Lee, S.-Y.; Kim, J.C.; Choi, M.R.; Song, J.; Kim, M.; Chang, S.-H.; Kim, J.S.; Park, J.-S.; Lee, S.-R.
KBN2202, a Salicylic Acid Derivative, Preserves Neuronal Architecture, Enhances Neurogenesis, Attenuates Amyloid and Inflammatory Pathology, and Restores Recognition Memory in 5xFAD Mice at an Advanced Stage of AD Pathophysiology. Int. J. Mol. Sci. 2025, 26, 10942.
https://doi.org/10.3390/ijms262210942
AMA Style
Lee S-Y, Kim JC, Choi MR, Song J, Kim M, Chang S-H, Kim JS, Park J-S, Lee S-R.
KBN2202, a Salicylic Acid Derivative, Preserves Neuronal Architecture, Enhances Neurogenesis, Attenuates Amyloid and Inflammatory Pathology, and Restores Recognition Memory in 5xFAD Mice at an Advanced Stage of AD Pathophysiology. International Journal of Molecular Sciences. 2025; 26(22):10942.
https://doi.org/10.3390/ijms262210942
Chicago/Turabian Style
Lee, Sun-Young, Jong Chul Kim, Mi Ran Choi, Jiseo Song, Moonhang Kim, Seok-Hwan Chang, Jong Sung Kim, Joon-Suk Park, and Sang-Rae Lee.
2025. "KBN2202, a Salicylic Acid Derivative, Preserves Neuronal Architecture, Enhances Neurogenesis, Attenuates Amyloid and Inflammatory Pathology, and Restores Recognition Memory in 5xFAD Mice at an Advanced Stage of AD Pathophysiology" International Journal of Molecular Sciences 26, no. 22: 10942.
https://doi.org/10.3390/ijms262210942
APA Style
Lee, S.-Y., Kim, J. C., Choi, M. R., Song, J., Kim, M., Chang, S.-H., Kim, J. S., Park, J.-S., & Lee, S.-R.
(2025). KBN2202, a Salicylic Acid Derivative, Preserves Neuronal Architecture, Enhances Neurogenesis, Attenuates Amyloid and Inflammatory Pathology, and Restores Recognition Memory in 5xFAD Mice at an Advanced Stage of AD Pathophysiology. International Journal of Molecular Sciences, 26(22), 10942.
https://doi.org/10.3390/ijms262210942