Fig. 1. Effects of LG on the cell viability and apoptosis in human oral squamous carcinoma HN22 cells.
Fig. 2. Effects of LG on cell cycle distribution and cell cycle regulation protein expression in HN22 cells.
Fig. 3. Generation of ROS and defect of MMP by LG treatment in HN22 cells.
Fig. 4. Effects of LG on protein expression and multi-caspases activation related to apoptosis.
References
- Alrushaid, S., Davies, N. M., Martinez, S. E. and Sayre, C. L. 2016. Pharmacological characterization of Liquiritigenin, a chiral flavonoid in licorice. Res. Pharm. Sci. 11, 355-365. https://doi.org/10.4103/1735-5362.192484
- Ariyasu, D., Yoshida, H. and Hasegawa, Y. 2017. Endoplasmic Reticulum (ER) stress and endocrine disorders. Int. J. Mol. Sci. 18.
- Belmokhtar, C. A., Hillion, J. and Segal-Bendirdjian, E. 2001. Staurosporine induces apoptosis through both caspase-dependent and caspase-independent mechanisms. Oncogene 20, 3354-3362. https://doi.org/10.1038/sj.onc.1204436
- Bundela, S., Sharma, A. and Bisen, P. S. 2014. Potential therapeutic targets for oral cancer: ADM, TP53, EGFR, LYN, CTLA4, SKIL, CTGF, CD70. PLoS One 9, e102610. https://doi.org/10.1371/journal.pone.0102610
- Chen, J. 2016. The Cell-Cycle Arrest and Apoptotic Functions of p53 in Tumor Initiation and Progression. Cold Spring Harb. Perspect. Med. 6, a026104. https://doi.org/10.1101/cshperspect.a026104
- Degli Esposti, M. and Dive, C. 2003. Mitochondrial membrane permeabilisation by Bax/Bak. Biochem. Biophys. Res. Commun. 304, 455-461. https://doi.org/10.1016/S0006-291X(03)00617-X
- Dickinson, B. C. and Chang, C. J. 2011. Chemistry and biology of reactive oxygen species in signaling or stress responses. Nat. Chem. Biol. 7, 504-511. https://doi.org/10.1038/nchembio.607
- Elmore, S. 2007. Apoptosis: a review of programmed cell death. Toxicol. Pathol. 35, 495-516. https://doi.org/10.1080/01926230701320337
- Fulda, S. and Debatin, K. M. 2006. Extrinsic versus intrinsic apoptosis pathways in anticancer chemotherapy. Oncogene 25, 4798-4811. https://doi.org/10.1038/sj.onc.1209608
- Ge, G., Yan, Y. and Cai, H. 2017. Ginsenoside Rh2 inhibited proliferation by inducing ROS Mediated ER stress dependent apoptosis in lung cancer cells. Biol. Pharm. Bull. 40, 2117-2124. https://doi.org/10.1248/bpb.b17-00463
- Green, D. R. and Kroemer, G. 2004. The pathophysiology of mitochondrial cell death. Science 305, 626-629. https://doi.org/10.1126/science.1099320
- Hassan, M., Watari, H., AbuAlmaaty, A., Ohba, Y. and Sakuragi, N. 2014. Apoptosis and molecular targeting therapy in cancer. Biomed. Res. Int. 2014, 150845.
- Hata, A. N., Engelman, J. A. and Faber, A. C. 2015. The BCL2 Family: Key mediators of the apoptotic response to targeted anticancer therapeutics. Cancer Discov. 5, 475-487. https://doi.org/10.1158/2159-8290.CD-15-0011
- Huang, C. H. and Chan, W. H. 2017. Protective effects of Liquiritigenin against citrinin-triggered, oxidative-stressmediated apoptosis and disruption of embryonic development in mouse blastocysts. Int. J. Mol. Sci. 18, pii:E2538.
- Kardeh, S., Ashkani-Esfahani, S. and Alizadeh, A. M. 2014. Paradoxical action of reactive oxygen species in creation and therapy of cancer. Eur. J. Pharmacol. 735, 150-168. https://doi.org/10.1016/j.ejphar.2014.04.023
- Kishimoto, K., Yoshida, S., Ibaragi, S., Yoshioka, N., Hu, G. F. and Sasaki, A. 2014. Neamine inhibits oral cancer progression by suppressing angiogenin-mediated angiogenesis and cancer cell proliferation. Anticancer Res. 34, 2113-2121.
