Amić, A.; Dimitrić Marković, J.M.; Marković, Z.; Milenković, D.; Milanović, Ž.; Antonijević, M.; Mastiľák Cagardová, D.; Rodríguez-Guerra Pedregal, J.
Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress. Antioxidants 2021, 10, 1303.
https://doi.org/10.3390/antiox10081303
AMA Style
Amić A, Dimitrić Marković JM, Marković Z, Milenković D, Milanović Ž, Antonijević M, Mastiľák Cagardová D, Rodríguez-Guerra Pedregal J.
Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress. Antioxidants. 2021; 10(8):1303.
https://doi.org/10.3390/antiox10081303
Chicago/Turabian Style
Amić, Ana, Jasmina M. Dimitrić Marković, Zoran Marković, Dejan Milenković, Žiko Milanović, Marko Antonijević, Denisa Mastiľák Cagardová, and Jaime Rodríguez-Guerra Pedregal.
2021. "Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress" Antioxidants 10, no. 8: 1303.
https://doi.org/10.3390/antiox10081303
APA Style
Amić, A., Dimitrić Marković, J. M., Marković, Z., Milenković, D., Milanović, Ž., Antonijević, M., Mastiľák Cagardová, D., & Rodríguez-Guerra Pedregal, J.
(2021). Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress. Antioxidants, 10(8), 1303.
https://doi.org/10.3390/antiox10081303