Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 61 checked references that resolve
resolves10.1002/med.20155Carbohydrate recognition by boronolectins, small molecules, and lectins
resolves10.1039/c2ra01138gRecent developments in the molecular recognition of carbohydrates by artificial receptors
resolves10.1002/cbic.201402549Sugar Recognition: Designing Artificial Receptors for Applications in Biological Diagnostics and Imaging
resolves10.1007/s000180300025Glycoconjugates in sperm function and gamete interactions: how much sugar does it take to sweet-talk the egg?
resolves10.1038/357589a0Complementarity between sperm surface β-l,4-galactosyl-transferase and egg-coat ZP3 mediates sperm–egg binding
resolves10.1126/science.1083182Antibody Domain Exchange Is an Immunological Solution to Carbohydrate Cluster Recognition
resolves10.1039/b414350gLectins: tools for the molecular understanding of the glycocode
resolves10.1002/anie.200704733Solvent Effects in Carbohydrate Binding by Synthetic Receptors: Implications for the Role of Water in Natural Carbohydrate Recognition
resolves10.1021/ja00077a064Electrophoretic resolution of monosaccharide enantiomers in borate-oligosaccharide complexation media
resolves10.1039/c39920000752Diastereo- and enantio-selective binding of octyl glucosides by an artificial receptor
resolves10.1021/ja00106a029Polyol Recognition by a Steroid-Capped Porphyrin. Enhancement and Modulation of Misfit Guest Binding by Added Water or Methanol
resolves10.1002/anie.199515961A New Family of Chiral Binaphthyl‐Derived Cyclophane Receptors: Complexation of Pyranosides
resolves10.1002/hlca.19970800323Molecular Recognition and Enantiomer Separations on a novel chiral stationary phase based on a 9,9′‐spirobi[9<i>H</i>‐fluorene]‐derived molecular cleft
resolves10.1021/ol070492lDiastereomeric Recognition of Chiral Foldamer Receptors for Chiral Glucoses
resolves10.1002/chem.200902514A Chiral Pyrrolic Tripodal Receptor Enantioselectively Recognizes β‐Mannose and β‐Mannosides
resolves10.1021/jo1004263Evaluation of Amino Acids as Chiral Ligands for the Enantiodifferentiation of Carbohydrates by TOCSY NMR
resolves10.1039/c1cc10964bExclusive enantioselective recognition of glucopyranosides by inherently chiral hemicryptophanes
resolves10.1038/374345a0Chiral discrimination of monosaccharides using a fluorescent molecular sensor
resolves10.1039/b501249jChemoselective and enantioselective fluorescent recognition of sugar alcohols by a bisboronic acid receptor
resolves10.1002/ejoc.200600245An Enantioselective Fluorescence Sensor for Glucose Based on a Cyclic Tetrapeptide Containing Two Boronic Acid Binding Sites
resolves10.1002/anie.201409124Affinity Enhancement by Dendritic Side Chains in Synthetic Carbohydrate Receptors
resolves10.1038/nchem.1409A simple and accessible synthetic lectin for glucose recognition and sensing
resolves10.1002/cbic.201500183The Utilities of Chemical Reactions and Molecular Tools for O‐GlcNAc Proteomic Studies
resolves10.1039/C4CS00038BO-GlcNAc and neurodegeneration: biochemical mechanisms and potential roles in Alzheimer's disease and beyond
resolves10.1021/jo502335uCarbohydrate Receptors Combining Both a Macrocyclic Building Block and Flexible Side Arms as Recognition Units: Design, Syntheses, and Binding Studies
resolves10.1002/anie.200602412A Self‐Assembled Pyrrolic Cage Receptor Specifically Recognizes β‐Glucopyranosides
resolves10.1002/anie.201308879Cucurbit[7]uril: A High‐Affinity Host for Encapsulation of Amino Saccharides and Supramolecular Stabilization of Their α‐Anomers in Water
resolves10.1021/jo301966zMolecular Recognition of<i>N</i>-Acetylneuraminic Acid by Acyclic Pyridinium- and Quinolinium-Based Receptors in Aqueous Media: Recognition through Combination of Cationic and Neutral Recognition Sites
resolves10.1021/ol051230rRecognition of Anionic Carbohydrates by an Artificial Receptor in Water
resolves10.1002/qsar.200320011Bicyclic Organo‐Peptides as Selective Carbohydrate Receptors: Design, Solid‐phase Synthesis, and on‐bead Binding Capability
resolves10.1002/ejoc.200700518Specific Recognition of Disaccharides in Water by an Artificial Bicyclic Carbohydrate Receptor
The 5 references without a DOI — listed, not checked
no DOI — not checkedThe Sugar Code-Fundamentals of Glycoscience, ed. H.-J. Gabius, Wiley-Blackwell, Weinheim, 2009
no DOI — not checkedCarbohydrate Recognition: Biological Problems, Methods and Applications, ed. B. Wang and G.-J. Boons, Wiley, Hoboken, 2011
no DOI — not checkedC6SC05399H-(cit2f)/*[position()=1]
no DOI — not checkedC6SC05399H-(cit17)/*[position()=2]
no DOI — not checkedC6SC05399H-(cit23)/*[position()=1]
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