Chang, C.-C.; Li, H.-H.; Tsou, S.-H.; Hung, H.-C.; Liu, G.-Y.; Korolenko, T.A.; Lai, T.-J.; Ho, Y.-J.; Lin, C.-L.
The Pluripotency Factor Nanog Protects against Neuronal Amyloid β-Induced Toxicity and Oxidative Stress through Insulin Sensitivity Restoration. Cells 2020, 9, 1339.
https://doi.org/10.3390/cells9061339
AMA Style
Chang C-C, Li H-H, Tsou S-H, Hung H-C, Liu G-Y, Korolenko TA, Lai T-J, Ho Y-J, Lin C-L.
The Pluripotency Factor Nanog Protects against Neuronal Amyloid β-Induced Toxicity and Oxidative Stress through Insulin Sensitivity Restoration. Cells. 2020; 9(6):1339.
https://doi.org/10.3390/cells9061339
Chicago/Turabian Style
Chang, Ching-Chi, Hsin-Hua Li, Sing-Hua Tsou, Hui-Chih Hung, Guang-Yaw Liu, Tatiana A. Korolenko, Te-Jen Lai, Ying-Jui Ho, and Chih-Li Lin.
2020. "The Pluripotency Factor Nanog Protects against Neuronal Amyloid β-Induced Toxicity and Oxidative Stress through Insulin Sensitivity Restoration" Cells 9, no. 6: 1339.
https://doi.org/10.3390/cells9061339
APA Style
Chang, C.-C., Li, H.-H., Tsou, S.-H., Hung, H.-C., Liu, G.-Y., Korolenko, T. A., Lai, T.-J., Ho, Y.-J., & Lin, C.-L.
(2020). The Pluripotency Factor Nanog Protects against Neuronal Amyloid β-Induced Toxicity and Oxidative Stress through Insulin Sensitivity Restoration. Cells, 9(6), 1339.
https://doi.org/10.3390/cells9061339