Properties and biological inteactions of polyurethane anionomers: Effect of sulfonate incorporation
- 1 March 1989
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 23 (3) , 311-338
- https://doi.org/10.1002/jbm.820230304
Abstract
In order to investigate the factors affecting the interaction of polyurethanes and blood, a series of poly (tetramethylene oxide)‐based polyurethane block copolymers was synthesized with systematically varying levels of ion incorporation in the hard segment block. A bimolecular nucleophilic substitution reaction was used to replace up to 20% of the urethane hydrogens with propyl sulfonate groups. Bulk and surface characterization was performed, and a canine ex vivo arteriovenous shunt was used to monitor initial platelet and fibrinogen deposition on these surfaces. The microphase separation and bulk physical properties were found to vary with ionic content. Surface analysis using both in vacuo (ESCA) and water‐equilibrated (contact angle) methods indicated that these polymers, and especially the highly sulfonated materials, could rearrange to minimize their interfacial tension, depending on the contacting environment. Platelet deposition onto these materials decreased as the level of sulfonation increased, with the highly sulfonated polymer showing substantially less platelet spreading and activation than previously seen in the same experiment with other polymers.This publication has 34 references indexed in Scilit:
- Properties of extruded poly(tetramethylene oxide) Polyurethane block copolymers for blood-contacting applicationsBiomaterials, 1987
- Surface properties and blood compatibility of polyurethaneureasBiomaterials, 1986
- Surface structure of segmented poly(ether urethanes) and poly(ether urethane ureas) with various perfluoro chain extenders. An x-ray photoelectron spectroscopic investigationMacromolecules, 1986
- The effect of predetermined thrombotic potential of the recipient on small-caliber graft performanceJournal of Vascular Surgery, 1986
- Heparin-like activity of insoluble sulphonated polystyrene resinsBiomaterials, 1985
- Cardiac and vascular imaging with labeled platelets and leukocytesSeminars in Nuclear Medicine, 1984
- Properties of polyurethane anionomers: Lonization via bimolecular nucleophilic displacement of the urethane hydrogenJournal of Macromolecular Science, Part B, 1984
- REQUIREMENTS FOR THROMBORESISTANCE OF SURFACE‐HEPARINIZED MATERIALSaAnnals of the New York Academy of Sciences, 1983
- Antithrombic activity of some polysaccharide resinsBiomaterials, 1982
- Properties of polyether‐polyurethane zwitterionomersPolymer Engineering & Science, 1981