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Chemistry (Weinheim an Der Bergstrasse, Germany)|April 3, 2024
Chemoenzymatic Synthesis of Tri-antennary N-Glycans Terminating in Sialyl-Lewisx Reveals the Importance of Glycan Complexity for Influenza A Virus Receptor BindingTiehai Li, Cindy M Spruit, Na Wei, et al.JACS Au|April 27, 2023
Well-Defined Heparin Mimetics Can Inhibit Binding of the Trimeric Spike of SARS-CoV-2 in a Length-Dependent MannerLifeng Sun, Pradeep Chopra, Ilhan Tomris, et al.Protein Science : a Publication of the Protein Society|July 26, 2020
Drivers of recombinant soluble influenza A virus hemagglutinin and neuraminidase expression in mammalian cellsRoosmarijn van der Woude, Hannah L Turner, Ilhan Tomris, et al.Biorxiv : the Preprint Server for Biology|December 9, 2024
Epistasis in the receptor binding domain of contemporary H3N2 viruses that reverted to bind sialylated diLacNAc repeatsRuonan Liang, Francesca Peccati, Niels L D Ponse, et al.Glycobiology|June 1, 2022
Wild and domestic animals variably display Neu5Ac and Neu5Gc sialic acidsNikoloz Nemanichvili, Cindy M Spruit, Alinda J Berends, et al.Cell Host & Microbe|March 14, 2015
A human-infecting H10N8 influenza virus retains a strong preference for avian-type receptorsHeng Zhang, Robert P de Vries, Netanel Tzarum, et al.Viruses|April 3, 2021
Tissue Microarrays to Visualize Influenza D Attachment to Host Receptors in the Respiratory Tract of Farm AnimalsNikoloz Nemanichvili, Alinda J Berends, Richard W Wubbolts, et al.Angewandte Chemie (International Ed. in English)|May 21, 2019
Protecting-Group-Controlled Enzymatic Glycosylation of Oligo-N-Acetyllactosamine DerivativesIvan A Gagarinov, Tiehai Li, Na Wei, et al.Archives of Virology|November 7, 2015
Amino acid residues at positions 222 and 227 of the hemagglutinin together with the neuraminidase determine binding of H5 avian influenza viruses to sialyl Lewis XTakahiro Hiono, Masatoshi Okamatsu, Manabu Igarashi, et al.Macromolecular Bioscience|September 16, 2022
Enzymatic Sialylation of Synthetic Multivalent Scaffolds: From 3'-Sialyllactose Glycomacromolecules to Novel NeoglycosidesPatrick B Konietzny, Hannelore Peters, Marc L Hofer, et al.Pageof 11