Efficient Synthetic Approaches to Uric Acid Transporter 1 Inhibitors Bearing Alkoxyl Group-Substituted Triazoles
- Corresponding author: Wang Jianwu, jwwang@sdu.edu.cn Zhao Guilong, zhao_guilong@126.com
Citation:
Tian He, Wu Jingwei, Liu Yuqiang, Xie Yafei, Wang Jianwu, Zhao Guilong. Efficient Synthetic Approaches to Uric Acid Transporter 1 Inhibitors Bearing Alkoxyl Group-Substituted Triazoles[J]. Chinese Journal of Organic Chemistry,
;2017, 37(7): 1748-1756.
doi:
10.6023/cjoc201701038
Richette, P.; Bardin T. Lancet 2010, 375, 318.
doi: 10.1016/S0140-6736(09)60883-7
Pillinger, M. H.; Rosenthal, P.; Abeles, A. M. Bull. NYU Hosp. Jt. Dis. 2007, 65, 215.
Punzi, L.; Scanu, A.; Ramonda, R.; Oliviero, F. Autoimmun. Rev. 2012, 12, 66.
doi: 10.1016/j.autrev.2012.07.024
Choi, H. K.; Mount, D. B.; Reginato, A. M. Ann. Intern. Med. 2005, 143, 499.
doi: 10.7326/0003-4819-143-7-200510040-00009
Miao, Z.; Li, C.; Chen, Y.; Zhao, S.; Wang, Y.; Wang, Z.; Chen, X.; Xu, F.; Wang, F.; Sun, R.; Hu, J.; Song, W.; Yan, S.; Wang, C. J. Rheumatol. 2008, 35, 1859.
Dubchak, N.; Falasca, G. F. Int. J. Nephrol. Renovasc. Dis. 2010, 3, 145.
Enomoto, A.; Kimura, H.; Chairoungdua, A.; Shigeta, Y.; Jutabha, P.; Cha, S. H.; Hosoyamada, M.; Takeda, M.; Sekine, T.; Igarashi, T.; Matsuo, H.; Kikuchi, Y.; Oda, T.; Ichida, K.; Hosoya, T.; Shimokata, K.; Niwa, T.; Kanai, Y.; Endou, H. Nature 2002, 417, 447.
Adams, J. U. Nat. Biotechnol. 2009, 27, 309.
doi: 10.1038/nbt0409-309
Hoy, S. M. Drugs 2016, 76, 509.
doi: 10.1007/s40265-016-0550-y
Miner, J. N.; Tan, P. Ann. Rheum. Dis. 2013, 71, 446.
Tian, H.; Liu, W.; Zhou, Z.; Shang, Q.; Liu, Y.; Xie, Y.; Liu, C.; Xu, W.; Tang, L.; Wang, J.; Zhao, G. Molecules 2016, 21, 1543.
doi: 10.3390/molecules21111543
Zhao, M.; Li, J.; Mano, E.; Song, Z.; Tschaen, D. M.; Grabowski, E, J. J.; Reider, P. J. J. Org. Chem. 1999, 64, 2564.
doi: 10.1021/jo982143y
Hirata, K.; Kotoku, M.; Seki, N.; Maeba, T.; Maeda, K.; Hirashima, S.; Sakai, T.; Obika, S.; Hori, A.; Hase, Y.; Yamaguchi, T.; Katsuda, Y.; Hata, T.; Miyagawa, N.; Arita, K.; Nomura, Y.; Asahina, K.; Aratsu, Y.; Kamada, M.; Adachi, T.; Noguchi, M.; Doi, S.; Crowe, P.; Bradley, E.; Steensma, R.; Tao, H.; Fenn, M.; Babine, R.; Li, X.; Thacher, S.; Hashimoto, H.; Shiozaki, M. ACS Med. Chem. Lett. 2016, 7, 23.
doi: 10.1021/acsmedchemlett.5b00253
Ragan, J. A.; Makowski, T. W.; Castaldi, M. J.; Hill, P. D. Synthesis 1998, 1599.
Bonanomi, G.; Braggio, S.; Capelli, A. M.; Checchia, A.; Di Fabio, R.; Marchioro, C.; Tarsi, L.; Tedesco, G.; Terreni, S.; Worby, A.; Heibreder, C.; Micheli, F. ChemMedChem 2010, 5, 705.
doi: 10.1002/cmdc.201000026
Xie, M.; Tang, H.; Zhang, Y.; Guo, Z.; Guo, H.; Qu, G. Chin. J. Org. Chem. 2015, 35, 2589(in Chinese).
Fu, Y.; Zhao, X.; Hou, B. Chin. J. Org. Chem. 2016, 36, 1184(in Chinese).
Cai, W.; Liu, W.; Xie, Y.; Wu, J.; Liu, Y.; Liu, C.; Xu, W.; Tang, L.; Wang, J.; Zhao, G. Chem. Res. Chin. Univ. 2017, 33, 49.
doi: 10.1007/s40242-017-6351-3
Reddy, T. R.; Li, C.; Guo, X.; Fischer, P. M.; Dekker, L. V. Bioorg. Med. Chem. 2014, 22, 5378.
doi: 10.1016/j.bmc.2014.07.043
Colanceska-Ragenovic, K.; Dimova, V.; Kakurinov, V.; Gabor, D. M. J. Heterocycl. Chem. 2003, 40, 905.
doi: 10.1002/jhet.v40:5
Kane, J. M.; Staeger, M. A.; Dalton, C. R.; Miller, F. P.; Dudley, M. W.; Ogden, A. M.; Kehne, J. H.; Ketteler, H. J.; McCloskey, T. C.; Senyah, Y.; Chmielewski, P. A.; Miller, J. A. J Med Chem. 1994, 37, 125.
doi: 10.1021/jm00027a015
Ström, P.; Malmquist, J. J. Labelled Compd. Radiopharm. 2008, 51, 419.
doi: 10.1002/jlcr.v51:13
Liu, M.; Shi, D. J. Heterocycl. Chem. 2014, 51, E335.
doi: 10.1002/jhet.v51.S1
Huisgen, R.; Möbius, L.; Szeimies, G. Chem. Ber. 1965, 98, 1138.
doi: 10.1002/(ISSN)1099-0682
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Reagents and conditions: (ⅰ) 80% N2H4·H2O, MeOH, r.t., yield 83%; (ⅱ) (a) DMFDMA, 7, MeCN, 50 ℃; (b) 3, AcOH, reflux, yield 46%; (ⅲ) Ac2O, DMAP, pyridine, 0 ℃-r.t., yield 93%; (ⅳ) NBS, MeCN, r.t., yield 70%; (ⅴ) MeONa/MeOH (11a), EtONa/EtOH (11b) or n-PrONa/n-PrOH (11c), CuCl, reflux, N2, yield 87% (11a), 84% (11b), 82% (11c); (ⅵ) NaClO2, TEMPO, NaClO, MeCN, phosphate buffer, 35 ℃, yield 76% (1a), 78% (1b), 68% (1c); (ⅶ) CSCl2, DIPEA, CH2Cl2, 0 ℃-r.t., yield, 87%; (ⅷ) (a) 7, EtOH, reflux; (b) 1 mol/L NaOH, 45 ℃, yield 74%; (ⅸ) MeI, K2CO3, DMF, r.t., yield 94%; (ⅹ) mCPBA, CH2Cl2, r.t., yield 93%; (xi) Cs2CO3, DMF, MeOH (11a), EtOH (11b), or n-PrOH (11c), 80 ℃, yield 76% (11a), 71% (11b), 72% (11c).