galactose has been researched along with idopyranose in 30 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 2 (6.67) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 10 (33.33) | 29.6817 |
2010's | 14 (46.67) | 24.3611 |
2020's | 4 (13.33) | 2.80 |
Authors | Studies |
---|---|
Serianni, AS; Zajicek, J; Zhu, Y | 1 |
Momany, F; Schnupf, U; Willett, JL | 1 |
Aikawa, Y; Arai, S; Inoue, K; Kitahara, K; Masuda-Hanada, T | 1 |
Bendiak, B; Berden, G; Brown, DJ; Eyler, JR; Oomens, J; Stefan, SE; Steill, JD | 1 |
Hu, Y; Liu, G; Mao, J; Tu, Z; Wang, H; Yang, Y; Zhang, J | 1 |
DEKKER, CA; HASHIZUME, T | 1 |
Chang, SW; Chen, CS; Chi, FC; Hung, SC; Kulkarni, SS; Lee, JC; Liao, CC; Liu, YH; Puranik, R; Wang, CC; Wen, YS | 1 |
Boros, S; Kuszmann, J; Medgyes, G | 1 |
Chang, CW; Chang, H; Czyryca, PG; Kao, J; Li, J; Wang, J | 1 |
Fyvie, WS; Morton, M; Peczuh, MW | 1 |
Ke, W; Whitfield, DM | 1 |
Kurihara, Y; Ueda, K | 1 |
Polat, T; Wong, CH | 1 |
Fügedi, P; Kajtár-Peredy, M; Osztrovszky, G; Tatai, J | 1 |
FISCHER, HO; GROSHEINTZ, JM | 1 |
Caravano, A; Field, RA; Percy, JM; Rinaudo, G; Roig, R; Singh, K | 1 |
Arumugam, M; Beulaja, S; Manikandan, R; Meiyalagan, V; Sivakumar, MR; Sundaram, R; Thiagarajan, R | 1 |
Lian, G; Lin, F; Zhou, Y | 1 |
Czechura, P; Echeverria, B; Guedes, N; Martin-Lomas, M; Michelena, O; Reichardt, NC; Ruiz, A | 1 |
Balestri, F; Buggiani, I; Cappiello, M; Del-Corso, A; Moschini, R; Mura, U; Pelosi, P; Rotondo, R | 1 |
Blériot, Y; Cañada, FJ; Díaz, D; Jiménez-Barbero, J; Martín-Santamaría, S; Poveda, A; Rauter, AP; Sardinha, J; Sollogoub, M; Unione, L; Xu, B; Zhang, Y | 1 |
Abate, M; Balestri, F; Cappiello, M; Del-Corso, A; Moschini, R; Mura, U; Rotondo, R | 1 |
Ferro, V; Mohamed, S | 1 |
Izumori, K; Sakoguchi, H; Sato, M; Yoshihara, A | 1 |
Hevey, R; Ling, CC | 1 |
Bereczky, Z; Borbás, A; Demeter, F; Gyöngyösi, T; Herczeg, M; Kövér, KE | 1 |
Fleet, GWJ; Izumori, K; Jenkinson, SF; Liu, Z; Wormald, MR; Yoshihara, A | 1 |
Balestri, F; Cappiello, M; Del Corso, A; Moschini, R; Mura, U; Pineschi, C; Poli, G; Tuccinardi, T | 1 |
de Gelder, R; Haasnoot, CAG; Kellenbach, ER; Kooijman, H | 1 |
Cloutier, M; Gauthier, C; Lavoie, S | 1 |
1 review(s) available for galactose and idopyranose
Article | Year |
---|---|
Synthetic Approaches to L-Iduronic Acid and L-Idose: Key Building Blocks for the Preparation of Glycosaminoglycan Oligosaccharides.
Topics: Carbohydrate Conformation; Glycosaminoglycans; Hexoses; Iduronic Acid; Oligosaccharides; Stereoisomerism | 2015 |
29 other study(ies) available for galactose and idopyranose
Article | Year |
---|---|
Acyclic forms of [1-(13)C]aldohexoses in aqueous solution: quantitation by (13)C NMR and deuterium isotope effects on tautomeric equilibria.
Topics: Carbon Isotopes; Deuterium; Galactose; Glucose; Hexoses; Magnetic Resonance Spectroscopy; Mannose | 2001 |
DFTMD studies of glucose and epimers: anomeric ratios, rotamer populations, and hydration energies.
