Skip to content
Licensed Unlicensed Requires Authentication Published by De Gruyter March 20, 2018

2-Naphthol-pyrazole conjugates as substrates in the Mannich reaction

  • Gheorghe Roman EMAIL logo

Abstract

Several novel 2-naphthol-pyrazole conjugates have been synthesized through the O-alkylation of 1-[(3,5-dimethyl-1H-pyrazol-1-yl)methyl]naphthalen-2-ol with methyl iodide, benzyl chloride, methyl bromoacetate and N-benzyl-2-bromoacetamide. The aminomethylation of these 2-naphthol-pyrazole conjugates has been examined employing the classical conditions for the Mannich reaction, and also by using N,N-dimethylmethyleneiminium chloride as preformed aminomethylating reagent. In both situations, aminomethylation of these substrates occurred at C-4 of the pyrazole ring. The bifunctional substrate 1-[(3,5-dimethyl-1H-pyrazol-1-yl)methyl]naphthalen-2-ol has been chemoselectively aminomethylated in the pyrazole ring using the same preformed aminomethylating reagent.

References

[1] M. F. Khan, M. M. Alam, G. Verma, W. Akhtar, M. Akhter, M. Shaquiquzzaman, Eur. J. Med. Chem.2016, 120, 170.10.1016/j.ejmech.2016.04.077Search in Google Scholar PubMed

[2] R. S. Keri, K. Chand, T. Ramakrishnappa, B. M. Nagaraja, Arch. Pharm. (Weinheim)2015, 348, 299.10.1002/ardp.201400452Search in Google Scholar PubMed

[3] Ş. G. Küçükgüzel, S. Şenkardeş, Eur. J. Med. Chem.2015, 97, 786.10.1016/j.ejmech.2014.11.059Search in Google Scholar PubMed

[4] H. Kumar, D. Saini, S. Jain, N. Jain, Eur. J. Med. Chem.2013, 70, 248.10.1016/j.ejmech.2013.10.004Search in Google Scholar PubMed

[5] R. Pérez-Fernández, P. Goya, J. Elguero, ARKIVOC2014, ii, 233.10.3998/ark.5550190.p008.131Search in Google Scholar

[6] J.-J. Liu, M.-Y. Zhao, X. Zhang, X. Zhao, H.-L. Zhu, Mini-Rev. Med. Chem.2013, 13, 1957.10.2174/13895575113139990078Search in Google Scholar PubMed

[7] A. A. Bekhit, A. Hymete, A. El-Din A. Bekhit, A. Damtew, H. Y. Aboul-Enein, Mini-Rev. Med. Chem.2010, 10, 1014.10.2174/1389557511009011014Search in Google Scholar PubMed

[8] A. M. Kalle, A. Mallika, J. Badiger, Alinakhi, P. Talukdar, Sachchidanand, Biochem. Biophys. Res. Commun.2010, 401, 13.10.1016/j.bbrc.2010.08.118Search in Google Scholar PubMed

[9] F. Xie, B. X. Li, A. Kassenbrock, C. Xue, X. Wang, D. Z. Qian, R. C. Sears, X. Xiao, J. Med. Chem.2015, 58, 5075.10.1021/acs.jmedchem.5b00468Search in Google Scholar PubMed PubMed Central

[10] S. Y. Shin, S. Ahn, H. Yoon, H. Jung, Y. Jung, D. Koh, Y. H. Lee, Y. Lim, Bioorg. Med. Chem. Lett.2016, 26, 4301.10.1016/j.bmcl.2016.07.037Search in Google Scholar PubMed

[11] J. Qin, P. Xie, C. Ventocilla, G. Zhou, A. Vultur, Q. Chen, Q. Liu, M. Herlyn, J. Winkler, R. Marmorstein, J. Med. Chem.2012, 55, 5220.10.1021/jm3004416Search in Google Scholar PubMed PubMed Central

[12] K. Bujnowski, L. Synoradzki, R. C. Darłak, T. A. Zevaco, E. Dinjus, RSC Adv.2016, 6, 114758.10.1039/C6RA22880ASearch in Google Scholar

