, L. M. O., et al. (2019). Ablation of brainstem C1 neurons improves cardiac function in volume overload heart failure. Clinical Science, 133( 3), 393-405. doi:10.1042/CS20180589
NLM
Andrade DC, Toledo C, Díaz HS, Lucero C, Álvarez AA, Santos LMO, Takakura AC, Moreira T dos S, Schultz HD, Marcus NJ, Alcayaga J, Rio RD. Ablation of brainstem C1 neurons improves cardiac function in volume overload heart failure [Internet]. Clinical Science. 2019 ; 133( 3): 393-405.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20180589
Vancouver
Andrade DC, Toledo C, Díaz HS, Lucero C, Álvarez AA, Santos LMO, Takakura AC, Moreira T dos S, Schultz HD, Marcus NJ, Alcayaga J, Rio RD. Ablation of brainstem C1 neurons improves cardiac function in volume overload heart failure [Internet]. Clinical Science. 2019 ; 133( 3): 393-405.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20180589
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SENGER, Nathalia et al. Angiotensin-(1–7) reduces cardiac effects of thyroid hormone by GSK3Β/NFATc3 signaling pathway. Clinical Science, v. 132, n. 11, p. 1117-1133, 2018Tradução . . Disponível em: https://doi.org/10.1042/CS20171606. Acesso em: 25 fev. 2026.
APA
Senger, N., Melo, M. B., Diniz, G. P., Santos, M. J. C. dos, Santos, R. A. S. dos, & Barreto-Chaves, M. L. M. (2018). Angiotensin-(1–7) reduces cardiac effects of thyroid hormone by GSK3Β/NFATc3 signaling pathway. Clinical Science, 132( 11), 1117-1133. doi:10.1042/CS20171606
NLM
Senger N, Melo MB, Diniz GP, Santos MJC dos, Santos RAS dos, Barreto-Chaves MLM. Angiotensin-(1–7) reduces cardiac effects of thyroid hormone by GSK3Β/NFATc3 signaling pathway [Internet]. Clinical Science. 2018 ; 132( 11): 1117-1133.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20171606
Vancouver
Senger N, Melo MB, Diniz GP, Santos MJC dos, Santos RAS dos, Barreto-Chaves MLM. Angiotensin-(1–7) reduces cardiac effects of thyroid hormone by GSK3Β/NFATc3 signaling pathway [Internet]. Clinical Science. 2018 ; 132( 11): 1117-1133.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20171606
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BOISVERT, Naomi C. et al. Hyperfiltration in ubiquitin C-terminal hydrolase L1-deleted mice. Clinical Science, v. 132, n. 13, p. 1453-1470, 2018Tradução . . Disponível em: https://doi.org/10.1042/CS20180085. Acesso em: 25 fev. 2026.
APA
Boisvert, N. C., Holterman, C. E., Thibodeau, J. -F., Nasrallah, R., Kamto, E., Comin, C. H., et al. (2018). Hyperfiltration in ubiquitin C-terminal hydrolase L1-deleted mice. Clinical Science, 132( 13), 1453-1470. doi:10.1042/CS20180085
NLM
Boisvert NC, Holterman CE, Thibodeau J-F, Nasrallah R, Kamto E, Comin CH, Costa L da F, Carter A, Hébert RL, Gutsol A, Cron GO, Lacoste B, Gray DA, Kennedy CR. Hyperfiltration in ubiquitin C-terminal hydrolase L1-deleted mice [Internet]. Clinical Science. 2018 ; 132( 13): 1453-1470.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20180085
Vancouver
Boisvert NC, Holterman CE, Thibodeau J-F, Nasrallah R, Kamto E, Comin CH, Costa L da F, Carter A, Hébert RL, Gutsol A, Cron GO, Lacoste B, Gray DA, Kennedy CR. Hyperfiltration in ubiquitin C-terminal hydrolase L1-deleted mice [Internet]. Clinical Science. 2018 ; 132( 13): 1453-1470.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20180085
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FESTUCCIA, William Tadeu Lara. Turning up the heat against metabolic syndrome and non-alcoholic fatty liver disease. Clinical Science, v. 131, n. 4, p. 327-328, 2017Tradução . . Disponível em: https://doi.org/10.1042/CS20160855. Acesso em: 25 fev. 2026.
APA
Festuccia, W. T. L. (2017). Turning up the heat against metabolic syndrome and non-alcoholic fatty liver disease. Clinical Science, 131( 4), 327-328. doi:10.1042/CS20160855
NLM
Festuccia WTL. Turning up the heat against metabolic syndrome and non-alcoholic fatty liver disease [Internet]. Clinical Science. 2017 ; 131( 4): 327-328.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20160855
Vancouver
Festuccia WTL. Turning up the heat against metabolic syndrome and non-alcoholic fatty liver disease [Internet]. Clinical Science. 2017 ; 131( 4): 327-328.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20160855
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CURI, Rui et al. A past and present overview of macrophage metabolism and functional outcomes. Clinical Science, v. 131, n. 12, p. 1329-1342, 2017Tradução . . Disponível em: https://doi.org/10.1042/CS20170220. Acesso em: 25 fev. 2026.
