Direct immobilization of gangliosides onto gold-carboxymethyldextran sensor surfaces by hydrophobic interaction: applications to antibody characterization.
暂无分享,去创建一个
E C Nice | B Catimel | N Hanai | A M Scott | A. Scott | E. Nice | L. Old | B. Catimel | N. Hanai | S. Welt | G. Ritter | L J Old | A. Burgess | F T Lee | G Ritter | S Welt | A W Burgess | F. Lee
[1] E C Nice,et al. Kinetic analysis of the interaction between the monoclonal antibody A33 and its colonic epithelial antigen by the use of an optical biosensor. A comparison of immobilisation strategies. , 1997, Journal of chromatography. A.
[2] A. Scott,et al. Clinical promise of tumour immunology , 1997, The Lancet.
[3] C R MacKenzie,et al. Quantitative Analysis of Bacterial Toxin Affinity and Specificity for Glycolipid Receptors by Surface Plasmon Resonance* , 1997, The Journal of Biological Chemistry.
[4] T. Wallimann,et al. Membrane-binding and lipid vesicle cross-linking kinetics of the mitochondrial creatine kinase octamer. , 1996, Biochemistry.
[5] A. Minton,et al. Kinetic analysis of biosensor data: elementary tests for self-consistency. , 1996, Trends in biochemical sciences.
[6] A. Plückthun,et al. Multivalent antibody fragments with high functional affinity for a tumor-associated carbohydrate antigen. , 1996, Journal of immunology.
[7] G. Gerisch,et al. Oriented binding of a lipid-anchored cell adhesion protein onto a biosensor surface using hydrophobic immobilization and photoactive crosslinking. , 1996, Analytical biochemistry.
[8] R C Stevens,et al. Cholera toxin binding affinity and specificity for gangliosides determined by surface plasmon resonance. , 1996, Biochemistry.
[9] W. Sawyer,et al. Characterisation of lipid‐protein interactions using a surface plasmon resonance biosensor , 1996, Biochemistry and molecular biology international.
[10] E C Nice,et al. Analysis of the interaction between a synthetic peptide of influenza virus hemagglutinin and monoclonal antibodies using an optical biosensor. , 1996, Molecular immunology.
[11] L. D. Ward,et al. Effects of solute multivalence on the evaluation of binding constants by biosensor technology: studies with concanavalin A and interleukin-6 as partitioning proteins. , 1995, Analytical biochemistry.
[12] T. K. Harden,et al. Kinetic analysis of phospholipase C beta isoforms using phospholipid-detergent mixed micelles. Evidence for interfacial catalysis involving distinct micelle binding and catalytic steps. , 1995, The Journal of biological chemistry.
[13] I. Chaiken,et al. Interpreting complex binding kinetics from optical biosensors: a comparison of analysis by linearization, the integrated rate equation, and numerical integration. , 1995, Analytical biochemistry.
[14] A. Plant,et al. Phospholipid/alkanethiol bilayers for cell-surface receptor studies by surface plasmon resonance. , 1995, Analytical biochemistry.
[15] Lena Stigh,et al. Methods for site controlled coupling to carboxymethyldextran surfaces in surface plasmon resonance sensors , 1995 .
[16] T. Pollard,et al. Vaccinia virus expresses a novel profilin with a higher affinity for polyphosphoinositides than actin. , 1994, Biochemistry.
[17] R. Karlsson,et al. Kinetic and Concentration Analysis Using BIA Technology , 1994 .
[18] L. Masson,et al. Stable immobilization of lipid vesicles for kinetic studies using surface plasmon resonance. , 1994, Analytical biochemistry.
[19] Wolfgang Knoll,et al. Self-Assembled Disulfide-Functionalized Amphiphilic Copolymers on Gold , 1994 .
[20] K. Shitara,et al. Chimeric anti-ganglioside GM2 antibody with antitumor activity. , 1994, Cancer research.
[21] M. Lackmann,et al. Synergies between micropreparative high-performance liquid chromatography and an instrumental optical biosensor. , 1994, Journal of chromatography. A.
[22] K. Shitara,et al. A new vector for the high level expression of chimeric antibodies in myeloma cells. , 1994, Journal of immunological methods.
[23] Claus Duschl,et al. A new class of thiolipids for the attachment of lipid bilayers on gold surfaces , 1994 .
[24] R W Glaser,et al. Antigen-antibody binding and mass transport by convection and diffusion to a surface: a two-dimensional computer model of binding and dissociation kinetics. , 1993, Analytical biochemistry.
[25] I. Brooks,et al. Determination of rate and equilibrium binding constants for macromolecular interactions using surface plasmon resonance: use of nonlinear least squares analysis methods. , 1993, Analytical biochemistry.
[26] T Pawson,et al. Kinetics of p56lck and p60src Src homology 2 domain binding to tyrosine-phosphorylated peptides determined by a competition assay or surface plasmon resonance. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[27] T Pawson,et al. Interactions between SH2 domains and tyrosine-phosphorylated platelet-derived growth factor beta-receptor sequences: analysis of kinetic parameters by a novel biosensor-based approach , 1993, Molecular and cellular biology.
