Eckart Grabenhorst

Ontology type: schema:Person     

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Publications in SciGraph latest 50 shown

  • 2013-12 Golgi engineering of CHO cells by targeted integration of glycosyltransferases leads to the expression of novel Asn-linked oligosaccharide structures at secretory glycoproteins in BMC PROCEEDINGS
  • 2010-06-02 Biosimilarity of Recombinant Human EPO Products from CHO Cell Lines: A Carbohydrate Structural View in CELLS AND CULTURE
  • 2010-06-02 Quantitative N-Glycan Mapping of Glycoprotein Therapeutics by HPAEC-PAD: Glycosylation Characteristics of Different Recombinant Human EPO Products in CELLS AND CULTURE
  • 2002 Production of Defined Lycosylation Variants of Secreted Human Glycoprotein Therapeutics by Coexpression with Human Recombinant Glycosyl Transferases in BHK-21 Cells in NEW DEVELOPMENTS AND NEW APPLICATIONS IN ANIMAL CELL TECHNOLOGY
  • 2002 Targeting of Genetically Engineered Glycosyltransferases to In Vivo Functional Golgi Subcompartments of Mammalian Cells in CELL ENGINEERING
  • 2000 Intracellular Localization of Non-Secreted Recombinant β-Trace Protein in Vesicle-Like Structures of Baculovirus-Infected Insect Cells in ANIMAL CELL TECHNOLOGY: PRODUCTS FROM CELLS, CELLS AS PRODUCTS
  • 1999-07 Construction and characterization of stably transfected BHK-21 cells with human-type sialylation characteristic in CYTOTECHNOLOGY
  • 1999-02 Genetic engineering of recombinant glycoproteins and glycosylation pathway in mammalian host cells in GLYCOCONJUGATE JOURNAL
  • 1999 Genetic engineering of recombinant glycoproteins and the glycosylation pathway in mammalian host cells in GLYCOTECHNOLOGY
  • 1998-09 In vitro α1-3 or α1-4 fucosylation of type I and II oligosaccharides with secreted forms of recombinant human fucosyltransferases III and VI in GLYCOCONJUGATE JOURNAL
  • 1997 Construction of novel BHK-21 cell lines coexpressing Golgi resident or soluble forms of human α2,6-sialyltransferase and α1,3/4-fucosyltransferases together with secretory glycoproteins in ANIMAL CELL TECHNOLOGY
  • 1997 Expression of human α2, 6-Sialyltransferase in BHK-21A cells increases the sialylation of coexpressed human erythropoietin: NeuAc-transfer onto GalNAc(βl-4)GlcNAc-R motives in ANIMAL CELL TECHNOLOGY
  • 1996 “Brain-Tissue-Specific” Versus “Serum-Specific” Posttranslational Modification of Human Cerebrospinal Fluid Polypeptides with N-Linked Carbohydrates in BIOLOGY AND PHYSIOLOGY OF THE BLOOD-BRAIN BARRIER
  • 1993-08 S6.6 Comparison of the Posttranslational modifications of human proteins secreted from different baculovirus-infected insect cell lines in GLYCOCONJUGATE JOURNAL
  • 1993-08 S20.2 Initiation of O-glycosylation of proteins in GLYCOCONJUGATE JOURNAL
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