Synthesis 2015; 47(22): 3529-3541
DOI: 10.1055/s-0034-1378829
paper
© Georg Thieme Verlag Stuttgart · New York

Synthesis of 2,3-Unsaturated Alkynyl O-Glucosides from Tri-O-acetyl-d-glucal by Using Montmorillonite K-10/Iron(III) Chloride Hexahydrate with Subsequent Copper(I)-Catalyzed 1,3-Dipolar Cycloaddition

Valentina Nascimento Melo
Laboratório de Síntese de Compostos Bioativos, Universidade Federal Rural de Pernambuco, 52171-900, Recife, PE, Brazil   Email: ronaldonoliveira@dcm.ufrpe.br   Email: ronaldon38@gmail.com
,
Willyenne Marília Dantas
Laboratório de Síntese de Compostos Bioativos, Universidade Federal Rural de Pernambuco, 52171-900, Recife, PE, Brazil   Email: ronaldonoliveira@dcm.ufrpe.br   Email: ronaldon38@gmail.com
,
Celso Amorim Camara
Laboratório de Síntese de Compostos Bioativos, Universidade Federal Rural de Pernambuco, 52171-900, Recife, PE, Brazil   Email: ronaldonoliveira@dcm.ufrpe.br   Email: ronaldon38@gmail.com
,
Ronaldo Nascimento de Oliveira*
Laboratório de Síntese de Compostos Bioativos, Universidade Federal Rural de Pernambuco, 52171-900, Recife, PE, Brazil   Email: ronaldonoliveira@dcm.ufrpe.br   Email: ronaldon38@gmail.com
› Author Affiliations
Further Information

Publication History

Received: 29 April 2015

Accepted after revision: 25 June 2015

Publication Date:
13 August 2015 (online)


Abstract

Two strategies were considered for the synthesis of 2,3-unsaturated O-glucosyl-1,2,3-triazoles. The first, involving reaction between tri-O-acetyl-d-glucal and triazole alcohols gave no stereoselectivity. A second strategy provided 2,3-unsaturated O-glycosides from glycals and alkynols through a Ferrier rearrangement; this method, employing montmorillonite K-10 doped with iron(III) chloride hexahydrate in dichloromethane afforded new glycosides in good to excellent yields within short times and with high α-stereoselectivities. Subsequently, the glucosides were coupled with 2-azido-1,4-naphthoquinone to produce a new series of 1,2,3-1H-triazolyl O-glucoside derivatives through a click reaction.

