Literature DB >> 20883009

Origin of the nonadhesive properties of fibrinogen matrices probed by force spectroscopy.

Ivan S Yermolenko1, Alexander Fuhrmann, Sergei N Magonov, Valeryi K Lishko, Stanislav P Oshkadyerov, Robert Ros, Tatiana P Ugarova.   

Abstract

The deposition of a multilayered fibrinogen matrix on various surfaces results in a dramatic reduction of integrin-mediated cell adhesion and outside-in signaling in platelets and leukocytes. The conversion of a highly adhesive, low-density fibrinogen substrate to the nonadhesive high-density fibrinogen matrix occurs within a very narrow range of fibrinogen coating concentrations. The molecular events responsible for this transition are not well understood. Herein, single-cell and molecular force spectroscopy were used to determine the early steps in the formation of nonadhesive fibrinogen substrates. We show that the adsorption of fibrinogen in the form of a molecular bilayer coincides with a several-fold reduction in the adhesion forces generated between the AFM tip and the substrate as well as between a cell and the substrate. The subsequent deposition of new layers at higher coating concentrations of fibrinogen results in a small additional decrease in adhesion forces. The poorly adhesive fibrinogen bilayer is more extensible under an applied tensile force than is the surface-bound fibrinogen monolayer. Following chemical cross-linking, the stabilized bilayer displays the mechanical and adhesive properties characteristic of a more adhesive fibrinogen monolayer. We propose that a greater compliance of the bi- and multilayer fibrinogen matrices has its origin in the interaction between the molecules forming the adjacent layers. Understanding the mechanical properties of nonadhesive fibrinogen matrices should be of importance in the therapeutic control of pathological thrombosis and in biomaterials science.

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Year:  2010        PMID: 20883009      PMCID: PMC2993253          DOI: 10.1021/la101791r

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  35 in total

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2.  A receptor-induced binding site in fibrinogen elicited by its interaction with platelet membrane glycoprotein IIb-IIIa.

Authors:  C Zamarron; M H Ginsberg; E F Plow
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Authors:  W J Schielen; M Voskuilen; G I Tesser; W Nieuwenhuizen
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Review 5.  Fibrinogen and fibrin.

Authors:  R F Doolittle
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6.  Accumulation of radiolabelled platelets and fibrin on the carotid artery of rabbits after angioplasty: effects of heparin and dipyridamole.

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Authors:  H M Groves; R L Kinlough-Rathbone; M Richardson; L Jørgensen; S Moore; J F Mustard
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8.  Organization of experimentally induced arterial thrombosis in rats: the first six days.

Authors:  P J van Aken; J J Emeis
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  9 in total

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