Receptor clustering on a cell surface. I. theory of receptor cross-linking by ligands bearing two chemically identical functional groups
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[1] C. Wofsy. Analysis of a molecular signal for cell function in allergic reactions , 1980 .
[2] J. Forrester,et al. Physical Chemical Aspects of Cell Surface Events in Cellular Regulation , 1980 .
[3] C. DeLisi,et al. Receptor cross-linking and histamine release. I. The quantitative dependence of basophil degranulation on the number of receptor doublets. , 1979, Journal of immunology.
[4] C. DeLisi,et al. Receptor cross-linking and histamine release. II. Interpretation and analysis of anomalous dose response patterns. , 1979, Journal of immunology.
[5] J. H. Gibbs,et al. Mean molecular size distributions and the sol–gel transition in finite, polycondensing systems , 1979 .
[6] M. Dembo,et al. Histamine release due to bivalent penicilloyl haptens the relation of activation and desensitization of basophils to dynamic aspects of ligand binding to cell surface antibody. , 1979, Journal of immunology.
[7] M. Dembo,et al. Antigen-specific desensitization of human basophils. , 1979, Journal of immunology.
[8] C. Kahn,et al. Direct demonstration that receptor crosslinking or aggregation is important in insulin action. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[9] J. W. Parce,et al. Visualization of specific antibody and C1q binding to hapten-sensitized lipid vesicles. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[10] M. Dembo,et al. Histamine Release Due to Bivalent Penicilloyl Haptens Control by the Number of Cross-Linked IgE Antibodies on the Basophil Plasma Membrane , 1978, The Journal of Immunology.
[11] M. Dembo,et al. Theory of equilibrium binding of asymmetric bivalent haptens to cell surface antibody: application to histamine release from basophils. , 1978, Journal of immunology.
[12] K. Ishizaka,et al. Triggering of histamine release from rat mast cells by divalent antibodies against IgE-receptors. , 1978, Journal of immunology.
[13] H. Metzger,et al. Dimeric immunoglobulin E serves as a unit signal for mast cell degranulation. , 1977, Proceedings of the National Academy of Sciences of the United States of America.
[14] B. Barisas,et al. Kinetic evidence for a conformational change by an anti-hapten antibody upon binding multivalent hapten. , 1977, Immunochemistry.
[15] H. Krakauer,et al. Thermodynamics of antibody-antigen reactions. 2. The binding of bivalent synthetic random coil antigens to antibodies having different antigen precipitating properties. , 1977, Biochemistry.
[16] C DeLisi,et al. Antigen binding to receptors on immunocompetent cells. II. Thermodynamic and biological implications of the receptor cross-linking requirement for B-cell activation. , 1977, Cellular immunology.
[17] H. Metzger,et al. Distribution and valency of receptor for IgE on rodent mast cells and related tumour cells , 1976, Nature.
[18] C DeLisi,et al. The kinetics of aggregation phenomena. I. Minimal models for patch formation of lymphocyte membranes. , 1976, Journal of theoretical biology.
[19] C. DeLisi,et al. A systematic and graphical method for generating the kinetic equations governing the growth of aggregates , 1975 .
[20] G. I. Bell,et al. B Lymphocyte Activation and Lattice Formation , 1975, Transplantation reviews.
[21] W. Hook,et al. Specific in vitro histamine release from basophils by bivalent haptens: Evidence for activation by simple bridging of membrane bound antibody , 1975 .
[22] G. I. Bell,et al. Model for the binding of multivalent antigen to cells , 1974, Nature.
[23] C. D. Lisi. The nucleic acid distribution function: Evaluation of the loop closure probability , 1972 .
[24] F. Karush,et al. Antibody affinity—III the role of multivalence , 1972 .
[25] C. DeLisi,et al. Theory of the influence of oligonucleotide chain conformation on double helix stability , 1971 .
[26] C. W. Gear,et al. The automatic integration of ordinary differential equations , 1971, Commun. ACM.
[27] S. Jain,et al. Statistical study of the effect of variation of bimolecular rate constant in condensation polymerization , 1970 .
[28] S. Jain,et al. Effect of Variation of the Bimolecular Rate Constant with Chain Length on the Statistical Character of Condensation Polymers , 1968 .