Topics: Galactose; Glucose; Hexoses; Hydrogen Bonding; Mannose; Molecular Dynamics Simulation; Quantum Theory; Solvents; Spectrum Analysis; Stereoisomerism; Thermodynamics; Water | 2010 |
HPLC separation of all aldopentoses and aldohexoses on an anion-exchange stationary phase prepared from polystyrene-based copolymer and diamine: the effect of NaOH eluent concentration.
Topics: Arabinose; Chromatography, High Pressure Liquid; Chromatography, Ion Exchange; Diamines; Galactose; Glucose; Hexoses; Mannose; Pentoses; Polymers; Polystyrenes; Ribose; Xylose | 2011 |
Direct evidence for the ring opening of monosaccharide anions in the gas phase: photodissociation of aldohexoses and aldohexoses derived from disaccharides using variable-wavelength infrared irradiation in the carbonyl stretch region.
Topics: Anions; Carbohydrate Conformation; Disaccharides; Fourier Analysis; Galactose; Gases; Glucose; Hexoses; Hydrogen Bonding; Infrared Rays; Lactones; Lasers; Mannose; Mass Spectrometry; Models, Molecular; Spectrophotometry, Infrared | 2011 |
Insight into the Mechanism of Reduced IgG/IgE Binding Capacity in Ovalbumin as Induced by Glycation with Monose Epimers through Liquid Chromatography and High-Resolution Mass Spectrometry.
Topics: Animals; Chickens; Egg Hypersensitivity; Eggs; Galactose; Glucose; Glycosylation; Hexoses; Humans; Immunoglobulin E; Immunoglobulin G; Mannose; Mass Spectrometry; Ovalbumin | 2020 |
2,5-Anhydro-L-idose, a product of the acid hydrolysis of 1,2-O-isopropylidene-5, 6-anhydro-alpha-D-glucofuranose.
Topics: Alkenes; Hexoses; Hydrolysis | 1958 |
From D-glucose to biologically potent L-hexose derivatives: synthesis of alpha-L-iduronidase fluorogenic detector and the disaccharide moieties of bleomycin A2 and heparan sulfate.
Topics: Bleomycin; Disaccharides; Glucose; Heparitin Sulfate; Hexoses; Iduronic Acid; Iduronidase; Molecular Conformation | 2004 |
Synthesis of 2,5-anhydro-(beta-d-glucopyranosyluronate)- and (alpha-l-idopyranosyluronate)-d-mannitol hexa-O-sulfonate hepta sodium salt.
Topics: Carbohydrate Conformation; Disaccharides; Glucuronic Acid; Hexoses; Iduronic Acid; Molecular Structure; Salts; Sodium Acetate; Sodium Hydroxide; Sulfuric Acid Esters; Thioglycosides | 2004 |
Synthesis of an unusual branched-chain sugar, 5-C-methyl-L-idopyranose for SAR studies of pyranmycins: implication for the future design of aminoglycoside antibiotics.
Topics: Aminoglycosides; Anti-Bacterial Agents; Hexoses; Microbial Sensitivity Tests; Structure-Activity Relationship | 2004 |
Synthesis of 2-iodo-2-deoxy septanosides from a D-xylose-based oxepine: intramolecular cyclization in the absence of a glycosyl acceptor.
Topics: Cyclization; Glycosides; Glycosylation; Heterocyclic Compounds, 1-Ring; Hexoses; Oxepins; Oxidation-Reduction; Succinimides; Xylose | 2004 |
A selective Sc(OTf)3-catalyzed trialkylsilyl ether to acetyl ester exchange reaction with beta-l-idopyranoside and 3,4-O-isopropylidene-beta-D-galactopyranoside derivatives.
Topics: Acetates; Ethers; Hexoses; Methods; Monosaccharides; Silanes; Uronic Acids | 2004 |
An investigation of the pyranose ring interconversion path of alpha-L-idose calculated using density functional theory.
Topics: Carbohydrate Conformation; Hexoses; Models, Molecular; Models, Theoretical | 2006 |
Anomeric reactivity-based one-pot synthesis of heparin-like oligosaccharides.
Topics: Carbohydrate Sequence; Chemistry, Organic; Disaccharides; Glycosylation; Heparin; Hexoses; Hydrogen; Models, Chemical; Molecular Sequence Data; Oligosaccharides; Oxygen; Polysaccharides; Pyrans; Uronic Acids | 2007 |
An efficient synthesis of L-idose and L-iduronic acid thioglycosides and their use for the synthesis of heparin oligosaccharides.
