Search Results - "Pazynina, Galina V."

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  1. 1

    6-sulfo sialyl Lewis X is the common receptor determinant recognized by H5, H6, H7 and H9 influenza viruses of terrestrial poultry by Gambaryan, Alexandra S, Tuzikov, Alexander B, Pazynina, Galina V, Desheva, Julia A, Bovin, Nicolai V, Matrosovich, Mikhail N, Klimov, Alexander I

    Published in Virology journal (24-07-2008)
    “…Influenza A viruses of domestic birds originate from the natural reservoir in aquatic birds as a result of interspecies transmission and adaptation to new host…”
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    Comparative study of the glycan specificities of cell-bound human tandem-repeat-type galectin-4, -8 and -9 by Vokhmyanina, Olga A, Rapoport, Eugenia M, André, Sabine, Severov, Vyacheslav V, Ryzhov, Ivan, Pazynina, Galina V, Korchagina, Elena, Gabius, Hans-J, Bovin, Nicolai V

    Published in Glycobiology (Oxford) (01-09-2012)
    “…Adhesion/growth-regulatory galectins (gals) exert their functionality by the cis/trans-cross-linking of distinct glycans after initial one-point binding. In…”
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    Receptor-binding properties of swine influenza viruses isolated and propagated in MDCK cells by Gambaryan, Alexandra S., Karasin, Alexander I., Tuzikov, Alexander B., Chinarev, Alexander A., Pazynina, Galina V., Bovin, Nicolai V., Matrosovich, Mikhail N., Olsen, Christopher W., Klimov, Alexander I.

    Published in Virus research (01-12-2005)
    “…To study the receptor specificities of H1 and H3 influenza viruses isolated recently from pigs, we employed the analogues of natural receptors, namely…”
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    Synthesis of blood group A and B (type 2) tetrasaccharides. A strategy with fucosylation at the last stage by Kunetskiy, Roman A., Pazynina, Galina V., Ivanov, Igor A., Bovin, Nicolai V.

    Published in Carbohydrate research (01-12-2020)
    “…The traditionally used strategy for the synthesis of blood group A and B tetrasaccharides includes 2′-O-fucosylation of lactosamine followed by insertion of an…”
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  5. 5

    Specificity of widely used lectins as probed with oligosaccharide and plant polysaccharide arrays by Shilova, Nadezhda V., Galanina, Oxana E., Polyakova, Svetlana M., Nokel, Alexey Yu, Pazynina, Galina V., Golovchenko, Victoria V., Patova, Olga A., Mikshina, Polina V., Gorshkova, Tatayana A., Bovin, Nicolai V.

    Published in Histochemistry and cell biology (01-12-2024)
    “…Glycan-binding specificity was studied for Jacalin, RCA 120, SBA, PHA-L, PHA-E, WGA, UEA, AAL, LTL, LEL, SNA, DSA, LCA, MAH and Con A, lectins widely used in…”
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  6. 6

    Recombinant SARS-CoV-2 S Protein Binds to Glycans of the Lactosamine Family in vitro by Ryzhikov, Alexandr B., Onkhonova, Galina S., Imatdinov, Ilnaz R., Gavrilova, Elena V., Maksyutov, Rinat A., Gordeeva, Elena A., Pazynina, Galina V., Ryzhov, Ivan M., Shilova, Nadezhda V., Bovin, Nicolai V.

    Published in Biochemistry (Moscow) (01-03-2021)
    “…Many viruses, beside binding to their main cell target, interact with other molecules that promote virus adhesion to the cell; often, these additional targets…”
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  7. 7

    Receptor-binding properties of influenza viruses isolated from gulls by Gambaryan, Alexandra S., Matrosovich, Tatyana Y., Boravleva, Elisaveta Y., Lomakina, Natalia F., Yamnikova, Svetlana S., Tuzikov, Alexander B., Pazynina, Galina V., Bovin, Nicolai V., Fouchier, Ron A.M., Klenk, Hans-Dieter, Matrosovich, Mikhail N.

    Published in Virology (New York, N.Y.) (01-09-2018)
    “…Ducks, gulls and shorebirds represent the major hosts of influenza A viruses (IAVs) in nature, but distinctions of IAVs in different birds are not well…”
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  8. 8

    Glycan-binding profile of DC-like cells by Rapoport, Eugenia M., Moiseeva, Ekaterina V., Aronov, Dmitry A., Khaidukov, Sergey V., Pazynina, Galina V., Tsygankova, Svetlana V., Ryzhov, Ivan M., Belyanchikov, Ivan M., Tyrtysh, Tatiana V., McCullough, Kenneth C., Bovin, Nicolai V.

    Published in Glycoconjugate journal (01-02-2020)
    “…Modification of vaccine carriers by decoration with glycans can enhance binding to and even targeting of dendritic cells (DCs), thus augmenting vaccine…”
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  9. 9

    Function-spacer-lipid constructs of Lewis and chimeric Lewis/ABH glycans. Synthesis and use in serological studies by Ryzhov, Ivan M., Korchagina, Elena Yu, Tuzikov, Alexander B., Popova, Inna S., Tyrtysh, Tatiana V., Pazynina, Galina V., Henry, Stephen M., Bovin, Nicolai V.