- Kumar, M., Nanavati, R., Modi, T. G. and Dobariya, C. 2016. Oral cancer: Etiology and risk factors: A review. J. Cancer Res. Ther. 12, 458-463. https://doi.org/10.4103/0973-1482.186696
- Lee, S. H., Meng, X. W., Flatten, K. S., Loegering, D. A. and Kaufmann, S. H. 2013. Phosphatidylserine exposure during apoptosis reflects bidirectional trafficking between plasma membrane and cytoplasm. Cell Death Differ. 20, 64-76. https://doi.org/10.1038/cdd.2012.93
- Leibowitz, B. and Yu, J. 2010. Mitochondrial signaling in cell death via the Bcl-2 family. Cancer Biol. Ther. 9, 417-422. https://doi.org/10.4161/cbt.9.6.11392
- Liu, C., Wang, Y., Xie, S., Zhou, Y., Ren, X., Li, X. and Cai, Y. 2011. Liquiritigenin induces mitochondria-mediated apoptosis via cytochrome c release and caspases activation in HeLa Cells. Phytother. Res. 25, 277-283. https://doi.org/10.1002/ptr.3259
- Liu, Y., Xie, S., Wang, Y., Luo, K., Wang, Y. and Cai, Y. 2012. Liquiritigenin inhibits tumor growth and vascularization in a mouse model of HeLa cells. Molecules 17, 7206-7216. https://doi.org/10.3390/molecules17067206
- Lu, W., Feng, F., Xu, J., Lu, X., Wang, S., Wang, L., Lu, H., Wei, M., Yang, G., Wang, L., Lu, Z., Liu, Y. and Lei, X. 2014. QKI impairs self-renewal and tumorigenicity of oral cancer cells via repression of SOX2. Cancer Biol. Ther. 15, 1174-1184. https://doi.org/10.4161/cbt.29502
- Ma, Y., Zhang, J., Zhang, Q., Chen, P., Song, J., Yu, S., Liu, H., Liu, F., Song, C., Yang, D. and Liu, J. 2014. Adenosine induces apoptosis in human liver cancer cells through ROS production and mitochondrial dysfunction. Biochem. Biophys. Res. Commun. 448, 8-14. https://doi.org/10.1016/j.bbrc.2014.04.007
- Mersereau, J. E., Levy, N., Staub, R. E., Baggett, S., Zogovic, T., Chow, S., Ricke, W. A., Tagliaferri, M., Cohen, I., Bjeldanes, L. F. and Leitman, D. C. 2008. Liquiritigenin is a plant-derived highly selective estrogen receptor beta agonist. Mol. Cell Endocrinol. 283, 49-57. https://doi.org/10.1016/j.mce.2007.11.020
- Mills, C. C., Kolb, E. A. and Sampson, V. B. 2017. Recent Advances of Cell-Cycle Inhibitor Therapies for Pediatric Cancer. Cancer Res. 77, 6489-6498. https://doi.org/10.1158/0008-5472.CAN-17-2066
- Mishra, D., Singh, S. and Narayan, G. 2016. Curcumin induces apoptosis in Pre-B acute lymphoblastic Leukemia cell lines via PARP-1 cleavage. Asian Pac. J. Cancer Prev. 17, 3865-3869. https://doi.org/10.14456/apjcp.2016.184/APJCP.2016.17.8.3865
- Mukherjee, A. K., Basu, S., Sarkar, N. and Ghosh, A. C. 2001. Advances in cancer therapy with plant based natural products. Curr. Med. Chem. 8, 1467-1486. https://doi.org/10.2174/0929867013372094
- Oh, H., Yoon, G., Shin, J. C., Park, S. M., Cho, S. S., Cho, J. H., Lee, M. H., Liu, K., Cho, Y. S., Chae, J. I. and Shim, J. H. 2016. Licochalcone B induces apoptosis of human oral squamous cell carcinoma through the extrinsic- and intrinsic-signaling pathways. Int. J. Oncol. 48, 1749-1757. https://doi.org/10.3892/ijo.2016.3365
- Oh, H. N., Seo, J. H., Lee, M. H., Kim, C., Kim, E., Yoon, G., Cho, S. S., Cho, Y. S., Choi, H. W., Shim, J. H. and Chae, J. I. 2018. Licochalcone C induced apoptosis in human oral squamous cell carcinoma cells by regulation of the JAK2/STAT3 signaling pathway. J. Cell Biochem. 119, 10118-10130. https://doi.org/10.1002/jcb.27349
- Oh, H. N., Seo, J. H., Lee, M. H., Yoon, G., Cho, S. S., Liu, K., Choi, H., Oh, K. B., Cho, Y. S., Kim, H., Han, A. L., Chae, J. I. and Shim, J. H. 2018. Oridonin induces apoptosis in oral squamous cell carcinoma probably through the generation of reactive oxygen species and the p38/JNK MAPK pathway. Int. J. Oncol. 52, 1749-1759.