Topics: Heparin; Hexoses; Iduronic Acid; Molecular Structure; Oligosaccharides; Thioglycosides | 2008 |
Synthesis of 6-nitro-6-desoxy-D-glucose and 6-nitro-6-desoxy-L-idose.
Topics: Glucose; Hexoses | 1948 |
Developing an asymmetric, stereodivergent route to selected 6-deoxy-6-fluoro-hexoses.
Topics: Fucose; Hexoses; Hydroxylation | 2009 |
1, 2 di-substituted idopyranose from Vitex negundo L. protects against streptozotocin-induced diabetes by inhibiting nuclear factor-kappa B and inducible nitric oxide synthase expression.
Topics: Animals; Anti-Inflammatory Agents; Diabetes Mellitus, Experimental; Enzyme Inhibitors; Hexoses; Histocytochemistry; Hypoglycemic Agents; Immunohistochemistry; Kidney; Liver; Mice; Microscopy; NF-kappa B; Nitric Oxide Synthase Type II; Pancreas; Treatment Outcome; Vitex | 2011 |
Synthesis of Fondaparinux: modular synthesis investigation for heparin synthesis.
Topics: Anticoagulants; Carbohydrate Sequence; Fondaparinux; Glucose; Glycosides; Glycosylation; Heparin; Hexoses; Molecular Sequence Data; Polysaccharides | 2013 |
Toward the solid-phase synthesis of heparan sulfate oligosaccharides: evaluation of iduronic acid and idose building blocks.
Topics: Glycosylation; Heparitin Sulfate; Hexoses; Iduronic Acid; Molecular Structure | 2013 |
L-Idose: an attractive substrate alternative to D-glucose for measuring aldose reductase activity.
Topics: Aldehyde Reductase; Animals; Biocatalysis; Cattle; Glucose; Hexoses; Humans; Imidazolidines; Kinetics; Oxidation-Reduction; Substrate Specificity | 2015 |
Conformational Plasticity in Glycomimetics: Fluorocarbamethyl-L-idopyranosides Mimic the Intrinsic Dynamic Behaviour of Natural Idose Rings.
Topics: Biological Factors; Fluorine; Hexoses; Magnetic Resonance Spectroscopy; Models, Molecular; Molecular Conformation; Nuclear Magnetic Resonance, Biomolecular; Thermodynamics | 2015 |
Modulation of aldose reductase activity by aldose hemiacetals.
Topics: Acetals; Aldehyde Reductase; Hexoses; Humans; Kinetics | 2015 |
Screening of biologically active monosaccharides: growth inhibitory effects of d-allose, d-talose, and l-idose against the nematode Caenorhabditis elegans.
Topics: Animals; Anthelmintics; Axenic Culture; Caenorhabditis elegans; Glucose; Hexokinase; Hexoses; Phosphorylation; Structure-Activity Relationship | 2016 |
Studies on the 6-homologation of β-D-idopyranosides.
Topics: Hexoses; Stereoisomerism | 2017 |
Replacement of the L-iduronic acid unit of the anticoagulant pentasaccharide idraparinux by a 6-deoxy-L-talopyranose - Synthesis and conformational analysis.
Topics: Anticoagulants; Deoxy Sugars; Heparin; Hexoses; Humans; Iduronic Acid; Magnetic Resonance Spectroscopy; Molecular Conformation; Oligosaccharides; Sulfonic Acids | 2018 |
d-Idose, d-Iduronic Acid, and d-Idonic Acid from d-Glucose via Seven-Carbon Sugars.
Topics: Carbohydrate Conformation; Glucose; Heptoses; Hexoses; Iduronic Acid; Molecular Structure; Sugar Acids | 2019 |
Aldose Reductase Differential Inhibitors in Green Tea.
Topics: Aldehyde Reductase; Catalytic Domain; Catechin; Enzyme Inhibitors; Gallic Acid; Glutathione; Hexoses; Humans; Models, Molecular; Molecular Docking Simulation; Molecular Dynamics Simulation; Plant Extracts; Tea | 2020 |
The conformation of the idopyranose ring revisited: How subtle O-substituent induced changes can be deduced from vicinal
Topics: Carbohydrate Conformation; Hexoses; Magnetic Resonance Spectroscopy; Models, Molecular; Oxygen | 2020 |
C7 Epimerization of Benzylidene-Protected β-d-Idopyranosides Brings Structural Insights into Idose Conformational Flexibility.
Topics: Acetals; Hexoses; Lewis Acids; Molecular Conformation | 2022 |