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PMID: 2820521 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

A dynamical model for receptor-mediated cell adhesion to surfaces.

Biophysical journal ·Vol. 52 ·No. 3 ·1987-09-00 ·Pages 475-87

Hammer DA, Lauffenburger DA

Abstract

We present a dynamical model for receptor-mediated adhesion of cells in a shear field of viscous fluid to surfaces coated with ligand molecules complementary to receptors in the cell membrane. We refer to this model as the "point attachment model" because it considers the contact area between the cell and the surface to be a small, homogeneous region that mediates the initial attachment of the cell to the surface. Using a phase plane analysis of a system of nonlinear ordinary differential equations which govern the changes in free receptor density and bond density within the contact area with time, we can predict the conditions for which adhesion between the cell and the surface will take place. Whether adhesion occurs depends on values of dimensionless quantities that characterize the interaction of the cell and its receptors with the surface and its ligand, such as the bond formation rate, the receptor-ligand affinity, the fluid mechanical force, the receptor mobility, and the contact area. A key result is that there are two regimes in which different chemical and physical forces dominate: a rate-controlled high affinity regime and an affinity-controlled low-affinity regime. Many experimental observations can be explained by understanding which of these regimes is appropriate. We also provide simple approximate analytical solutions, relating adhesiveness to cell and surface properties as well as fluid forces, which allow convenient testing of model predictions by experiment.