[13] G. Roman, V. Năstasă, A.-C. Bostănaru, M. Mareş, Bioorg. Med. Chem. Lett.2016, 26, 2498.10.1016/j.bmcl.2016.03.098Search in Google Scholar PubMed

[14] H. Seki, S. Xue, M. S. Hixon, S. Pellett, M. Reme, E. A. Johnson, K. D. Janda, Chem. Commun.2015, 51, 6226.10.1039/C5CC00677ESearch in Google Scholar

[15] M. C. Sharma, S. Sharma, P. Sharma, A. Kumar, Med. Chem. Res.2013, 22, 5390.10.1007/s00044-013-0499-2Search in Google Scholar

[16] K. Urbahns, T. Yura, M. Mogi, M. Tajimi, H. Fujishima, T. Masuda, N. Yoshida, T. Moriwaki, T. B. Lowinger, H. Meier, F. Chan, D. Madge, J. B. Gupta, Bioorg. Med. Chem. Lett.2011, 21, 3354.10.1016/j.bmcl.2011.04.013Search in Google Scholar PubMed

[17] G.-L. Li, J.-Y. He, A. Zhang, Y. Wan, B. Wang, W.-H. Chen, Eur. J. Med. Chem.2011, 46, 4050.10.1016/j.ejmech.2011.06.003Search in Google Scholar PubMed

[18] P. Piplani, P. Singh, A. Sharma, Med. Chem.2013, 9, 371.10.2174/1573406411309030007Search in Google Scholar PubMed

[19] P. Piplani, R. Malik, B. Kaur, A. Kaplish, Med. Chem. Res.2012, 21, 1771.10.1007/s00044-011-9686-1Search in Google Scholar

[20] G. Roman, Eur. J. Med. Chem.2015, 89, 743.10.1016/j.ejmech.2014.10.076Search in Google Scholar PubMed PubMed Central

[21] G. Roman, C. R. Acad. Bulg. Sci.2005, 58, 397.Search in Google Scholar

[22] K. K. Sivakumar, A. Rajasekaran, P. Senthilkumar, P. P. Wattamwar, Bioorg. Med. Chem. Lett.2014, 24, 2940.10.1016/j.bmcl.2014.04.067Search in Google Scholar

[23] G. Esquius, J. Pons, R. Yáñez, J. Ros, X. Solans, M. Font-Bardía, J. Organomet. Chem.2000, 605, 226.10.1016/S0022-328X(00)00317-XSearch in Google Scholar

[24] S. A. Chavez, A. J. Martinko, C. Lau, M. N. Pham, K. Cheng, D. E. Bevan, T. E. Mollnes, H. Yin, J. Med. Chem.2011, 54, 4659.10.1021/jm2003365Search in Google Scholar

[25] M. Arend, B. Westermann, N. Risch, Angew. Chem. Int. Ed.1998, 37, 1044.10.1002/(SICI)1521-3773(19980504)37:8<1044::AID-ANIE1044>3.0.CO;2-ESearch in Google Scholar

[26] G. Roman, Tetrahedron Lett.2014, 55, 1229.10.1016/j.tetlet.2014.01.005Search in Google Scholar

[27] A. Pochini, G. Puglia, R. Ungaro, Synthesis1983, 906.10.1055/s-1983-30560Search in Google Scholar

[28] H.-J. Grumbach, M. Arend, N. Risch, Synthesis1996, 883.10.1055/s-1996-4301Search in Google Scholar

[29] C. Jöst, C. Nitsche, T. Scholz, L. Roux, C. D. Klein, J. Med. Chem.2014, 57, 7590.10.1021/jm5006918Search in Google Scholar


Supplemental Material:

The online version of this article offers supplementary material (https://doi.org/10.1515/znb-2017-0209).



Article note:

This communication is Part 28 of the series “Synthesis and reactivity of Mannich bases”.


Received: 2017-12-12
Accepted: 2018-2-25
Published Online: 2018-3-20
Published in Print: 2018-5-24

©2018 Walter de Gruyter GmbH, Berlin/Boston

Downloaded on 6.5.2024 from https://www.degruyter.com/document/doi/10.1515/znb-2017-0209/html
Scroll to top button