Synthesis of methyl 2-deoxy-4,5:6,7-di-O-isopropylidene-D-arabino-hept-3-ulosonate and its use in the preparation of D-arabino-tetrahydroxybutylpyrimidine derivatives
Valpuesta Fernández, M.; López Herrera, F.J.; Gómez Pérez, C. Synthesis of methyl 2-deoxy-4,5:6,7-di-O-isopropylidene-D-arabino-hept-3-ulosonate and its use in the preparation of D-arabino-tetrahydroxybutylpyrimidine derivatives. Carbohydr. Res. 1983, 124, 333-337.
Stereoselective synthesis of nitropyrazolines: 1,3-dipolar cycloaddition of diazoalkanes to (E)-4,5,6,7,8-penta-O-acetyl-1,2,3-trideoxy-2-C-nitro-D-manno-oct-2-enitol
Mancera, M.; Rodríguez, E.; Roffé, I.; Galbis, J.A.; Conde, C.F.; Conde, A. Stereoselective synthesis of nitropyrazolines: 1,3-dipolar cycloaddition of diazoalkanes to (E)-4,5,6,7,8-penta-O-acetyl-1,2,3-trideoxy-2-C-nitro-D-manno-oct-2-enitol. Carbohydr. Res. 1991, 210, 327-332.
Preparation of 1-bromo-1-nitro-D-galacto (and-D-manno)-hept-1-enitols and their 1,3-dipolar cycloaddition reactions with diazoalkanes
Mancera, M.; Rodríguez, E.; Roffé, I.; Galbis, J.A. Preparation of 1-bromo-1-nitro-D-galacto (and-D-manno)-hept-1-enitols and their 1,3-dipolar cycloaddition reactions with diazoalkanes. Carbohydr. Res. 1994, 253, 307-316.
Synthesis of the C1-C9 core of Bengazole A: Harnessing the ambident nucleophilicity of 2-lithiooxazole
Shafer, C.M.; Molinski, T.F. Synthesis of the C1-C9 core of Bengazole A: Harnessing the ambident nucleophilicity of 2-lithiooxazole. Tetrahedron Lett. 1998, 39, 2903-2906.
Natural phosphate as Lewis acid catalyst: A simple and convenient method for acyclonucleoside synthesis
Alahiane, A.; Rochdi, A.; Taourirte, M.; Redwane, N.; Sebti, S.; Lazrek, H.B. Natural phosphate as Lewis acid catalyst: A simple and convenient method for acyclonucleoside synthesis. Tetrahedron Lett. 2001, 42, 3579-3581.
A convenient determination of chiral pteridines; application of fluorescented circular dichroism (FDCD) to the major pterin form Escherichia coli
Sugimoto, T.; Ikemoto, K.; Murata, Sh.; Tazawa, M.; Nomura, T.; Hagino, Y.; Ichinose, H.; Nagtsu, T.; Wada, A. A convenient determination of chiral pteridines; application of fluorescented circular dichroism (FDCD) to the major pterin form Escherichia coli. Heterocycles 2001, 54, 283-290.
Synthesis of 5-[2-(Guanin-9-yl)- and 5-[2-(2-Aminopurin-9-yl)ethyl(-2-D-ribo-(1′,2′,3′, 4′-tetrahydroxybutyl)- 1,3-dioxane
Kim, D.K.; Kim, Y.W.; Lee, N. Synthesis of 5-[2-(Guanin-9-yl)- and 5-[2-(2-Aminopurin-9-yl)ethyl(-2-D-ribo-(1′,2′,3′, 4′-tetrahydroxybutyl)- 1,3-dioxane. J. Heterocycl. Chem. 2001, 38, 45-51.
Synthesis of the first sialic acid analogues containing a γ-pyrone moiety
Ooi, H.Ch.; Marcuccio, S.M.; Jackson, W.R.; O'Keefe, D.F. Synthesis of the first sialic acid analogues containing a γ-pyrone moiety. Aust. J. Chem. 1999, 52, 1127-1130.
Synthesis of acyclo-C-nucleosides by ring transformation of 2(3)-formylglycals
Rudloff, I.; Peseke, K.; Reinke, H. Synthesis of acyclo-C-nucleosides by ring transformation of 2(3)-formylglycals. J. Prakt. Chem. 1998, 340, 334-340.
A facile synthesis of acyclo-C-nucleoside analogues from 2(3)-formylglycals
Rudloff, I.; Michalik, M.; Montero, A.; Peseke, K. A facile synthesis of acyclo-C-nucleoside analogues from 2(3)-formylglycals. Synthesis 2001, 2001, 1686-1692.
Ring transformations of 2-formylglycals with C,N-dinucleophiles
Montero, A.; Feist, H.; Michalik, M.; Quincoces, J.; Peseke, K. Ring transformations of 2-formylglycals with C,N-dinucleophiles. Synthesis 2002, 664-669.