- Passante, E., Wurstle, M. L., Hellwig, C. T., Leverkus, M. and Rehm, M. 2013. Systems analysis of apoptosis protein expression allows the case-specific prediction of cell death responsiveness of melanoma cells. Cell Death Differ. 20, 1521-1531. https://doi.org/10.1038/cdd.2013.106
- Shimizu, S., Narita, M. and Tsujimoto, Y. 1999. Bcl-2 family proteins regulate the release of apoptogenic cytochrome c by the mitochondrial channel VDAC. Nature 399, 483-487. https://doi.org/10.1038/20959
- Simon, H. U., Haj-Yehia, A. and Levi-Schaffer, F. 2000. Role of reactive oxygen species (ROS) in apoptosis induction. Apoptosis 5, 415-418. https://doi.org/10.1023/A:1009616228304
- Singh, S. K., Banerjee, S., Acosta, E. P., Lillard, J. W. and Singh, R. 2017. Resveratrol induces cell cycle arrest and apoptosis with docetaxel in prostate cancer cells via a p53/ p21WAF1/CIP1 and p27KIP1 pathway. Oncotarget 8, 17216-17228. https://doi.org/10.18632/oncotarget.15303
- Taylor, W. R. and Stark, G. R. 2001. Regulation of the G2/M transition by p53. Oncogene 20, 1803-1815. https://doi.org/10.1038/sj.onc.1204252
- Vilen, S. T., Salo, T., Sorsa, T. and Nyberg, P. 2013. Fluctuating roles of matrix metalloproteinase-9 in oral squamous cell carcinoma. ScientificWorldJournal 2013, 920595.
- Wang, D., Lu, J., Liu, Y., Meng, Q., Xie, J., Wang, Z. and Teng, L. 2014. Liquiritigenin induces tumor cell death through mitogen-activated protein kinase- (MPAKs-) mediated pathway in hepatocellular carcinoma cells. Biomed. Res. Int. 2014, 965316.
- Wang, D., Wong, H. K., Feng, Y. B. and Zhang, Z. J. 2014. Liquiritigenin exhibits antitumour action in pituitary adenoma cells via Ras/ERKs and ROS-dependent mitochondrial signalling pathways. J. Pharm. Pharmacol. 66, 408-417. https://doi.org/10.1111/jphp.12170
- Wong, R. S. 2011. Apoptosis in cancer: from pathogenesis to treatment. J. Exp. Clin. Cancer Res. 30, 87. https://doi.org/10.1186/1756-9966-30-87
- Yuan, X., Li, T., Xiao, E., Zhao, H., Li, Y., Fu, S., Gan, L., Wang, Z., Zheng, Q. and Wang, Z. 2014. Licochalcone B inhibits growth of bladder cancer cells by arresting cell cycle progression and inducing apoptosis. Food Chem. Toxicol. 65, 242-251. https://doi.org/10.1016/j.fct.2013.12.030
- Zheng, Y. Z., Cao, Z. G., Hu, X. and Shao, Z. M. 2014. The endoplasmic reticulum stress markers GRP78 and CHOP predict disease-free survival and responsiveness to chemotherapy in breast cancer. Breast Cancer Res. Treat. 145, 349-358. https://doi.org/10.1007/s10549-014-2967-x
- Zhou, Y., Wang, K., Zhen, S., Wang, R. and Luo, W. 2016. Carfilzomib induces G2/M cell cycle arrest in human endometrial cancer cells via upregulation of p21 (Waf1/Cip1) and p27(Kip1). Taiwan J. Obstet. Gynecol. 55, 847-851. https://doi.org/10.1016/j.tjog.2016.09.003