Contact activation of the plasma coagulation cascade. II. Protein adsorption to procoagulant surfaces
- 1 August 1995
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 29 (8) , 1017-1028
- https://doi.org/10.1002/jbm.820290814
Abstract
A study of blood protein adsorption to procoagulant surfaces utilizing a coagulation time assay, contact angles, Wilhelmy balance tensiometry, and electron spectroscopy (ESCA) is presented. Using a new contact angle method of measuring protein adsorption termed “adsorption mapping” it was demonstrated that protein-adsorbent surfaces were inefficient activators of the intrinsic pathway of the plasma coagulation cascade whereas water-wettable, protein-repellent surfaces were efficient procoagulants. Repeated use of fully water-wettable (spreading) glass procoagulants in the coagulation time assay demonstrated that putative “activating sites” were not consumed in the coagulation of platelet-poor porcine plasma. Furthermore, these procoagulant surfaces retained water-wettable surface properties after incubation with blood proteins and saline rinse. The interpretation of these observations was that plasma and serum proteins were not adsorbed to water-wettable surfaces. However, ESCA of these same surfaces revealed the presence of a thin protein layer. Wilhelmy balance tensiometry resolved these seemingly divergent observations by demonstrating that protein was “associated” with a bound hydration layer, but not formally adsorbed through a surface dehydration or ionic interaction mechanism. © 1995 John Wiley & Sons, Inc.Keywords
This publication has 49 references indexed in Scilit:
- Plasma protein adsorption on model biomaterial surfacesClinical Materials, 1993
- Fibronectin adsorption to surfaces of hydrated crystals. An analysis of the importance of bound water in protein-substrate interactionsLangmuir, 1993
- A graphical method for predicting surfactant and protein adsorption propertiesLangmuir, 1993
- Protein adsorption studies on 'standard' polymeric materialsJournal of Biomaterials Science, Polymer Edition, 1993
- Review Does polyethylene oxide possess a low thrombogenicity?Journal of Biomaterials Science, Polymer Edition, 1993
- Practical use of concentration-dependent contact angles as a measure of solid-liquid adsorption. 2. Experimental aspectsLangmuir, 1992
- Practical use of concentration-dependent contact angles as a measure of solid-liquid adsorption. 1. Theoretical aspectsLangmuir, 1992
- Water structure in polymer membranesProgress in Polymer Science, 1988
- Protein adsorption on soft contact lensesBiomaterials, 1986
- Surface analysis of biomedical polymers by attenuated total reflectance-Fourier transform infra-redBiomaterials, 1984