Source: Experimental Physiology. Unidade: EEFE
Subjects: TREINAMENTO AERÓBIO, APOPTOSE, CARDIOMEGALIA, MICRORNAS
ABNT
KINDLOVITS, Raquel et al. Molecularmechanisms underlying fructose-induced cardiovascular disease: exercise, metabolic pathways and microRNAs. Experimental Physiology, v. 106, n. 5, p. 1224-1234, 2021Tradução . . Disponível em: https://doi.org/10.1113/EP088845. Acesso em: 07 nov. 2024.APA
Kindlovits, R., Bertoldi, J. M. C. R. J., Rocha, H. N. M., Bento-Bernardes, T., Gomes, J. L. P., Oliveira, E. M. de, et al. (2021). Molecularmechanisms underlying fructose-induced cardiovascular disease: exercise, metabolic pathways and microRNAs. Experimental Physiology, 106( 5), 1224-1234. doi:10.1113/EP088845NLM
Kindlovits R, Bertoldi JMCRJ, Rocha HNM, Bento-Bernardes T, Gomes JLP, Oliveira EM de, Muniz IC, Pereira JF, Fernandes-Santos C, Rocha NG, Nóbrega ACL daa, Medeiros RF. Molecularmechanisms underlying fructose-induced cardiovascular disease: exercise, metabolic pathways and microRNAs [Internet]. Experimental Physiology. 2021 ; 106( 5): 1224-1234.[citado 2024 nov. 07 ] Available from: https://doi.org/10.1113/EP088845Vancouver
Kindlovits R, Bertoldi JMCRJ, Rocha HNM, Bento-Bernardes T, Gomes JLP, Oliveira EM de, Muniz IC, Pereira JF, Fernandes-Santos C, Rocha NG, Nóbrega ACL daa, Medeiros RF. Molecularmechanisms underlying fructose-induced cardiovascular disease: exercise, metabolic pathways and microRNAs [Internet]. Experimental Physiology. 2021 ; 106( 5): 1224-1234.[citado 2024 nov. 07 ] Available from: https://doi.org/10.1113/EP088845