Chen, H.-H.; Tseng, T.-L.; Li, H.-F.; Hsieh, Y.-T.; Tran, T.T.; Wu, Y.-L.; Lin, H.
ST32da, a Novel Salvia miltiorrhiza-Derived ATF3 Inducer, Alleviates Obesity-Related Diabetic Nephropathy in Mouse Models. Cells 2025, 14, 1893.
https://doi.org/10.3390/cells14231893
AMA Style
Chen H-H, Tseng T-L, Li H-F, Hsieh Y-T, Tran TT, Wu Y-L, Lin H.
ST32da, a Novel Salvia miltiorrhiza-Derived ATF3 Inducer, Alleviates Obesity-Related Diabetic Nephropathy in Mouse Models. Cells. 2025; 14(23):1893.
https://doi.org/10.3390/cells14231893
Chicago/Turabian Style
Chen, Hsi-Hsien, Tzu-Ling Tseng, Hsiao-Fen Li, Ya-Ting Hsieh, Tu Tuan Tran, Yueh-Lin Wu, and Heng Lin.
2025. "ST32da, a Novel Salvia miltiorrhiza-Derived ATF3 Inducer, Alleviates Obesity-Related Diabetic Nephropathy in Mouse Models" Cells 14, no. 23: 1893.
https://doi.org/10.3390/cells14231893
APA Style
Chen, H.-H., Tseng, T.-L., Li, H.-F., Hsieh, Y.-T., Tran, T. T., Wu, Y.-L., & Lin, H.
(2025). ST32da, a Novel Salvia miltiorrhiza-Derived ATF3 Inducer, Alleviates Obesity-Related Diabetic Nephropathy in Mouse Models. Cells, 14(23), 1893.
https://doi.org/10.3390/cells14231893