Supporting Information

 
  • References

  • 1 Crucho CI. C, Correia-da-Silva P, Petrova KT, Barros MT. Carbohydr. Res. 2015; 402: 124
    • 2a Xiang S, He J, Tan JY, Liu X.-W. J. Org. Chem. 2014; 79: 11473
    • 2b Ding F, Ji L, William R, Chai H, Liu X.-W. Beilstein J. Org. Chem. 2014; 10: 1325
  • 3 Lewis A, Stefanuti I, Swain SA, Smith SA, Taylor RJ. K. Org. Biomol. Chem. 2003; 1: 104
  • 4 Ichikawa Y, Hirata K, Ohbayashi M, Isobe M. Chem. Eur. J. 2004; 10: 3241
  • 5 Sabitha G, Reddy SS. S, Yadav JS. Tetrahedron Lett. 2011; 52: 2407
    • 6a Kaeothip S, Demchenko AV. Carbohydr. Res. 2011; 346: 1371
    • 6b Whitfield DM. Carbohydr. Res. 2015; 403: 69
  • 7 Ferrier RJ, Prasad N. J. Chem. Soc. C 1969; 570
  • 8 Gómez AM, Lobo F, Uriel C, López JC. Eur. J. Org. Chem. 2013; 7221
  • 9 Saeeng R, Siripru O, Sirion U. Heterocycles 2015; 91: 849
  • 10 Srinivas B, Reddy TR, Krishna PR, Kashyap S. Synlett 2014; 25: 1325
  • 11 Bound D, James B, Srinivas P. Synth. Commun. 2014; 44: 2565
  • 12 Chen P, Lin L. Tetrahedron 2013; 69: 4524
  • 13 Khan AT, Basha RS, Lal M. ARKIVOC 2013; (ii): 201
  • 14 Freitas JC. R, Couto TR, Paulino AA. S, de Freitas JR, Malvestiti I, Oliveira RA, Menezes PH. Tetrahedron 2012; 68: 10611
  • 15 Balamurugan R, Koppolu SR. Tetrahedron 2009; 65: 8139
  • 16 Nagaraj P, Ramesh NG. Eur. J. Org. Chem. 2008; 4607
  • 17 de Oliveira RN, de Melo AC. N, Srivastava RM. Sinou D. Heterocycles 2006; 68: 2607
  • 18 Du W, Hu Y. Synth. Commun. 2006; 36: 2035
  • 19 de Oliveira RN, de Freitas JR, Srivastava RM. Tetrahedron Lett. 2002; 43: 2141
  • 20 Guchhait G, Misra AK. Catal. Lett. 2011; 141: 925
  • 21 Toshima K, Ishizuka T, Malsuo G, Nakata M. Synlett 1995; 306
    • 22a Oba M, Ueno Y, Kitani S, Hayakawa T, Takahashi T, Suzuki T, Sato M, Ikeda K. Heterocycles 2014; 89: 69
    • 22b Ikeda K, Ueno Y, Kitani S, Nishino R, Sato M. Synlett 2008; 1027
  • 23 Bolm C, Legros J, Le Paih J, Zani L. Chem. Rev. 2004; 104: 6217
  • 24 Masson C, Soto J, Bessodes M. Synlett 2000; 1281
  • 25 Tilve RD, Alexander MV, Khandekar AC, Samant SD, Kanetkar VR. J. Mol. Catal. A: Chem. 2004; 223: 237
  • 26 Naik PU, Nara SJ, Harjani JR, Salunkhe MM. J. Mol. Catal. A: Chem. 2005; 234: 35
  • 27 Zhang G, Liu Q, Shi L, Wang J. Tetrahedron 2008; 64: 339
  • 28 Chen P, Wang S. Tetrahedron 2012; 68: 5356
  • 29 Tan HY, Xiang H, Leng WL, Liu X.-W. RSC Adv. 2014; 4: 34816
  • 30 Zhou J, Chen H, Shan J, Li J, Yang G, Chen X, Xin K, Zhang J, Tang J. J. Carbohydr. Chem. 2014; 33: 313
    • 31a Rostovtsev VV, Green LG, Fokin VV, Sharpless KB. Angew. Chem. Int. Ed. 2002; 41: 2596
    • 31b Tornøe CW, Christensen C, Meldal MP. J. Org. Chem. 2002; 67: 3057
    • 31c Meldal M, Tornøe CW. Chem. Rev. 2008; 108: 2952
    • 32a Dedola S, Hughes DL, Nepogodiev SA, Rejzek M, Field RA. Carbohydr. Res. 2010; 345: 1123
    • 32b Tiwari VK, Kumar A, Schmidt RR. Eur. J. Org. Chem. 2012; 2945
    • 32c da Silva GB, Guimarães BM, Assis SP. O, Lima VL. M, de Oliveira RN. J. Braz. Chem. Soc. 2013; 24: 914
    • 32d Goyard D, Docsa T, Gergely P, Praly J.-P, Vidal S. Carbohydr. Res. 2015; 402: 245
  • 33 Mangsang W, Sirion U, Saeeng R. Carbohydr. Res. 2013; 375: 79
  • 34 Stefani HA, Silva NC. S, Manarin F, Lüdtke DS, Zukerman-Schpector J, Madureira LS, Tiekink ER. T. Tetrahedron Lett. 2012; 53: 1742
  • 35 Yadav JS, Reddy BV. S, Chary DN, Reddy ChS. Tetrahedron Lett. 2008; 49: 2649
    • 36a da Cruz EH. G, Hussene CM. B, Dias GG, Diogo EB. T, de Melo IM. M, Rodrigues BL, da Silva MG, Valença WO, Camara CA, de Oliveira RN, de Paiva YG, Goulart MO. F, Cavalcanti BC, Pessoa C, Da Silva EN. Jr. Bioorg. Med. Chem. 2014; 22: 1608
    • 36b Diogo EB. T, Dias GG, Rodrigues BL, Guimarães TT, Valença WO, Camara CA, de Oliveira RN, da Silva MG, Ferreira VF, de Paiva YG, Goulart MO. F, Menna-Barreto RF. S, Castro SL, da Silva EN. Jr. Bioorg. Med. Chem. 2013; 21: 6337
    • 36c Tandon VK, Singh RV, Yadav DB. Bioorg. Med. Chem. Lett. 2004; 14: 2901
    • 36d Lin L, Shen Q, Chen G.-R, Xie J. Bioorg. Med. Chem. 2008; 16: 9757
  • 37 do Nascimento WS, Camara CA, de Oliveira RN. Synthesis 2011; 3220
  • 38 Juaristi E, Cuevas G. Tetrahedron 1992; 48: 5019
  • 39 Dunkerton LV, Adair NK, Euske JM, Brady KT, Robinson PD. J. Org. Chem. 1988; 53: 845
  • 40 Abboud JL. M, Foces-Foces C, Notario R, Trifonov RE, Volovodenko AP, Vladimir A, Ostrovskii VA, Alkorta I, Elguero J. Eur. J. Org. Chem. 2001; 3013
  • 41 Delatouche R, Mondon M, Gil A, Frapper G, Bachmann C, Bertrand P. Tetrahedron 2011; 67: 401
  • 42 Bettadaiah BK, Srinivas P. Tetrahedron Lett. 2003; 44: 7257
  • 43 Freitas JC. R, de Freitas JR, Menezes PH. J. Braz. Chem. Soc. 2010; 21: 2169
  • 44 Saeeng R, Sirion U, Sirichan Y, Trakulsujaritchok T, Sahakitpichan P. Heterocycles 2010; 81: 2569
    • 45a Watanabe Y, Itoh T, Sakakibara T. Carbohydr. Res. 2009; 344: 516
    • 45b Drew MD, Wall MC, Kim JT. Tetrahedron Lett. 2012; 53: 2833
  • 46 Choudhary VR, Dumbre DK, Patil SK. RSC Adv. 2012; 2: 7061
    • 48a Bräse S, Gil C, Knepper K, Zimmermann V. Angew. Chem. Int. Ed. 2005; 44: 5188
    • 48b Haldón E, Álvarez E, Nicasio MC, Pérez PJ. Chem. Commun. 2014; 50: 8978
  • 49 Shull BK, Wu Z, Koreeda M. J. Carbohydr. Chem. 1996; 15: 955
    • 50a Chmielewski M, Fokt I, Grodner J, Grynkiewicz G, Szeja W. J. Carbohydr. Chem. 1989; 8: 735
    • 50b Levecque P, Gammon DW, Kinfe HH, Jacobs P, De Vos D, Sels B. Adv. Synth. Catal. 2008; 350: 1557
  • 51 Williams DB. G, Simelane SB, Kinfe HH. Org. Biomol. Chem. 2012; 10: 5636
  • 52 Marco-Contelles J, Ruiz-Caro J. J. Org. Chem. 1999; 64: 8302