    Published in Carbohydrate research (29-11-2016)
    “…Seven lipophilic constructs containing Lewis (Lea, Leb, Ley) or chimeric Lewis/ABH (ALeb, BLeb, ALey, BLey) glycans were obtained starting from corresponding…”
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  10. 10

    Glycan recognition by human blood mononuclear cells with an emphasis on dendritic cells by Rapoport, Eugenia M., Khaidukov, Sergey V., Gaponov, Andrey M., Pazynina, Galina V., Tsygankova, Svetlana V., Ryzhov, Ivan M., Belyanchikov, Ivan M., Milona, Panagiota, Bovin, Nicolai V., McCullough, Kenneth C.

    Published in Glycoconjugate journal (01-04-2018)
    “…Dendritic cells (DCs) play crucial roles in innate and adaptive immune response, for which reason targeting antigen to these cells is an important strategy for…”
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    Synthesis of diglyceride conjugate of selectin ligand SiaLeX as a vector for targeting of drug-loaded liposomes by Vodovozova, Elena L., Pazynina, Galina V., Bovin, Nicolai V.

    Published in Mendeleev communications (01-03-2011)
    “…A conjugate of tetrasaccharide Sialyl Lewis X [SiaLe X, Neu5Acα2-3Galβ1-4(Fucα1-3)GlcNAcβ] 3-aminopropyl glycoside and…”
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  14. 14

    Synthesis of histo blood-group antigens A and B (type 2), xenoantigen Galα1-3Galβ1-4GlcNAc and related type 2 backbone oligosaccharides as haptens in spacered form by Pazynina, Galina V., Tyrtysh, Tatiana V., Bovin, Nicolai V.

    Published in Mendeleev communications (2002)
    “…The partial α-fucosylation of spacered (sp = CH 2CH 2CH 2NH 2) N-acetyl β-lactosamine derivative having free hydroxy groups at C-3 and C-2′ gives rise to…”
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  15. 15

    Synthesis of complex α2-3 sialooligosaccharides, including sulfated and fucosylated ones, using Neu5Acα2-3Gal as a building block by Pazynina, Galina V., Sablina, Marina A., Tuzikov, Alexander B., Chinarev, Alexander A., Bovin, Nicolai V.

    Published in Mendeleev communications (2003)
    “…3-Aminopropyl glycosides of Neu5Acα2-3Galβ, Neu5Acα2-3Galβ1-4GlcNAcβ, Neu5Acα2-3Galβ1-4(6-HSO 3)GlcNAcβ, Neu5Acα2-3Galβ1-3GalNAcα, Neu5Acα2-3Galβ1-3(6-HSO…”
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    Synthesis of Sug1-4GalNAcα disaccharides and their interaction with human blood antibodies by Pazynina, Galina V., Tsygankova, Svetlana V., Sablina, Marina A., Shilova, Nadezhda V., Paramonov, Alexander S., Chizhov, Alexander O., Bovin, Nicolai V.

    Published in Mendeleev communications (01-01-2023)
    “…[Display omitted] Disaccharides Sug1-4GalNAcα-Osp (Sug = Gal, Glc, GalNAc, GlcNAc in α- or β-configuration) were synthesized as spacer (sp) glycosides. Their…”
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  18. 18

    Synthesis of glycoprotein N-chain core fragment GlcNAcβ1-4(Fucα1-6)GlcNAc by Pazynina, Galina V., Tsygankova, Svetlana V., Bovin, Nicolai V.

    Published in Mendeleev communications (01-07-2015)
    “…Synthesis of Ac3GlcNAcβ(1-4)-3-Ac-6-BnGlcNTrocβ-O(CH2)3NHCOCF3, a convenient precursor for the preparation of 6-substituted derivatives of disaccharide…”
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  19. 19

    Synthesis of GalNGcα1-3GalNAcα disaccharide and its interaction with human blood antibodies by Pazynina, Galina V., Tsygankova, Svetlana V., Ryzhov, Ivan M., Shilova, Nadezhda V., Polyakova, Svetlana M., Paramonov, Alexander S., Formanovsky, Andrey A., Bovin, Nicolai V.

    Published in Mendeleev communications (01-05-2019)
    “…[Display omitted] We have synthesized GalNGcα1-3GalNAcα disaccharide, a glycoloyl analogue of GalNAcα1-3GalNAcα known as the core 5 motif of mucin-type…”
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  20. 20

    Synthesis of H (type 4) trisaccharide, key structural fragment of globo-H and fucosyl-GM1 cancer-associated antigens by Pazynina, Galina V., Tsygankova, Svetlana V., Ryzhov, Ivan M., Paramonov, Alexander S., Nicolai, Bovin, V.

    Published in Mendeleev communications (01-07-2018)
    “…[Display omitted] A convenient synthesis of Fucα1-2Galβ1-3GalNAcβ-OCH2CH2CH2NH2 (trisaccharide H type 4) is described. This glycan is the terminal part of…”
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