Yang, J.-T.; Lee, I.-N.; Chen, C.-H.; Lu, F.-J.; Chung, C.-Y.; Lee, M.-H.; Cheng, Y.-C.; Chen, K.-T.; Peng, J.-Y.; Chen, C.-H.
Gallic Acid Enhances the Anti-Cancer Effect of Temozolomide in Human Glioma Cell Line via Inhibition of Akt and p38-MAPK Pathway. Processes 2022, 10, 448.
https://doi.org/10.3390/pr10030448
AMA Style
Yang J-T, Lee I-N, Chen C-H, Lu F-J, Chung C-Y, Lee M-H, Cheng Y-C, Chen K-T, Peng J-Y, Chen C-H.
Gallic Acid Enhances the Anti-Cancer Effect of Temozolomide in Human Glioma Cell Line via Inhibition of Akt and p38-MAPK Pathway. Processes. 2022; 10(3):448.
https://doi.org/10.3390/pr10030448
Chicago/Turabian Style
Yang, Jen-Tsung, I-Neng Lee, Chun-Han Chen, Fung-Jou Lu, Chiu-Yen Chung, Ming-Hsueh Lee, Yu-Ching Cheng, Kuo-Tai Chen, Jyun-Yu Peng, and Ching-Hsein Chen.
2022. "Gallic Acid Enhances the Anti-Cancer Effect of Temozolomide in Human Glioma Cell Line via Inhibition of Akt and p38-MAPK Pathway" Processes 10, no. 3: 448.
https://doi.org/10.3390/pr10030448
APA Style
Yang, J.-T., Lee, I.-N., Chen, C.-H., Lu, F.-J., Chung, C.-Y., Lee, M.-H., Cheng, Y.-C., Chen, K.-T., Peng, J.-Y., & Chen, C.-H.
(2022). Gallic Acid Enhances the Anti-Cancer Effect of Temozolomide in Human Glioma Cell Line via Inhibition of Akt and p38-MAPK Pathway. Processes, 10(3), 448.
https://doi.org/10.3390/pr10030448