Citation: Xu-Liang Lang, Qin-Sheng Sun, Yu-Zong Chen, Lu-Lu Li, Chun-Yan Tan, Hong-Xia Liu, Chun-Mei Gao, Yu-Yang Jiang. Novel synthetic 9-benzyloxyacridine analogue as both tyrosine kinase and topoisomerase I inhibitor[J]. Chinese Chemical Letters, ;2013, 24(8): 677-680.
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Multi-target agents against tyrosine kinases and topoisomerases are potentially useful for the effective treatment of cancers. Discovery of new multi-target scaffolds are important for developing such agents. A series of five novel acridine analogues, LXL 1-5, were synthesized and their antiproliferative activity against HepG-2 cell lines were evaluated, among which the 9-benzyloxyacridine analogue, LXL-5, showed inhibitory activity against tyrosine kinases, VEGFR-2 and Src. The results of UV-visible absorption spectra and fluorescence emission spectra, as well as DNA topoisomerase Ⅰ inhibition assay, indicated topoisomerase Ⅰ inhibitory activity. Our study suggested that acridine scaffold, previously shown to have no multi-target kinase and topoisomerase inhibitory activity, might be potentially developed as a multi-target inhibitor of tyrosine kinases and topoisomerase Ⅰ.
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Keywords:
- Acridine,
- Topoisomerases,
- Tyrosine kinases,
- Antitumor,
- DNA-binding
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[1]
[1] P.S. Schein, B. Scheffler, Barriers to efficient development of cancer therapeutics, Clin. Cancer Res. 12 (2006) 3243-3248.
-
[2]
[2] Y. Pommier, DNA topoisomerase I inhibitors: chemistry, biology, and interfacial inhibition, Chem. Rev. 109 (2009) 2894-2902.
-
[3]
[3] L. Huang, Z. Huang, Z. Bai, et al., Development and strategies of VEGFR-2/KDR inhibitors, Future Med. Chem. 4 (2012) 1839-1852.
-
[4]
[4] (a) D. Xu, T. Wang, L. Sun, Q. You, Recent progress of small molecular VEGFR inhibitors as anticancer agents, Mini-Rev. Med. Chem. 11 (2011) 18-31;
-
[5]
(b) T. Wang, J. Wei, C. Guo, H. Zhang, H. Fan, Design, synthesis and anti-proliferative studies of a novel series of indirubin derivatives, Chin. Chem. Lett. 21 (2010) 1407-1410.
-
[6]
[5] (a) P. Belmont, J. Bosson, T. Godet, M. Tiano, Acridine and acridone derivatives, anticancer properties and synthetic methods: where are we now, Anticancer Agents Med. Chem. 7 (2007) 139-169;
-
[7]
(b) C. Gao, F. Liu, X. Luan, et al., Novel synthetic 2-amino-10-(3,5-dimethoxy)-benzyl-9(10H)-acridinone derivatives as potent DNA-binding antiproliferative agents, Bioorg. Med. Chem. 18 (2010) 7507-7514.
-
[8]
[6] A. Huwe, R. Mazitschek, A. Giannis, Small molecules as inhibitors of cyclindependent kinases, Angew. Chem. Int. Ed. 42 (2003) 2122-2138.
-
[9]
[7] X. Luan, C. Gao, N. Zhang, et al., Exploration of acridine scaffold as a potentially interesting scaffold for discovering novel multi-target VEGFR-2 and Src kinase inhibitors, Bioorg. Med. Chem. 19 (2011) 3312-3319.
-
[10]
[8] A. Jayanthan, D. Bernoux, P. Bose, K. Riabowol, A. Narendran, Multi-tyrosine kinase inhibitors in preclinical studies for pediatric CNS AT/RT: evidence for synergy with topoisomerase-I inhibition, Cancer Cell. Int. 11 (2011) 44.
-
[11]
[9] X. Luan, C. Gao, Q. Sun, et al., Novel synthetic azaacridine analogues as topoisomerase 1 inhibitors, Chem. Lett. 40 (2011) 728-729.
-
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