El-Sherbiny, M.; Fahmy, E.K.; Eisa, N.H.; Said, E.; Elkattawy, H.A.; Ebrahim, H.A.; Elsherbiny, N.M.; Ghoneim, F.M.
Nanogold Particles Suppresses 5-Flurouracil-Induced Renal Injury: An Insight into the Modulation of Nrf-2 and Its Downstream Targets, HO-1 and γ-GCS. Molecules 2021, 26, 7684.
https://doi.org/10.3390/molecules26247684
AMA Style
El-Sherbiny M, Fahmy EK, Eisa NH, Said E, Elkattawy HA, Ebrahim HA, Elsherbiny NM, Ghoneim FM.
Nanogold Particles Suppresses 5-Flurouracil-Induced Renal Injury: An Insight into the Modulation of Nrf-2 and Its Downstream Targets, HO-1 and γ-GCS. Molecules. 2021; 26(24):7684.
https://doi.org/10.3390/molecules26247684
Chicago/Turabian Style
El-Sherbiny, Mohamed, Eslam K. Fahmy, Nada H. Eisa, Eman Said, Hany A. Elkattawy, Hasnaa Ali Ebrahim, Nehal M. Elsherbiny, and Fatma M. Ghoneim.
2021. "Nanogold Particles Suppresses 5-Flurouracil-Induced Renal Injury: An Insight into the Modulation of Nrf-2 and Its Downstream Targets, HO-1 and γ-GCS" Molecules 26, no. 24: 7684.
https://doi.org/10.3390/molecules26247684
APA Style
El-Sherbiny, M., Fahmy, E. K., Eisa, N. H., Said, E., Elkattawy, H. A., Ebrahim, H. A., Elsherbiny, N. M., & Ghoneim, F. M.
(2021). Nanogold Particles Suppresses 5-Flurouracil-Induced Renal Injury: An Insight into the Modulation of Nrf-2 and Its Downstream Targets, HO-1 and γ-GCS. Molecules, 26(24), 7684.
https://doi.org/10.3390/molecules26247684