Taha, M.; Elazab, S.T.; Badawy, A.M.; Saati, A.A.; Qusty, N.F.; Al-Kushi, A.G.; Sarhan, A.; Osman, A.; Farage, A.E.
Activation of SIRT-1 Pathway by Nanoceria Sheds Light on Its Ameliorative Effect on Doxorubicin-Induced Cognitive Impairment (Chemobrain): Restraining Its Neuroinflammation, Synaptic Dysplasticity and Apoptosis. Pharmaceuticals 2022, 15, 918.
https://doi.org/10.3390/ph15080918
AMA Style
Taha M, Elazab ST, Badawy AM, Saati AA, Qusty NF, Al-Kushi AG, Sarhan A, Osman A, Farage AE.
Activation of SIRT-1 Pathway by Nanoceria Sheds Light on Its Ameliorative Effect on Doxorubicin-Induced Cognitive Impairment (Chemobrain): Restraining Its Neuroinflammation, Synaptic Dysplasticity and Apoptosis. Pharmaceuticals. 2022; 15(8):918.
https://doi.org/10.3390/ph15080918
Chicago/Turabian Style
Taha, Medhat, Sara T. Elazab, Alaa. M. Badawy, Abdullah A. Saati, Naeem F. Qusty, Abdullah G. Al-Kushi, Anas Sarhan, Amira Osman, and Amira E. Farage.
2022. "Activation of SIRT-1 Pathway by Nanoceria Sheds Light on Its Ameliorative Effect on Doxorubicin-Induced Cognitive Impairment (Chemobrain): Restraining Its Neuroinflammation, Synaptic Dysplasticity and Apoptosis" Pharmaceuticals 15, no. 8: 918.
https://doi.org/10.3390/ph15080918
APA Style
Taha, M., Elazab, S. T., Badawy, A. M., Saati, A. A., Qusty, N. F., Al-Kushi, A. G., Sarhan, A., Osman, A., & Farage, A. E.
(2022). Activation of SIRT-1 Pathway by Nanoceria Sheds Light on Its Ameliorative Effect on Doxorubicin-Induced Cognitive Impairment (Chemobrain): Restraining Its Neuroinflammation, Synaptic Dysplasticity and Apoptosis. Pharmaceuticals, 15(8), 918.
https://doi.org/10.3390/ph15080918