[29] H. Rapp,et al. Complement Fixation on Cell Surfaces by 19S and 7S Antibodies , 1965, Science.
[30] P. Whittle. Statistical processes of aggregation and polymerization , 1965, Mathematical Proceedings of the Cambridge Philosophical Society.
[31] Irving John Good,et al. Cascade theory and the molecular weight averages of the sol fraction , 1963, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[32] M. Gordon,et al. Good’s theory of cascade processes applied to the statistics of polymer distributions , 1962, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[33] G. S. Watson. On Goldberg's theory of the precipitin reaction. , 1958, Journal of immunology.
[34] P. Doty,et al. A Thermodynamic Study of Hapten-Antibody Association , 1956 .
[35] R. J. Goldberg,et al. A Theory of Antibody—Antigen Reactions. I. Theory for Reactions of Multivalent Antigen with Bivalent and Univalent Antibody2 , 1952 .
[36] Homer Jacobson,et al. Intramolecular Reaction in Polycondensations. I. The Theory of Linear Systems , 1950 .
[37] P. Flory,et al. Fundamental principles of condensation polymerization. , 1946, Chemical reviews.
[38] W. Stockmayer. Theory of Molecular Size Distribution and Gel Formation in Branched Polymers II. General Cross Linking , 1944 .
[39] Walter H. Stockmayer,et al. Theory of Molecular Size Distribution and Gel Formation in Branched‐Chain Polymers , 1943 .
[40] M. Heidelberger. Chemical Aspects of the Precipitin and Agglutinin Reactions. , 1939 .
[41] Paul J. Flory,et al. Molecular Size Distribution in Linear Condensation Polymers1 , 1936 .
[42] M. Heidelberger,et al. THE PRECIPITIN REACTION BETWEEN TYPE III PNEUMOCOCCUS POLYSACCHARIDE AND HOMOLOGOUS ANTIBODY , 1935, The Journal of experimental medicine.
[43] J. R. Marrack,et al. The Chemistry of Antigens and Antibodies , 1934, Nature.
[44] W. Kuhn,et al. Über die Kinetik des Abbaues hochmolekularer Ketten , 1930 .
[45] G N Lewis,et al. A New Principle of Equilibrium. , 1925, Proceedings of the National Academy of Sciences of the United States of America.
[46] M. Smoluchowski. Versuch einer mathematischen Theorie der Koagulationskinetik kolloider Lösungen , 1918 .
[47] Rudolf Wegscheider,et al. Über simultane Gleichgewichte und die Beziehungen zwischen Thermodynamik und Reactionskinetik homogener Systeme , 1901 .
[48] A. Ravve,et al. Principles of Polymer Chemistry , 1995 .
[49] J. W. Parce,et al. Visualization of specific antibody and Clq binding to hapten-sensitized lipid vesicles. , 1981, Acta histochemica. Supplementband.
[50] V. Schumaker,et al. Bivalent hapten-antibody interactions--11. Bivalent haptens as probes of combining site depth. , 1975, Immunochemistry.
[51] V. Schumaker,et al. Bivalent hapten-antibody interactions--1. A comparison of water soluble and water insoluble bivalent haptens. , 1975, Immunochemistry.
[52] B. Levine. The Nature of the Antigen-Antibody Complexes Which Initiate Anaphylactic Reactions I. A Quantitative Comparison of the Abilities of Nontoxic Univalent, Toxic Univalent, Divalent and Multivalent Benzylpenicilloyl Haptens to Evoke Passive Cutaneous Anaphylaxis in the Guinea Pig , 1965 .
[53] G. Schulz. Über die Beziehung zwischen Reaktionsgeschwindigkeit und Zusammensetzung des Reaktionsproduktes bei Makropolymerisationsvorgängen , 1935 .
[54] M. Smoluchowski,et al. Drei Vorträge über Diffusion, Brownsche Molekularbewegung und Koagulation von Kolloidteilchen , 1927 .
[55] M. Smoluchowski,et al. Drei Vortrage uber Diffusion, Brownsche Bewegung und Koagulation von Kolloidteilchen , 1916 .