Search Results - "Blaszczyk‐Thurin, Magdalena"

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    Interaction between Heat Shock Proteins and Antimicrobial Peptides by Otvos, Laszlo, O, Insug, Rogers, Mark E, Consolvo, Patricia J, Condie, Barry A, Lovas, Sandor, Bulet, Philippe, Blaszczyk-Thurin, Magdalena

    Published in Biochemistry (Easton) (21-11-2000)
    “…Drosocin, pyrrhocoricin, and apidaecin, representing the short (18−20 amino acid residues) proline-rich antibacterial peptide family, originally isolated from…”
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    A DNA vaccine expressing tyrosinase-related protein-2 induces T-cell-mediated protection against mouse glioblastoma by O, InSug, Blaszczyk-Thurin, Magdalena, Shen, Chunpang T, Ertl, Hildegund C J

    Published in Cancer gene therapy (01-09-2003)
    “…A mouse glioblastoma cell line, termed GL261, was shown to express high levels of proteins involved in melanin biosynthesis such as the tyrosinase-related…”
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    Vaccination with carbohydrate peptide mimotopes promotes anti-tumor responses by Kieber-Emmons, Thomas, Luo, Ping, Qiu, Jianping, Chang, Tylis Y, O, Insug, Blaszczyk-Thurin, Magdalena, Steplewski, Zenon

    Published in Nature biotechnology (01-07-1999)
    “…Tumor-associated carbohydrate (TAC) antigens are important targets in cancer vaccine efforts. Carbohydrates are, however, frequently poor immunogens, in that…”
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    A dendritic cell vaccine induces protective immunity to intracranial growth of glioma by Insug, O, Ku, Geoffrey, Ertl, Hildegund C J, Blaszczyk-Thurin, Magdalena

    Published in Anticancer research (01-03-2002)
    “…The central nervous system is an immunologically privileged site hidden behind the blood brain barrier. Nevertheless, immune effector cells induced…”
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    Role of SA–Le a and E-selectin in metastasis assessed with peptide antagonist by O, Insug, Otvos, Laszlo, Kieber-Emmons, Thomas, Blaszczyk-Thurin, Magdalena

    Published in Peptides (New York, N.Y. : 1980) (01-05-2002)
    “…E-selectin ligand Sialyl–Lewis a (SA–Le a) carbohydrate is expressed on many carcinomas. Peptide mimicking SA–Le a (DLWDWVVGKPAG) was previously selected from…”
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    Peptide Mimicking Sialyl-Lewisa with Anti-inflammatory Activity by O, Insug, Kieber-Emmons, Thomas, Otvos, Laszlo, Blaszczyk-Thurin, Magdalena

    “…Peptides mimicking carbohydrate structure sialyl-Lewis a (SA-Lea) have been selected from a diverse dodecapeptide library using monoclonal antibody (MAb)…”
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    Peptide mimicking sialyl-Lewis(a) with anti-inflammatory activity by O, I, Kieber-Emmons, T, Otvos, L, Blaszczyk-Thurin, M

    “…Peptides mimicking carbohydrate structure sialyl-Lewis a (SA-Le(a)) have been selected from a diverse dodecapeptide library using monoclonal antibody (MAb)…”
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    Porcine Submaxillary Gland GDP-L-fucose:-D-Galactoside -2-L-Fucosyltransferase Is Likely a Counterpart of the Human Secretor Gene-encoded Blood Group Transferase by Jan Thurin, Magdalena Blaszczyk-Thurin

    Published in The Journal of biological chemistry (03-11-1995)
    “…Partial amino acid sequence of GDP-L-fucose:β-D-galactoside α-2-L-fucosyltransferase purified from porcine submaxillary glands was determined. Amino acid…”
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    Porcine Submaxillary Gland GDP-L-fucose:β-D-Galactoside α-2-L-Fucosyltransferase Is Likely a Counterpart of the Human Secretor Gene-encoded Blood Group Transferase (∗) by Thurin, Jan, Blaszczyk-Thurin, Magdalena

    Published in The Journal of biological chemistry (03-11-1995)
    “…Partial amino acid sequence of GDP-L-fucose:β-D-galactoside α-2-L-fucosyltransferase purified from porcine submaxillary glands was determined. Amino acid…”
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    A method that allows easy characterization of tumor-infiltrating lymphocytes by Kowalczyk, Dariusz W, Wlazlo, Anthony P, Blaszczyk-Thurin, Magdalena, Xiang, Z.Q, Giles-Davis, Wynetta, Ertl, Hildegund C.J

    Published in Journal of immunological methods (01-07-2001)
    “…A method was developed to compare the lymphocytic infiltrates in regressing vs. progressing experimental mouse tumors using a model for human papillomavirus-16…”
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    Elevated Expression of H Type GDP-L-Fucose:β-D-Galactoside α- 2-L-Fucosyltransferase is Associated with Human Colon Adenocarcinoma Progression by Sun, Jing, Thurin, Jan, Cooper, Harry S., Wang, Ping, Mackiewicz, Miroslaw, Steplewski, Zenon, Blaszczyk-Thurin, Magdalena

    “…GDP-L-fucose:β-D-galactoside α-2-L-fucosyltransferase (EC 2.4.1.69) is a key enzyme in the biosynthesis of fucosylated type 1 and 2 lactoseries structures,…”
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    A modified DNA vaccine to p53 induces protective immunity to challenge with a chemically induced sarcoma cell line by Deng, Honying, Kowalczyk, Dariusz, O, InSug, Blaszczyk-Thurin, Magdalena, Quan Xiang, Zhi, Giles-Davis, Wynetta, Ertl, Hildegund C.J

    Published in Cellular immunology (2002)
    “…Different vaccine constructs based on DNA vaccines and viral recombinant vaccines expressing mouse p53 were compared for induction of protective immune…”
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    Evaluation of deoxygenated oligosaccharide acceptor analogs as specific inhibitors of glycosyltransferases by Hindsgaul, O, Kaur, K J, Srivastava, G, Blaszczyk-Thurin, M, Crawley, S C, Heerze, L D, Palcic, M M

    Published in The Journal of biological chemistry (25-09-1991)
    “…The glycosyltransferases controlling the biosynthesis of cell-surface complex carbohydrates transfer glycosyl residues from sugar nucleotides to specific…”
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    Molecular recognition of the Lewis Y antigen by monoclonal antibodies by Blaszczyk-Thurin, Magdalena, Murali, Ramachandran, Westerink, M.A.Julie, Steplewski, Zenon, Co, Man Sung, Kieber-Emmons, Thomas

    Published in Protein engineering (01-05-1996)
    “…The murine monoclonal antibody BR55-2 is directed against the tumor-associated antigen Lewis Y oligosaccharide. The Lewis Y core antigen is a difucosylated…”
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    A monoclonal antibody to a multiphosphorylated, conformational epitope at the carboxy-terminus of p53 by Otvos, Laszlo, Hoffmann, Ralf, Xiang, Zhi Q., O, Insug, Deng, Hongying, Wysocka, Maria, Pease, Anne-Marie, Rogers, Mark E., Blaszczyk-Thurin, Magdalena, Ertl, Hildegund C.J.

    Published in Biochimica et biophysica acta (16-09-1998)
    “…Mutations of the gene encoding the tumor suppressor protein p53 are the most common molecular alterations of cancer cells found in about half of all human…”
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