Wu, Y.-L.; Lin, H.; Li, H.-F.; Don, M.-J.; King, P.-C.; Chen, H.-H.
Salvia miltiorrhiza Extract and Individual Synthesized Component Derivatives Induce Activating-Transcription-Factor-3-Mediated Anti-Obesity Effects and Attenuate Obesity-Induced Metabolic Disorder by Suppressing C/EBPα in High-Fat-Induced Obese Mice. Cells 2022, 11, 1022.
https://doi.org/10.3390/cells11061022
AMA Style
Wu Y-L, Lin H, Li H-F, Don M-J, King P-C, Chen H-H.
Salvia miltiorrhiza Extract and Individual Synthesized Component Derivatives Induce Activating-Transcription-Factor-3-Mediated Anti-Obesity Effects and Attenuate Obesity-Induced Metabolic Disorder by Suppressing C/EBPα in High-Fat-Induced Obese Mice. Cells. 2022; 11(6):1022.
https://doi.org/10.3390/cells11061022
Chicago/Turabian Style
Wu, Yueh-Lin, Heng Lin, Hsiao-Fen Li, Ming-Jaw Don, Pei-Chih King, and Hsi-Hsien Chen.
2022. "Salvia miltiorrhiza Extract and Individual Synthesized Component Derivatives Induce Activating-Transcription-Factor-3-Mediated Anti-Obesity Effects and Attenuate Obesity-Induced Metabolic Disorder by Suppressing C/EBPα in High-Fat-Induced Obese Mice" Cells 11, no. 6: 1022.
https://doi.org/10.3390/cells11061022
APA Style
Wu, Y.-L., Lin, H., Li, H.-F., Don, M.-J., King, P.-C., & Chen, H.-H.
(2022). Salvia miltiorrhiza Extract and Individual Synthesized Component Derivatives Induce Activating-Transcription-Factor-3-Mediated Anti-Obesity Effects and Attenuate Obesity-Induced Metabolic Disorder by Suppressing C/EBPα in High-Fat-Induced Obese Mice. Cells, 11(6), 1022.
https://doi.org/10.3390/cells11061022