Gaber, A.; Ahmed, O.M.; Khadrawy, Y.A.; Zoheir, K.M.A.; Abo-ELeneen, R.E.; Alblihed, M.A.; Elbakry, A.M.
Mesenchymal Stem Cells and Begacestat Mitigate Amyloid-β 25–35-Induced Cognitive Decline in Rat Dams and Hippocampal Deteriorations in Offspring. Biology 2023, 12, 905.
https://doi.org/10.3390/biology12070905
AMA Style
Gaber A, Ahmed OM, Khadrawy YA, Zoheir KMA, Abo-ELeneen RE, Alblihed MA, Elbakry AM.
Mesenchymal Stem Cells and Begacestat Mitigate Amyloid-β 25–35-Induced Cognitive Decline in Rat Dams and Hippocampal Deteriorations in Offspring. Biology. 2023; 12(7):905.
https://doi.org/10.3390/biology12070905
Chicago/Turabian Style
Gaber, Asmaa, Osama M. Ahmed, Yasser A. Khadrawy, Khairy M. A. Zoheir, Rasha E. Abo-ELeneen, Mohamed A. Alblihed, and Ahlam M. Elbakry.
2023. "Mesenchymal Stem Cells and Begacestat Mitigate Amyloid-β 25–35-Induced Cognitive Decline in Rat Dams and Hippocampal Deteriorations in Offspring" Biology 12, no. 7: 905.
https://doi.org/10.3390/biology12070905
APA Style
Gaber, A., Ahmed, O. M., Khadrawy, Y. A., Zoheir, K. M. A., Abo-ELeneen, R. E., Alblihed, M. A., & Elbakry, A. M.
(2023). Mesenchymal Stem Cells and Begacestat Mitigate Amyloid-β 25–35-Induced Cognitive Decline in Rat Dams and Hippocampal Deteriorations in Offspring. Biology, 12(7), 905.
https://doi.org/10.3390/biology12070905