Synlett 2011(6): 805-808  
DOI: 10.1055/s-0030-1259718
LETTER
© Georg Thieme Verlag Stuttgart ˙ New York

Synthesis of ‘Spacer’-Naproxen [2-(6-Methoxybiphenylen-2-yl)propanoic Acid] and -Isonaproxen [2-(7-Methoxybiphenylen-2-yl)propanoic Acid]

Juan A. González Gómez, James R. Green, K. Peter C. Vollhardt*
Department of Chemistry, University of California at Berkeley, Berkeley, CA 94720-1460, USA
Fax: +1(510)6435208; e-Mail: kpcv@berkeley.edu;
Further Information

Publication History

Received 28 January 2011
Publication Date:
08 March 2011 (online)

Abstract

The CpCo(CO)2-catalyzed cocyclization of 1,2-diethynyl-4-methoxybenzene with alkynes can be applied to the synthesis of ‘spacer’-naproxen [2-(6-methoxybiphenylen-2-yl)propanoic acid] and its 7-methoxy isomer, ‘spacer’-isonaproxen. While unsymmetrical alkynes are incorporated without regioselectivity, the methoxy group in 6-methoxy-2,3-bis(trimethylsilyl)biphenylene directs electrophiles to C-3, thus allowing for regiochemical differentiation between the 2- and 3-positions.

