Synthesis 2015; 47(04): 497-506
DOI: 10.1055/s-0034-1379547
paper
© Georg Thieme Verlag Stuttgart · New York

Synthesis of 6-Alkyl-7-oxo-4,5,6,7-tetrahydropyrazolo[1,5-c]pyri­midine-3-carboxamides

Klara Lombar
a   Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia   Fax: ???   Email: jurij.svete@fkkt.uni-lj.si
,
Uroš Grošelj
a   Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia   Fax: ???   Email: jurij.svete@fkkt.uni-lj.si
,
Georg Dahmann
b   Boehringer Ingelheim Pharma GmbH & Co. KG, Medicinal Chemistry, 88397 Biberach, Germany
,
Branko Stanovnik
a   Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia   Fax: ???   Email: jurij.svete@fkkt.uni-lj.si
,
Jurij Svete*
a   Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia   Fax: ???   Email: jurij.svete@fkkt.uni-lj.si
› Author Affiliations
Further Information

Publication History

Received: 26 September 2014

Accepted after revision: 29 October 2014

Publication Date:
24 November 2014 (online)


Abstract

Two variants of the synthesis of 6-alkyl-7-oxo-4,5,6,7-tetrahydropyrazolo[1,5-c]pyrimidine-3-carboxamides have been developed. The first pathway comprises nine steps starting with the introduction of the 6-alkyl group (R1) via addition of a primary alkylamine to methyl acrylate followed by a seven-step transformation into the 6-benzyl-7-oxo-4,5,6,7-tetrahydropyrazolo[1,5-c]pyrimidine-3-carboxylic acid, which is then amidated into title compounds. The other variation is based on an analogous four-step transformation of Boc-β-alanine into a 6-unsubstituted benzyl ester as the key intermediate. The 6-alkyl group (R1) is then introduced by N-alkylation with alkyl halides, followed by O-debenzylation to give the carboxylic acids, and amidation. A library of 18 title carboxamides was prepared in very good yields.

