Synlett 2007(10): 1589-1590  
DOI: 10.1055/s-2007-982533
LETTER
© Georg Thieme Verlag Stuttgart · New York

Highly Efficient Synthesis of (+)-Nimbiol and Other Podocarpanes Derivatives from Sclareol

Isidro S. Marcos*, Alvaro Beneitez, Lourdes Castañeda, Rosalina F. Moro, Pilar Basabe, David Diez, Julio G. Urones
Departamento de Química Orgánica, Facultad de Ciencias Químicas, Universidad de Salamanca, Plaza de los Caídos 1-5, 37008 Salamanca, Spain
Fax: +34(923)294574; e-Mail: ismarcos@usal.es;
Further Information

Publication History

Received 23 March 2007
Publication Date:
06 June 2007 (online)

Abstract

A new access to tricyclic diterpenes of podocarpane ­skeleton has been opened, in excellent overall yields, and an efficient synthesis of (+)-nimbiol from sclareol has been achieved.

    References and Notes

  • 1a Glasby JS. Encyclopedia of the Terpenoids   Vol. 1:  J. Wiley and Sons; New York: 1982. 
  • 1b Glasby JS. Encyclopedia of the Terpenoids   Vol. 2:  J. Wiley and Sons; New York: 1982. 
  • 1c Hanson JR. Nat. Prod. Rep.  2006,  23:  875 ; and references cited therein
  • 2a Kupchan SM. Karim A. Marcks C. J. Org. Chem.  1969,  34:  3912 
  • 2b Gao J. Han G. Phytochemistry  1997,  44:  759 
  • 2c Son K.-H. Oh H.-M. Choi S.-K. Han DC. Kwon B.-M. Bioorg. Med. Chem. Lett.  2005,  15:  2019 
  • 3a Thongnest S. Mahidol C. Sutthivaiyakit S. Ruchirawat S. J. Nat. Prod.  2005,  68:  1632 
  • 3b Rasoamiaranjanahary L. Guilet D. Marston A. Randimbivololona F. Hostettmann K. Phytochemistry  2003,  64:  543 
  • 3c Hostettmann K. Terreaux C. Chimia  2000,  54:  652 
  • 4a Bhar SS. Ramana MMV. J. Org. Chem.  2004,  69:  8935 
  • 4b Hostettmann K, and Schaller F. inventors; US Patent,  5929124. 
  • 5a Ling T. Chowdhury C. Kramer BA. Vong BG. Palladino MA. Theodorakis EA. J. Org. Chem.  2001,  66:  8843 
  • 5b Ling T. Kramer BA. Palladino MA. Theodorakis EA. Org. Lett.  2000,  2:  2073 
  • 6 Tada M. Okuno K. Chiba K. Ohnishi E. Yoshii T. Phytochemistry  1994,  35:  539 
  • 7 The Total Synthesis of Natural Products   Vol. 8:  ApSimon J. J. Wiley and Sons; New York: 1990. 
  • 8 Sengupta P. Choudhuri SN. Khastgir HN. Tetrahedron  1960,  10:  45 
  • 9a Marcos IS. Basabe P. Laderas M. Díez D. Jorge A. Rodilla JM. Moro RF. Lighgow AM. Barata IG. Urones JG. Tetrahedron  2003,  59:  2333 
  • 9b Leite MAF. Sarragiotto MH. Imamuna P. Marsaidi AJ. J. Org. Chem.  1986,  51:  5409 
  • 10 Aladesanmi AJ. Odediran SA. Fitoterapia  2000,  71:  179 
  • 12 Nakano T. Alonso R. Maillo MA. Martín A. Nuñez RA. J. Chem. Soc., Perkin Trans. 1  1998,  1423 
11

[α]D 22 +31 (c = 0.8, CHCl3); mp 245 °C {Lit. [8] [α]D 22 +32.3; mp 250 °C}. IR (film): 3291, 2929, 2869, 1655, 1578, 1458, 1287, 1162, 907, 733, 665 cm-1. 1H NMR (400 MHz, CDCl3): δ = 7.82 (s, 1 H, H-14), 6.75 (s, 1 H, H-11), 5.82 (br s, 1 H, OH), 2.67 (dd, J = 4.4, 18.0 Hz, 1 H, H-6α), 2.58 (dd, J = 13.6, 18.0 Hz, 1 H, H-6β), 2.23 (s, 3 H, ArCH3), 1.83 (dd, J = 4.4, 13.6 Hz, 1 H, H-5), 1.24-1.78 (m, 6 H), 1.20 (s, 3 H, Me-20), 0.98 (s, 3 H, Me-19), 0.92 (s, 3 H, Me-18). 13C NMR (50 MHz, CDCl3): δ = 38.2 (C-1), 19.1 (C-2), 41.5 (C-3), 33.5 (C-4), 49.8 (C-5), 36.2 (C-6), 199.3 (C-7), 124.4 (C-8), 157.3 (C-9), 38.1 (C-10), 109.8 (C-11), 159.7 (C-12), 122.4 (C-13), 131.0 (C-14), 15.4 (ArCH3), 32.8 (C-18), 21.6 (C-19), 23.5 (C-20). HRMS (ESI): m/z [M+] calcd for C18H24O2: 272.1772; found: 272.1776.