Synthesis 2011(15): 2495-2504  
DOI: 10.1055/s-0030-1260111
PAPER
© Georg Thieme Verlag Stuttgart ˙ New York

An Easy Access to Novel Sugar-Based Spirooxindole-pyrrolidines or -pyrrolizidines through [3+2] Cycloaddition of Azomethine Ylides

Arasappan Hemamalinia, Subbiah Nagarajana, Pawar Ravinderb, Venkatesan Subramanianb, Thangamuthu Mohan Das*a
a Department of Organic Chemistry, University of Madras, Guindy Campus, Chennai - 600 025, India
Fax: +91(44)22352494; e-Mail: tmdas_72@yahoo.com;
b Chemical Laboratory, Central Leather Research Institute (CSIR), Adyar, Chennai, 600 020, India
Further Information

Publication History

Received 27 December 2010
Publication Date:
14 July 2011 (online)

Abstract

An efficient one-pot synthesis of a library of novel sugar-based spirooxindole-pyrrolidines or -pyrrolizidines has been accomplished by [3+2] cycloaddition. This method utilizes an azo­methine ylide derived from isatin and sarcosine or l-proline with an α,β-unsaturated β-C-glycosidic ketone as the dipolarophile. All these sugar-based heterocyclics were characterized by NMR (¹H and ¹³C), HPLC, and elemental analysis

    References

  • 1a 1,3-Dipolar Cycloaddition Chemistry   Vols. 1-2:  Padwa A. Wiley; New York: 1984. 
  • 1b Grigg R. Sridharan V. In Advances in Cycloaddition   Vol. 3:  Curran DP. JAI Press; London: 1993.  p.161 
  • 1c Kumar A. Pandey PS. Org. Lett.  2008,  10:  165 
  • 1d Karthikeyan K. Kumar RS. Muralidharan D. Perumal PT. Tetrahedron Lett.  2009,  50:  7175 
  • 1e Chaulagain MR. Aron ZD. J. Org. Chem.  2010,  75:  8271 ; and references cited therein
  • 2a Zhou F. Liu Y.-L. Zhou J. Adv. Synth. Catal.  2010,  352:  1381 
  • 2b Thomson JE. Kyle AF. Ling KB. Smith SR. Slawin AMZ. Smith AD. Tetrahedron  2010,  66:  3801 
  • 2c Girgis AS. Eur. J. Med. Chem.  2009,  44:  91 
  • 2d Marti C. Carreira EM. Eur. J. Org. Chem.  2003,  2209 
  • 2e Galliford CV. Scheidt KV. Angew. Chem. Int. Ed.  2007,  46:  2 
  • 2f Shanmugam P. Viswambharan B. Selvakumar K. Madhavan S. Tetrahedron Lett.  2008,  49:  2611 
  • 3a Monlineux RJ. In Alkaloids: Chemical and Biological Perspectives   Pelletier SW. Wiley; New York: 1987.  Chap. 1.
  • 3b Fujimori S. inventors; JP  882912.  ; Chem Abstr. 1990, 112, 98409
  • 4a Gasperi T. Loreto MA. Migliorini A. Ventura C. Eur. J. Org. Chem.  2011,  385 
  • 4b Chafeev M, Fu J, and Cadieux J.-J. inventors; US  20100331386. 
  • 4c Prasanna P. Balamurugan K. Perumal S. Yogeeswari P. Sriram D. Eur. J. Med. Chem.  2010,  45:  5653 
  • 4d Cadieux J.-J, Chafeev M, Chowdhury S, Douglas AF, Fu J, Langille J, Sun S, and Wood M. inventors; WO  2010078307. 
  • 4e Augustine T. Kanakam CC. Vithiya SM. Ramkumar V. Tetrahedron Lett.  2009,  50:  5906 
  • 4f Basavaiah D. Reddy RK. Org. Lett.  2007,  9:  57 
  • 5a Pellegrini C. Weber M. Borschberg H.-J. Helv. Chim. Acta  1996,  79:  151 
  • 5b Kamisaki H. Nanjo T. Tsukano C. Takemoto Y. Chem. Eur. J.  2011,  17:  626 
  • 5c White JD. Li Y. Ihle DC. J. Org. Chem.  2010,  75:  3569 
  • 6a Jossang A. Jossang P. Hadi HA. Sevenet T. Bodo B. J. Org. Chem.  1991,  56:  6527 
  • 6b Deppermann N. Thomanek H. Prenzel AHGP. Maison W. J. Org. Chem.  2010,  75:  5994 
  • 6c Klein JEMN. Perry A. Pugh DS. Taylor RJK. Org. Lett.  2010,  12:  3446 
  • 6d Reddy VJ. Douglas CJ. Tetrahedron  2010,  66:  4719 
  • 6e Reddy VJ. Douglas CJ. Org. Lett.  2010,  12:  952 
  • 6f Jaegli S. Vors J.-P. Neuville L. Zhu J. Synlett  2009,  2997 
  • 7 Anderton N. Cockrum PA. Colegate SM. Edgar JA. Flower K. Vit I. Willing RI. Phytochemistry  1998,  48:  437 
  • 8a Cui CB. Kakeya H. Osada H. Tetrahedron  1996,  52:  12651 
  • 8b Cui CB. Kakeya H. Osada H. J. Antibiot.  1996,  49:  832 
  • 8c Abou-Gharbia MA. Doukas PH. Heterocycles  1979,  12:  637 
  • 8d Kornet MJ. Thio AP. J. Med. Chem.  1976,  19:  892 
  • 9a Nagarajan S. Mohan Das T. Carbohydr. Res.  2009,  334:  1028 
  • 9b Nagarajan S. Mohan Das T. Arjun P. Raaman N. J. Mater. Chem.  2009,  19:  4587 
  • 9c Nagarajan S. Mohan Das T. New J. Chem.  2009,  33:  2391 
  • 9d Nagarajan S. Ravinder P. Subramanian V. Mohan Das T. New J. Chem.  2010,  34:  123 
  • 9e Nagarajan S. Anupa K. Babu V. Mohan Das T. Carbohydr. Res.  2010,  345:  1077 
  • 9f Karthik Kumar K. Elango M. Subramanian V. Mohan Das T. New J. Chem.  2009,  33:  1570 
  • 9g Nagarajan S. Arjun P. Raaman N. Mohan Das T. Carbohydr. Res.  2010,  345:  1988 
  • 9h Rajaganesh R. Jayakumar J. Sivaraj C. Raaman N. Mohan Das T. Carbohydr. Res.  2010,  345:  1649 
  • 9i Nagarajan S. Shanmugam MJ. Mohan Das T. Carbohydr. Res.  2011,  346:  722 
  • 10a Mellis RL. Mehltretter CL. Rist CE. J. Am. Chem. Soc.  1951,  73:  294 
  • 10b Bonner TG. Bourne EJ. Lewis D. J. Chem. Soc.  1965,  7453 
  • 11a Bragnier N. Scherrmann MC. Synthesis  2005,  814 
  • 11b Rodrigues F. Canac Y. Lubineau A. Chem. Commun.  2000,  2049 
  • 11c Riemann I. Papadopoulos MA. Knorst M. Fessner WD. Aust. J. Chem.  2002,  55:  147