APA
Curi, R., Mendes, R. de S., Crispin, L. A. de C., Norata, G. D., Sampaio, S. C., & Newsholme, P. (2017). A past and present overview of macrophage metabolism and functional outcomes. Clinical Science, 131( 12), 1329-1342. doi:10.1042/CS20170220
NLM
Curi R, Mendes R de S, Crispin LA de C, Norata GD, Sampaio SC, Newsholme P. A past and present overview of macrophage metabolism and functional outcomes [Internet]. Clinical Science. 2017 ; 131( 12): 1329-1342.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20170220
Vancouver
Curi R, Mendes R de S, Crispin LA de C, Norata GD, Sampaio SC, Newsholme P. A past and present overview of macrophage metabolism and functional outcomes [Internet]. Clinical Science. 2017 ; 131( 12): 1329-1342.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20170220
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DINIZ, Gabriela Placoná et al. Loss of microRNA-22 prevents high-fat diet induced dyslipidemia and increases energy expenditure without affecting cardiac hypertrophy. Clinical Science, v. 131, n. 24, p. 2885-2900, 2017Tradução . . Disponível em: https://doi.org/10.1042/CS20171368. Acesso em: 25 fev. 2026.
APA
Diniz, G. P., Huang, Z. -P., Liu, J., Chen, J., Ding, J., Fonseca, R. I., et al. (2017). Loss of microRNA-22 prevents high-fat diet induced dyslipidemia and increases energy expenditure without affecting cardiac hypertrophy. Clinical Science, 131( 24), 2885-2900. doi:10.1042/CS20171368
NLM
Diniz GP, Huang Z-P, Liu J, Chen J, Ding J, Fonseca RI, Barreto-Chaves MLM, Donato Junior J, Hu X, Wang D-Z. Loss of microRNA-22 prevents high-fat diet induced dyslipidemia and increases energy expenditure without affecting cardiac hypertrophy [Internet]. Clinical Science. 2017 ; 131( 24): 2885-2900.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20171368
Vancouver
Diniz GP, Huang Z-P, Liu J, Chen J, Ding J, Fonseca RI, Barreto-Chaves MLM, Donato Junior J, Hu X, Wang D-Z. Loss of microRNA-22 prevents high-fat diet induced dyslipidemia and increases energy expenditure without affecting cardiac hypertrophy [Internet]. Clinical Science. 2017 ; 131( 24): 2885-2900.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20171368
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MOREIRA, Humberto G et al. Sympathetic nervous activity in patients with acute coronary syndrome: a comparative study of inflammatory biomarkers. Clinical Science, v. 131, n. 9, p. 883-895, 2017Tradução . . Disponível em: https://doi.org/10.1042/CS20170049. Acesso em: 25 fev. 2026.
APA
Moreira, H. G., Lage, R. L., Martinez, D. G., Ferreira-Santos, L., Rondon, M. U., Negrão, C. E., & Nicolau, J. C. (2017). Sympathetic nervous activity in patients with acute coronary syndrome: a comparative study of inflammatory biomarkers. Clinical Science, 131( 9), 883-895. doi:10.1042/CS20170049
NLM
Moreira HG, Lage RL, Martinez DG, Ferreira-Santos L, Rondon MU, Negrão CE, Nicolau JC. Sympathetic nervous activity in patients with acute coronary syndrome: a comparative study of inflammatory biomarkers [Internet]. Clinical Science. 2017 ; 131( 9): 883-895.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20170049
Vancouver
Moreira HG, Lage RL, Martinez DG, Ferreira-Santos L, Rondon MU, Negrão CE, Nicolau JC. Sympathetic nervous activity in patients with acute coronary syndrome: a comparative study of inflammatory biomarkers [Internet]. Clinical Science. 2017 ; 131( 9): 883-895.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20170049
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
FILGUEIRAS, Luciano Ribeiro et al. PAFR in adipose tissue macrophages is associated with anti-inflammatory phenotype and metabolic homoeostasis. Clinical Science, v. 130, n. 8, p. 601-612, 2016Tradução . . Disponível em: https://doi.org/10.1042/CS20150538. Acesso em: 25 fev. 2026.
APA
Filgueiras, L. R., Koga, M. M., Quaresma, P. G., Ishizuka, E. K., Montes, M. B. A., Prada, P. O., et al. (2016). PAFR in adipose tissue macrophages is associated with anti-inflammatory phenotype and metabolic homoeostasis. Clinical Science, 130( 8), 601-612. doi:10.1042/CS20150538
NLM
Filgueiras LR, Koga MM, Quaresma PG, Ishizuka EK, Montes MBA, Prada PO, Saad MJ, Jancar S, Rios FJ. PAFR in adipose tissue macrophages is associated with anti-inflammatory phenotype and metabolic homoeostasis [Internet]. Clinical Science. 2016 ; 130( 8): 601-612.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20150538
Vancouver
Filgueiras LR, Koga MM, Quaresma PG, Ishizuka EK, Montes MBA, Prada PO, Saad MJ, Jancar S, Rios FJ. PAFR in adipose tissue macrophages is associated with anti-inflammatory phenotype and metabolic homoeostasis [Internet]. Clinical Science. 2016 ; 130( 8): 601-612.[citado 2026 fev. 25 ] Available from: https://doi.org/10.1042/CS20150538
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
FLORES, Isadora L et al. EEF1D modulates proliferation and epithelial–mesenchymal transition in oral squamous cell carcinoma. Clinical Science, v. 130, p. 785-799, 2016Tradução . . Disponível em: https://doi.org/10.1042/CS20150646. Acesso em: 25 fev. 2026.
APA
Flores, I. L., Kawahara, R., Miguel, M. C. C., Granato, D. C., Domingues, R. R., Macedo, C. C. S., et al. (2016). EEF1D modulates proliferation and epithelial–mesenchymal transition in oral squamous cell carcinoma. Clinical Science, 130, 785-799. doi:10.1042/CS20150646