Martinez-Arroyo, O.; Flores-Chova, A.; Mendez-Debaets, M.; Garcia-Ferran, L.; Escrivá, L.; Forner, M.J.; Redón, J.; Cortes, R.; Ortega, A.
Inhibiting miR-200a-3p Increases Sirtuin 1 and Mitigates Kidney Injury in a Tubular Cell Model of Diabetes and Hypertension-Related Renal Damage. Biomolecules 2025, 15, 995.
https://doi.org/10.3390/biom15070995
AMA Style
Martinez-Arroyo O, Flores-Chova A, Mendez-Debaets M, Garcia-Ferran L, Escrivá L, Forner MJ, Redón J, Cortes R, Ortega A.
Inhibiting miR-200a-3p Increases Sirtuin 1 and Mitigates Kidney Injury in a Tubular Cell Model of Diabetes and Hypertension-Related Renal Damage. Biomolecules. 2025; 15(7):995.
https://doi.org/10.3390/biom15070995
Chicago/Turabian Style
Martinez-Arroyo, Olga, Ana Flores-Chova, Marta Mendez-Debaets, Laia Garcia-Ferran, Lesley Escrivá, Maria Jose Forner, Josep Redón, Raquel Cortes, and Ana Ortega.
2025. "Inhibiting miR-200a-3p Increases Sirtuin 1 and Mitigates Kidney Injury in a Tubular Cell Model of Diabetes and Hypertension-Related Renal Damage" Biomolecules 15, no. 7: 995.
https://doi.org/10.3390/biom15070995
APA Style
Martinez-Arroyo, O., Flores-Chova, A., Mendez-Debaets, M., Garcia-Ferran, L., Escrivá, L., Forner, M. J., Redón, J., Cortes, R., & Ortega, A.
(2025). Inhibiting miR-200a-3p Increases Sirtuin 1 and Mitigates Kidney Injury in a Tubular Cell Model of Diabetes and Hypertension-Related Renal Damage. Biomolecules, 15(7), 995.
https://doi.org/10.3390/biom15070995