Wang, J.; Chang, Z.; Lin, S.; Sha, G.; Zeng, W.; Huang, Q.; Deng, Q.; Wang, S.; Hu, M.; Xia, J.
FTO-Eci1 Axis Mediates Exercise-Induced Cardioprotection in Pressure Overload Mice. Biomolecules 2026, 16, 98.
https://doi.org/10.3390/biom16010098
AMA Style
Wang J, Chang Z, Lin S, Sha G, Zeng W, Huang Q, Deng Q, Wang S, Hu M, Xia J.
FTO-Eci1 Axis Mediates Exercise-Induced Cardioprotection in Pressure Overload Mice. Biomolecules. 2026; 16(1):98.
https://doi.org/10.3390/biom16010098
Chicago/Turabian Style
Wang, Jinyun, Zaoshang Chang, Shuo Lin, Guangyuan Sha, Wenyan Zeng, Qirong Huang, Qibin Deng, Shen Wang, Min Hu, and Jingbo Xia.
2026. "FTO-Eci1 Axis Mediates Exercise-Induced Cardioprotection in Pressure Overload Mice" Biomolecules 16, no. 1: 98.
https://doi.org/10.3390/biom16010098
APA Style
Wang, J., Chang, Z., Lin, S., Sha, G., Zeng, W., Huang, Q., Deng, Q., Wang, S., Hu, M., & Xia, J.
(2026). FTO-Eci1 Axis Mediates Exercise-Induced Cardioprotection in Pressure Overload Mice. Biomolecules, 16(1), 98.
https://doi.org/10.3390/biom16010098