Ahmed, Y.M.; Orfali, R.; Abdelwahab, N.S.; Hassan, H.M.; Rateb, M.E.; AboulMagd, A.M.
Partial Synthetic PPARƳ Derivative Ameliorates Aorta Injury in Experimental Diabetic Rats Mediated by Activation of miR-126-5p Pi3k/AKT/PDK 1/mTOR Expression. Pharmaceuticals 2022, 15, 1175.
https://doi.org/10.3390/ph15101175
AMA Style
Ahmed YM, Orfali R, Abdelwahab NS, Hassan HM, Rateb ME, AboulMagd AM.
Partial Synthetic PPARƳ Derivative Ameliorates Aorta Injury in Experimental Diabetic Rats Mediated by Activation of miR-126-5p Pi3k/AKT/PDK 1/mTOR Expression. Pharmaceuticals. 2022; 15(10):1175.
https://doi.org/10.3390/ph15101175
Chicago/Turabian Style
Ahmed, Yasmin M., Raha Orfali, Nada S. Abdelwahab, Hossam M. Hassan, Mostafa E. Rateb, and Asmaa M. AboulMagd.
2022. "Partial Synthetic PPARƳ Derivative Ameliorates Aorta Injury in Experimental Diabetic Rats Mediated by Activation of miR-126-5p Pi3k/AKT/PDK 1/mTOR Expression" Pharmaceuticals 15, no. 10: 1175.
https://doi.org/10.3390/ph15101175
APA Style
Ahmed, Y. M., Orfali, R., Abdelwahab, N. S., Hassan, H. M., Rateb, M. E., & AboulMagd, A. M.
(2022). Partial Synthetic PPARƳ Derivative Ameliorates Aorta Injury in Experimental Diabetic Rats Mediated by Activation of miR-126-5p Pi3k/AKT/PDK 1/mTOR Expression. Pharmaceuticals, 15(10), 1175.
https://doi.org/10.3390/ph15101175