MeSH Terms
Animals Cell Adhesion Kinetics Mathematics Models, Biological Receptors, Cell Surface/physiology Receptors, Immunologic/physiology Thermodynamics
Chemicals
Receptors, Cell Surface Receptors, Immunologic
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Hammer D A
Department of Chemical Engineering, University of Pennsylvania, Philadelphia 19104.
Lauffenburger D A
References (33)
33 references, click to expand
  1. Cell separation on antigen-coated columns. Elimination of high rate antibody-forming cells and immunological memory cells.
    J Exp Med. 1969 Jan 1;129(1):23-36 PMID: 5782770
  2. Quantitative investigations of the adhesiveness of circulating polymorphonuclear leucocytes to blood vessel walls.
    J Physiol. 1972 Apr;222(2):447-74 PMID: 4624453
  3. Vascular endothelium-leukocyte interaction; sticking shear force in venules.
    Circ Res. 1975 Jan;36(1):173-84 PMID: 1116218
  4. Receptor mobility and the binding of cells to lectin-coated fibers.
    J Cell Biol. 1975 Jul;66(1):76-85 PMID: 167030
  5. Elastic deformations of red blood cells.
    J Biomech. 1977;10(4):211-21 PMID: 858727
  6. Kinetics of antibody-hapten interactions.
    Mol Biol Biochem Biophys. 1977;24:306-38 PMID: 333271
  7. Models for the specific adhesion of cells to cells.
    Science. 1978 May 12;200(4342):618-27 PMID: 347575
  8. Influence of membrane lipids on acetylcholine receptor and lipid probe diffusion in cultured myotube membrane.
    Biochemistry. 1978 Aug 22;17(17):3604-9 PMID: 567490
  9. Selective affinity fractionation of murine cytotoxic T lymphocytes (CTL). Unique lectin specific binding of the CTL associated surface glycoprotein, T 145.
    J Exp Med. 1979 Feb 1;149(2):473-84 PMID: 310865
  10. Organ specificity of lymphocyte migration: mediation by highly selective lymphocyte interaction with organ-specific determinants on high endothelial venules.
    Eur J Immunol. 1980 Jul;10(7):556-61 PMID: 6157544
  11. Affinity chromatography of cells and cell membranes.
    J Chromatogr. 1980 Nov 7;184(4):471-99 PMID: 7005251
  12. The stress-free shape of the red blood cell membrane.
    Biophys J. 1981 Jun;34(3):409-22 PMID: 7248469
  13. Passive mechanical properties of human leukocytes.
    Biophys J. 1981 Oct;36(1):243-56 PMID: 6793106
  14. Estimate of the sticking probability for cells in uniform shear flow with adhesion caused by specific bonds.
    Cell Biophys. 1981 Sep;3(3):289-304 PMID: 6170445
  15. Kinetic analysis of chemotactic peptide receptor modulation.
    J Cell Biol. 1982 Jan;92(1):34-43 PMID: 6276415
  16. Cell sorting using a universally applicable affinity chromatography matrix: solid-phase anti-fluorescein isothiocyanate antibody.
    J Immunol Methods. 1982 Sep 30;53(3):321-34 PMID: 6815277
  17. Chromatography of erythroblasts on immobilized transferrin.
    Proc Soc Exp Biol Med. 1983 Jan;172(1):79-83 PMID: 6828455
  18. Concanavalin-A-mediated thymocyte agglutination: a model for a quantitative study of cell adhesion.
    J Cell Sci. 1982 Aug;56:21-48 PMID: 7166565
  19. Binding of apotransferrin to K562 cells: explanation of the transferrin cycle.
    Proc Natl Acad Sci U S A. 1983 Apr;80(8):2263-6 PMID: 6300904
  20. Cancer metastasis. Organ colonization and the cell-surface properties of malignant cells.
    Biochim Biophys Acta. 1982 Dec 21;695(2):113-76 PMID: 6763877
  21. Bending elastic modulus of red blood cell membrane derived from buckling instability in micropipet aspiration tests.
    Biophys J. 1983 Jul;43(1):27-30 PMID: 6882860
  22. Margination of leukocytes in blood flow through small tubes.
    Microvasc Res. 1984 Mar;27(2):204-22 PMID: 6708830
  23. Internalization and degradation of macrophage Fc receptors bound to polyvalent immune complexes.
    J Cell Biol. 1984 Apr;98(4):1170-7 PMID: 6715404
  24. Receptor-mediated endocytosis of epidermal growth factor by hepatocytes in the perfused rat liver: ligand and receptor dynamics.
    J Cell Biol. 1984 Jun;98(6):2148-59 PMID: 6327725
  25. Cell adhesion. Competition between nonspecific repulsion and specific bonding.
    Biophys J. 1984 Jun;45(6):1051-64 PMID: 6743742
  26. Lateral diffusion of an 80,000-dalton glycoprotein in the plasma membrane of murine fibroblasts: relationships to cell structure and function.
    J Cell Biol. 1984 Nov;99(5):1624-33 PMID: 6386824
  27. Chemokinetic accumulation of human neutrophils on immune complex-coated substrata: analysis at a boundary.
    J Cell Biol. 1984 Nov;99(5):1761-8 PMID: 6490719
  28. Lymphocyte recognition of lymph node high endothelium. VI. Evidence of distinct structures mediating binding to high endothelial cells of lymph nodes and Peyer's patches.
    J Immunol. 1984 Dec;133(6):2961-5 PMID: 6208268
  29. Adhesion of neutrophil leucocytes under conditions of flow.
    J Cell Sci. 1984 Aug;70:93-110 PMID: 6501440
  30. Detailed mechanics of membrane-membrane adhesion and separation. I. Continuum of molecular cross-bridges.
    Biophys J. 1985 Jul;48(1):175-83 PMID: 4016207
  31. Detailed mechanics of membrane-membrane adhesion and separation. II. Discrete kinetically trapped molecular cross-bridges.
    Biophys J. 1985 Jul;48(1):185-92 PMID: 4016208
  32. Determination of binding strength and kinetics of binding initiation. A model study made on the adhesive properties of P388D1 macrophage-like cells.
    Cell Biophys. 1986 Apr;8(2):141-60 PMID: 2421912
  33. Binding constants of IgE receptors on human blood basophils for IgE.
    Immunology. 1986 Jun;58(2):257-62 PMID: 2423445
Article Info
Journal
Biophysical journal
Abbr.
Biophys J
ISSN
0006-3495
Published
1987-09-00
Pages
475-87
Language
English
Region
United States
NLM ID
0370626
PMCID
PMC1330012
Subset
IM
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