    References and Notes

  • See, inter alia:
  • 1a Takai A. Gros CP. Barbe J.-M. Guilard R. Fukuzumi S. Chem. Eur. J.  2009,  15:  3110 
  • 1b Faure S. Stern C. Guilard R. Harvey PD. J. Am. Chem. Soc.  2004,  126:  1253 
  • 1c Staab HA. Kratzer B. Quazzotti S. Eur. J. Org. Chem.  1998,  2149 
  • 2a Maruoka K. Bull. Chem. Soc. Jpn.  2009,  82:  917 
  • 2b Hine J. Linden S.-M. Kanagasabapathy VM. J. Org. Chem.  1985,  50:  5096 
  • 2c Hine J. Hahn S. Miles DE. Ahn K. J. Org. Chem.  1985,  50:  5092 
  • 3 Kilyanek SM. Fang X. Jordan RF. Organometallics  2009,  28:  300 
  • 4 Lunazzi L. Mancinelli M. Mazzanti A. J. Org. Chem.  2010,  75:  2572 
  • 5a Rabe KS. Spengler M. Erkelenz M. Müller J. Gandubert VJ. Hayen H. Niemeyer CM. ChemBioChem  2009,  10:  751 
  • 5b Torres E. Hayen H. Niemeyer CM. Biochem. Biophys. Res. Commun.  2007,  355:  286 
  • 5c Gibson KJ. d’Alarcao M. Leonard NJ.
    J. Org. Chem.  1985,  50:  2462 
  • 5d D’Alarcao M. Bakthavachalam V. Leonard NJ. J. Org. Chem.  1985,  50:  2456 
  • 5e Bakthavachalam V. d’Alarcao M. Leonard NJ. J. Org. Chem.  1984,  49:  289 
  • 5f D’Alarcao M. Leonard NJ. J. Am. Chem. Soc.  1983,  105:  5958 
  • 5g Leonard NJ. Acc. Chem. Res.  1982,  15:  128 
  • For selected references and patents, see:
  • 6a Li L, and Zhong M. inventors; WO 2010111534 A1  20100930.  ; Chem. Abstr. 2010, 153, 472573
  • 6b Sherrington RP, and Cutts AJ. inventors; WO 2010005851 A1  20100114.  ; Chem. Abstr. 2010, 152, 136753
  • 6c Chafeev M, Chakka N, Cadieux J.-J, Fu J, Kamboj R, Kodumuru V, Langille J, Liu S, Sun J, Sviridov S, and Zhang Z. inventors; WO 2008109840 A1  20080912.  ; Chem. Abstr. 2008, 149, 331980
  • 6d Collingwood SP, and Smith N. inventors; WO 2007071396 A2  20070628.  ; Chem. Abstr. 2007, 147, 118268
  • 6e Mitragotri S, Karande P, and Jain AK. inventors; WO 2006091297 A2  20060831.  ; Chem. Abstr. 2006, 145, 299520
  • 6f Albert JS, Callaghan O, Campbell J, Carr RAE, Chessari G, Cowan S, Congreve MS, Edwards P, Frederickson M, Murray CW, and Patel S. inventors; WO 2006065204 A1  20060622.  ; Chem. Abstr. 2006, 145, 83227
  • 6g Cusack K, Salmeron-Garcia J.-A, Gordon TD, Barberis CE, Allen HJ, Bischoff AK, Ericsson AM, Friedman MM, George DM, Roth GP, Talanian RV, Thomas C, Wallace GA, Wishart N, and Yu Z. inventors; WO 2005110410 A2  20051124.  ; Chem. Abstr. 2005, 144, 22906
  • 6h Lambert LH, and Vanhove GFA. inventors; WO 2005009458 A1  20050203.  ; Chem. Abstr. 2005, 142, 191329
  • 6i Karande P. Jain A. Ergun K. Kispersky V. Mitragorti S. Proc. Natl. Acad. Sci. U.S.A.  2005,  102:  4688 
  • 6j McComsey DF, Maryanoff BE, and Hawkins MJ. inventors; US 6747127 B1  20040608.  ; Chem. Abstr. 2004, 141, 33797
  • 6k Shen T.-Y, and Witzel BE. inventors; DE 2145932  19720316. 2-(Biphenylen-2-yl)acetic and propanoic acid have been reported to have antiinflammatory, antipyretic, and anal-gesic activity in a patent that broadly claims protection for some of the compounds reported in this paper: ; Chem. Abstr. 1972, 76, 153434
  • 7a Diep K. Bussard L. Song JC. Formulary  2010,  45:  116 
  • For a review, see:
  • 7b Jones RL. Giembycz MA. Woodward DF. Br. J. Pharmacol.  2009,  158:  104 
  • 8 Harrington PJ. Lodewijk E. Org. Process Res. Dev.  1997,  1:  72 
  • For a review, see:
  • 9a Miljanić OŠ. Vollhardt KPC. In Carbon-Rich Compounds: From Molecules to Materials   Haley MM. Tykwinski RR. Wiley-VCH; Weinheim: 2006.  p.140 
  • 9b Berris BC. Hovakeemian GH. Lai Y.-H. Mestdagh H. Vollhardt KPC. J. Am. Chem. Soc.  1985,  107:  5670 
  • 9c Berris BC. Lai Y.-H. Vollhardt KPC. J. Chem. Soc., Chem. Commun.  1982,  953 
  • 10 For the exploration of the effect of remote substituents on the regioselectivity of the cobalt-mediated [2+2+2] cyclo-addition of α,ω-diynes to (cyclo)alkenes, see: Aubert C. Gandon V. Han S. Johnson BM. Malacria M. Schömenauer S. Vollhardt KPC. Whitener GD. Synthesis  2010,  2179 
  • 11 Gardner DV. McOmie JFW. Prabhu TP. J. Chem. Soc. C  1970,  2500 
  • 12 For a compilation of preparations of biphenylene, see: Schaub T. Radius U. Tetrahedron Lett.  2005,  46:  8195 
  • 13 Corey EJ. Schmidt G. Tetrahedron Lett.  1979,  20:  399 
  • 15 Alabugin IV. Manoharan M. Kovalenko SV. Org. Lett.  2002,  4:  1119 
  • 16a Hillard RL. Vollhardt KPC. J. Am. Chem. Soc.  1977,  99:  4058 
  • For a review, see:
  • 16b Vollhardt KPC. Angew. Chem., Int. Ed. Engl.  1984,  23:  539 
  • For a recent DFT study on the mechanism of the CpCo-catalyzed alkyne cyclotrimerization, see:
  • 16c Agenet N. Gandon V. Vollhardt KPC. Malacria M. Aubert C. J. Am. Chem. Soc.  2007,  129:  8860 
  • See:
  • 17a Aubert C. Betschmann P. Eichberg MJ. Gandon V. Geny A. Heckrodt TJ. Lehmann J. Malacria M. Masjost B. Paredes E. Vollhardt KPC. Whitener GD. Chem. Eur. J.  2007,  13:  7443 ; and references cited therein
  • See also:
  • 17b Dosa PI. Whitener GD. Vollhardt KPC. Org. Lett.  2002,  4:  2075 
  • 17c Diercks R. Eaton BE. Gürtzgen S. Jalisatgi S. Matzger AJ. Radde RH. Vollhardt KPC. J. Am. Chem. Soc.  1998,  120:  8247 
  • 18 Rieu J.-P. Boucherle A. Cousse H. Mouzin G. Tetrahedron  1986,  42:  4095 
  • 19 Davis R. Untch KG. J. Org. Chem.  1981,  46:  2985 
  • 20 Hiyama T. Inoue M. Synthesis  1986,  689 
  • 21 For the chemistry of biphenylene and its derivatives, see: Shepherd MK. Cyclobutarenes. The Chemistry of Benzocyclobutene, Biphenylene, and Related Compounds   Elsevier; Amsterdam: 1991. 
  • 22 To avoid competitive diiodination to give 3,6-diiodo-2-methoxybiphenylene, see Supporting Information. See also: Effenberger F. Spiegler W. Chem. Ber.  1985,  118:  872 
  • 23 Zweifel G. Backlund S. J. Am. Chem. Soc.  1977,  99:  3184 
  • 24 Batsanov AS. Howard JAK. Lightfoot AP. Twiddle SJR. Whiting A. Eur. J. Org. Chem.  2005,  1876 
14

The structures of all new compounds (SciFinder) were in accord with their analytical and/or spectroscopic properties; see Supporting Information.