[28] M. Kasuga,et al. A biosensor approach to probe the structure and function of the p85 alpha subunit of the phosphatidylinositol 3-kinase complex. , 1993, The Journal of biological chemistry.
[29] B. Liedberg,et al. Principles of biosensing with an extended coupling matrix and surface plasmon resonance , 1993 .
[30] Magnus Malmqvist,et al. Biospecific interaction analysis using biosensor technology , 1993, Nature.
[31] J C Briggs,et al. Cutaneous melanoma. , 1993, Journal of the American Academy of Dermatology.
[32] D. O'Shannessy,et al. Immobilization chemistries suitable for use in the BIAcore surface plasmon resonance detector. , 1992, Analytical biochemistry.
[33] M. Grätzel,et al. Self-assembly of thiolipid molecular layers on gold surfaces: optical and electrochemical characterization , 1992 .
[34] M. Masserini,et al. Fuc-GM1 ganglioside mimics the receptor function of GM1 for cholera toxin. , 1992, Biochemistry.
[35] V. Devita,et al. Biologic Therapy of Cancer , 1992 .
[36] I. Chaiken,et al. Analysis of macromolecular interactions using immobilized ligands. , 1992, Analytical biochemistry.
[37] Van Regenmortel,et al. Structure of antigens , 1992 .
[38] W. Dippold,et al. Immunorecognition of ganglioside epitopes: correlation between affinity and cytotoxicity of ganglioside antibodies. , 1992, European journal of cancer.
[39] R. Karlsson,et al. Kinetic analysis of monoclonal antibody-antigen interactions with a new biosensor based analytical system. , 1991, Journal of immunological methods.
[40] G. Ritter,et al. Ganglioside antigens expressed by human cancer cells. , 1991, Seminars in cancer biology.
[41] S. Loefas,et al. Immobilization of proteins to a carboxymethyldextran-modified gold surface for biospecific interaction analysis in surface plasmon resonance sensors. , 1991, Analytical biochemistry.
[42] E. Coligan. Current protocols in immunology , 1991 .
[43] E. Nice. Micropreparative LC of proteins , 1990, Nature.
[44] A. Houghton,et al. Homophilic binding of mouse monoclonal antibodies against GD3 ganglioside. , 1990, Journal of immunology.
[45] F. A. Cumar,et al. Gangliosides noncovalently bound to DEAE-Sephadex: application to purification of anti-ganglioside antibodies. , 1990, Analytical biochemistry.
[46] Bo Johnsson,et al. A novel hydrogel matrix on gold surfaces in surface plasmon resonance sensors for fast and efficient covalent immobilization of ligands , 1990 .
[47] A. Burgess,et al. Human granulocyte-macrophage colony-stimulating factor (hGM-CSF): identification of a binding site for a neutralizing antibody. , 1990, Growth factors.
[48] L. Old,et al. Immune and nonimmune effector functions of IgG3 mouse monoclonal antibody R24 detecting the disialoganglioside GD3 on the surface of melanoma cells. , 1987, Clinical immunology and immunopathology.
[49] R. G. Johnson,et al. A highly sensitive silicon chip microtransducer for air flow and differential pressure sensing applications , 1987 .
[50] D C Cullen,et al. Detection of immuno-complex formation via surface plasmon resonance on gold-coated diffraction gratings. , 1987, Biosensors.
[51] S. Hakomori,et al. Aberrant glycosylation in cancer cell membranes as focused on glycolipids: overview and perspectives. , 1985, Cancer research.
[52] M. Melamed,et al. Mouse monoclonal IgG3 antibody detecting GD3 ganglioside: a phase I trial in patients with malignant melanoma. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[53] Y. Hirabayashi,et al. A new method for purification of anti-glycosphingolipid antibody. Avian anti-hematoside (NeuGc) antibody. , 1983, Journal of biochemistry.
[54] G. Steele. Cancer: Principles and Practice of Oncology , 1983 .
[55] L. Old,et al. GD3, a prominent ganglioside of human melanoma. Detection and characterisation by mouse monoclonal antibody , 1982, The Journal of experimental medicine.
[56] V. Devita,et al. Cancer : Principles and Practice of Oncology , 1982 .
[57] Gill Dm. The arrangement of subunits in cholera toxin. , 1976 .
[58] D. Gill. The arrangement of subunits in cholera toxin. , 1976, Biochemistry.
[59] L. Svennerholm. CHROMATOGRAPHlC SEPARATION OF HUMAN BRAIN GANGLIOSIDES * , 1963, Journal of neurochemistry.
[60] S. H. Armstrong,et al. Preparation and properties of serum and plasma proteins; the refractive properties of the proteins of human plasma and certain purified fractions. , 1947, Journal of the American Chemical Society.