Supporting Information

 
  • References

    • 1a Joule JA, Mills K. Heterocyclic Chemistry . 5th ed. Wiley-Blackwell; Chichester: 2010
    • 1b Patrick GL. An Introduction to Medicinal Chemistry . 4th ed. Oxford University Press; Oxford: 2009
    • 1c Pernerstorfer J. Molecular Design and Combinatorial Compound Libraries. In Handbook of Combinatorial Chemistry. Drugs, Catalysts, Materials. Vol. 2. Nicolaou KC, Hanko R, Hartwig W. Wiley-VCH; Weinheim: 2002: 725
    • 1d Dolle RE. Solid-phase Synthesis of Heterocyclic Systems (Heterocycles Containing One Heteroatom). In Handbook of Combinatorial Chemistry: Drugs, Catalysts, Materials. Vol. 2. Nicolaou KC, Hanko R, Hartwig W. Wiley-VCH; Weinheim: 2002: 643
    • 2a Hajos G, Riedl Z. Aza Analogues of Pyrazolo[1,5-a]pyridines Containing Additional Nitrogen Atoms in the Six-Membered Ring. In Science of Synthesis. Vol 12. Neier R. Thieme; Stuttgart: 2006: 667 ; and references cited therein
    • 2b Regan AC. Pyrazolo[1,5-c]pyrimidine . In Comprehensive Heterocyclic Chemistry III . Vol. 11. Katritzky AR, Ramsden CA, Scriven EF. V, Taylor RJ. K. Elsevier Science Ltd; Oxford: 2008: 577 ; and references cited therein
    • 2c Sliskovic DR. Pyrazolo[1,5-c]pyrimidine . In Comprehensive Heterocyclic Chemistry III . Vol. 8. Katritzky AR, Rees CV, Scriven EF. V. Elsevier Science Ltd; Oxford: 1996: 362 ; and references cited therein
    • 3a Maier T, Baer T, Lindenmaier A, Vennemann M, Braunger J, Boehm M, Gekeler V, Zimmermann A. Patent PCT Int. Appl. WO 2007144384, 2007 ; Chem. Abstr. 2007, 148, 79077.
    • 3b Mallams AK, Madison V, Paruch K. Patent PCT Int. Appl. WO 2007032936, 2007 ; Chem. Abstr. 2007, 146, 358880.
    • 3c Maier T, Zuelch A, Ciossek T, Baer T, Beckers T. Patent PCT Int. Appl. WO 2006027346, 2006 ; Chem. Abstr. 2006, 144, 350709.
    • 4a Gudmundsson K, Johns BA. Patent PCT Int. Appl. WO 2003076441, 2003 ; Chem. Abstr. 2003, 139, 261327.
    • 4b Gudmundsson KS, Johns BA, Waterhead J. Bioorg. Med. Chem. Lett. 2009; 19: 5689
  • 5 Casebier D. Patent PCT Int. Appl. WO 2010091303, 2010 ; Chem. Abstr. 2010, 153, 260549.
    • 6a Kahraman M, Smith ND, Bonnefous C, Noble SA, Payne JE. Patent PCT Int. Appl. WO 2010088518, 2010 ; Chem. Abstr. 2010, 153, 260364.
    • 6b Smith ND, Bonnefous C, Kahraman M, Noble SA, Payne JE, Govek SP. PCT Int. Appl WO 2010048149, 2010 ; Chem. Abstr. 2010, 152, 501397.
    • 7a Atta KF. M, Farahat OO. M, Ghobashy SM, Marei MG. Molecules 2011; 16: 10387
    • 7b Atta KF. M, Marei MG, Abd El-Magiad SM, El-Nashar FH. A. Heterocycles 2011; 83: 1873
  • 8 Lee W.-C, Carter MB, Sun L, Lyne P, Chuaqui C, Zheng Z, Singh J, Boriack-Sjodin P. Patent PCT Int. Appl. WO 2004022054, 2004 ; Chem. Abstr. 2004, 140, 270867.
    • 9a Kaneko Y, Kita H, Ikesu S. Jpn Kokai Tokkyo Koho JP 04283272, 1992 ; Chem. Abstr. 1992, 119, 74607.
    • 9b Kaneko Y, Kita H, Ikesu S. Jpn. Kokai Tokkyo Koho JP 04204441, 1992 ; Chem. Abstr. 1992, 118, 90726.
    • 9c Yamakawa K, Ishii Y. Jpn Kokai Tokkyo Koho JP 04191736, 1992 ; Chem. Abstr. 1992, 117, 261569.
    • 9d Kaneko Y. Jpn Kokai Tokkyo Koho JP 02236545, 1990 ; Chem. Abstr. 1990, 115, 18490.
  • 10 Mahgoub FM, Abdel-Nabey BA, El-Samadisy YA. Mater. Chem. Phys. 2010; 120: 104
  • 11 Grošelj U, Podlogar A, Novak A, Dahmann G, Golobič A, Stanovnik B, Svete J. Synthesis 2013; 45: 639
  • 12 Mirnik J, Grošelj U, Novak A, Dahmann G, Golobič A, Kasunič M, Stanovnik B, Svete J. Synthesis 2013; 45: 3404
    • 13a Grošelj U, Kralj D, Wagger J, Dahmann G, Stanovnik B, Svete J. ARKIVOC 2012; (iii): 49 ; and references cited therein
    • 13b Perdih P, Baškovč J, Dahmann G, Grošelj U, Kočar D, Stanovnik B, Svete J. Synthesis 2011; 2822
    • 13c Žerovnik D, Grošelj U, Kralj D, Malavašič Č, Bezenšek J, Dahmann G, Stare K, Meden A, Stanovnik B, Svete J. Synthesis 2010; 3363 ; and references cited therein
  • 14 Kralj D, Friedrich M, Grošelj U, Kiraly-Potpara S, Meden A, Wagger J, Stanovnik B, Svete J. Tetrahedron 2009; 65: 7151
  • 15 Page PC. B, Leach DC, Hayman CM, Hamzah AS, Allin SM, McKee V. Synlett 2003; 1025
    • 16a Bobiev GM, Yusupov SD, Shakhmatov AN, Khaidarov KK. Pharm. Chem. J. 2000; 34: 245
    • 16b Efimow VA, Kalinkina AL, Chakhmakhcheva OG. Russ. J. Bioorg. Chem. 1995; 21: 527
    • 16c Khalikov SK, Alieva SV, Ashurov SG. Russ. J. Bioorg. Chem. 1994; 20: 202
    • 16d Jezek J, Makarov EA, Balashova TA, Budesinsky M, Andronova TM, Ivanov VT. Collect. Czech. Chem. Commun. 1990; 55: 1326
    • 16e Rabinkov AG, Pozdnev VF, Amontov SV, Kopelevich VM, Gunar VI. Chem. Nat. Compd. 1989; 25: 350
    • 17a Harwood LM, Moody CJ. ‘Dry Flash’ Column Chromatography. In Experimental Organic Chemistry, Principles and Practice. Blackwell Science; Oxford: 1989: 185
    • 17b Harwood LM. Aldrichimica Acta 1985; 18: 25
  • 18 Kralj D, Grošelj U, Meden A, Dahmann G, Stanovnik B, Svete J. Tetrahedron 2007; 63: 11213
  • 19 Thetiot-Laurent SA.-L, Nadal B, Le Gall T. Synthesis 2010; 1697