Hsieh, Y.-C.; Dai, Y.-C.; Cheng, K.-T.; Yang, W.-T.; Ramani, M.V.; Subbaraju, G.V.; Chen, Y.-J.; Chang, C.-C.
Blockade of the SRC/STAT3/BCL-2 Signaling Axis Sustains the Cytotoxicity in Human Colorectal Cancer Cell Lines Induced by Dehydroxyhispolon Methyl Ether. Biomedicines 2023, 11, 2530.
https://doi.org/10.3390/biomedicines11092530
AMA Style
Hsieh Y-C, Dai Y-C, Cheng K-T, Yang W-T, Ramani MV, Subbaraju GV, Chen Y-J, Chang C-C.
Blockade of the SRC/STAT3/BCL-2 Signaling Axis Sustains the Cytotoxicity in Human Colorectal Cancer Cell Lines Induced by Dehydroxyhispolon Methyl Ether. Biomedicines. 2023; 11(9):2530.
https://doi.org/10.3390/biomedicines11092530
Chicago/Turabian Style
Hsieh, Ya-Chu, Yuan-Chang Dai, Kur-Ta Cheng, Wei-Ting Yang, Modukuri V. Ramani, Gottumukkala V. Subbaraju, Yi-Ju Chen, and Chia-Che Chang.
2023. "Blockade of the SRC/STAT3/BCL-2 Signaling Axis Sustains the Cytotoxicity in Human Colorectal Cancer Cell Lines Induced by Dehydroxyhispolon Methyl Ether" Biomedicines 11, no. 9: 2530.
https://doi.org/10.3390/biomedicines11092530
APA Style
Hsieh, Y.-C., Dai, Y.-C., Cheng, K.-T., Yang, W.-T., Ramani, M. V., Subbaraju, G. V., Chen, Y.-J., & Chang, C.-C.
(2023). Blockade of the SRC/STAT3/BCL-2 Signaling Axis Sustains the Cytotoxicity in Human Colorectal Cancer Cell Lines Induced by Dehydroxyhispolon Methyl Ether. Biomedicines, 11(9), 2530.
https://doi.org/10.3390/biomedicines11092530