Literature DB >> 8038394

Receptor-mediated binding of IgE-sensitized rat basophilic leukemia cells to antigen-coated substrates under hydrodynamic flow.

L A Tempelman1, D A Hammer.   

Abstract

The physiological function of many cells is dependent on their ability to adhere via receptors to ligand-coated surfaces under fluid flow. We have developed a model experimental system to measure cell adhesion as a function of cell and surface chemistry and fluid flow. Using a parallel-plate flow chamber, we measured the binding of rat basophilic leukemia cells preincubated with anti-dinitrophenol IgE antibody to polyacrylamide gels covalently derivatized with 2,4-dinitrophenol. The rat basophilic leukemia cells' binding behavior is binary: cells are either adherent or continue to travel at their hydrodynamic velocity, and the transition between these two states is abrupt. The spatial location of adherent cells shows cells can adhere many cell diameters down the length of the gel, suggesting that adhesion is a probabilistic process. The majority of experiments were performed in the excess ligand limit in which adhesion depends strongly on the number of receptors but weakly on ligand density. Only 5-fold changes in IgE surface density or in shear rate were necessary to change adhesion from complete to indistinguishable from negative control. Adhesion showed a hyperbolic dependence on shear rate. By performing experiments with two IgE-antigen configurations in which the kinetic rates of receptor-ligand binding are different, we demonstrate that the forward rate of reaction of the receptor-ligand pair is more important than its thermodynamic affinity in the regulation of binding under hydrodynamic flow. In fact, adhesion increases with increasing receptor-ligand reaction rate or decreasing shear rate, and scales with a single dimensionless parameter which compares the relative rates of reaction to fluid shear.

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Year:  1994        PMID: 8038394      PMCID: PMC1275831          DOI: 10.1016/S0006-3495(94)80907-5

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  28 in total

1.  Simulation of cell rolling and adhesion on surfaces in shear flow: general results and analysis of selectin-mediated neutrophil adhesion.

Authors:  D A Hammer; S M Apte
Journal:  Biophys J       Date:  1992-07       Impact factor: 4.033

2.  Motion of cells sedimenting on a solid surface in a laminar shear flow.

Authors:  O Tissot; A Pierres; C Foa; M Delaage; P Bongrand
Journal:  Biophys J       Date:  1992-01       Impact factor: 4.033

Review 3.  Simulation of cell rolling and adhesion on surfaces in shear flow. Microvilli-coated hard spheres with adhesive springs.

Authors:  D A Hammer
Journal:  Cell Biophys       Date:  1991-04

4.  Polyacrylamide gels copolymerized with active esters. A new medium for affinity systems.

Authors:  R L Schnaar; Y C Lee
Journal:  Biochemistry       Date:  1975-04-08       Impact factor: 3.162

5.  Transglutaminase stabilizes melanoma adhesion under laminar flow.

Authors:  D G Menter; J T Patton; T V Updyke; R S Kerbel; M Maamer; L V McIntire; G L Nicolson
Journal:  Cell Biophys       Date:  1991-04

6.  Receptor-mediated cell attachment and detachment kinetics. II. Experimental model studies with the radial-flow detachment assay.

Authors:  C Cozens-Roberts; J A Quinn; D A Lauffenburger
Journal:  Biophys J       Date:  1990-10       Impact factor: 4.033

7.  Receptor-mediated cell attachment and detachment kinetics. I. Probabilistic model and analysis.

Authors:  C Cozens-Roberts; D A Lauffenburger; J A Quinn
Journal:  Biophys J       Date:  1990-10       Impact factor: 4.033

8.  Physics of chemoreception.

Authors:  H C Berg; E M Purcell
Journal:  Biophys J       Date:  1977-11       Impact factor: 4.033

Review 9.  Models for the specific adhesion of cells to cells.

Authors:  G I Bell
Journal:  Science       Date:  1978-05-12       Impact factor: 47.728

10.  Statistics of cell adhesion under hydrodynamic flow: simulation and experiment.

Authors:  D A Hammer; L A Tempelman; S M Apte
Journal:  Blood Cells       Date:  1993
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  20 in total

1.  A direct comparison of selectin-mediated transient, adhesive events using high temporal resolution.

Authors:  M J Smith; E L Berg; M B Lawrence
Journal:  Biophys J       Date:  1999-12       Impact factor: 4.033

2.  Adhesive dynamics simulations of sialyl-Lewis(x)/E-selectin-mediated rolling in a cell-free system.

Authors:  K C Chang; D A Hammer
Journal:  Biophys J       Date:  2000-10       Impact factor: 4.033

3.  The state diagram for cell adhesion under flow: leukocyte rolling and firm adhesion.

Authors:  K C Chang; D F Tees; D A Hammer
Journal:  Proc Natl Acad Sci U S A       Date:  2000-10-10       Impact factor: 11.205

4.  Real-time measurement of spontaneous antigen-antibody dissociation.

Authors:  Simone Kulin; Rani Kishore; Joseph B Hubbard; Kristian Helmerson
Journal:  Biophys J       Date:  2002-10       Impact factor: 4.033

5.  Distribution and dynamics of rat basophilic leukemia immunoglobulin E receptors (FcepsilonRI) on planar ligand-presenting surfaces.

Authors:  Kathrin Spendier; Amanda Carroll-Portillo; Keith A Lidke; Bridget S Wilson; Jerilyn A Timlin; James L Thomas
Journal:  Biophys J       Date:  2010-07-21       Impact factor: 4.033

6.  Studying Molecular Interactions at the Single Bond Level with a Laminar Flow Chamber.

Authors:  Anne Pierres; Anne-Marie Benoliel; Pierre Bongrand
Journal:  Cell Mol Bioeng       Date:  2008-12       Impact factor: 2.321

7.  Microparticle adhesive dynamics and rolling mediated by selectin-specific antibodies under flow.

Authors:  Anthony Sang Won Ham; Douglas J Goetz; Alexander L Klibanov; Michael B Lawrence
Journal:  Biotechnol Bioeng       Date:  2007-02-15       Impact factor: 4.530

8.  Catch strip assay for the relative assessment of two-dimensional protein association kinetics.

Authors:  Brian J Schmidt; Peter Huang; Kenneth S Breuer; Michael B Lawrence
Journal:  Anal Chem       Date:  2008-01-25       Impact factor: 6.986

Review 9.  Adhesive dynamics.

Authors:  Daniel A Hammer
Journal:  J Biomech Eng       Date:  2014-02       Impact factor: 2.097

10.  Isolation of viable cancer cells in antibody-functionalized microfluidic devices.

Authors:  Xiangjun Zheng; Linan Jiang; Joyce Schroeder; Alison Stopeck; Yitshak Zohar
Journal:  Biomicrofluidics       Date:  2014-04-30       Impact factor: 2.800

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