Artigo Revisado por pares

HYDROPHOBIC POLYMER SURFACES AND THEIR INTERACTIONS WITH BLOOD*

1977; Wiley; Volume: 283; Issue: 1 Linguagem: Inglês

10.1111/j.1749-6632.1977.tb41781.x

ISSN

1749-6632

Autores

John L. Brash,

Tópico(s)

Polymer Surface Interaction Studies

Resumo

Annals of the New York Academy of SciencesVolume 283, Issue 1 p. 356-371 HYDROPHOBIC POLYMER SURFACES AND THEIR INTERACTIONS WITH BLOOD* J. L. Brash, J. L. Brash Departments of Chemical Engineering and Pathology McMaster University Hamilton, Ontario, Canada L8S 4L7Search for more papers by this author J. L. Brash, J. L. Brash Departments of Chemical Engineering and Pathology McMaster University Hamilton, Ontario, Canada L8S 4L7Search for more papers by this author First published: February 1977 https://doi.org/10.1111/j.1749-6632.1977.tb41781.xCitations: 75 * Supported by the Medical Research Council of Canada and the Ontario Heart Foundation. AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat References 1 Wesolowski, S. A., C. C. Fries, A. Martinez & J. D. McMahon. 1968. Arterial prosthetic materials. Ann. N.Y. Acad. Sci. 146(1): 325–344. 2 Lister, J. 1863. Proc. Roy. Soc. B12: 580. 3 Bordet, J. & O. Gengou. 1903. Recherches sur la coagulation du sang. Ann. Inst. Pasteur 17: 822–833. 4 Boretos, J. W. & W. S. Pierce. 1967. Segmented polyurethane: a new elastomer for biomedical applications. Science 158: 1481–1482. 5 Boretos, J. W., D. E. Detmer & J. H. Donachy. 1971. Segmented polyurethane II. Two years experience. J. Biomed. Mater. Res. 5: 373–388. 6 Brash, J. L., B. K. Fritzinger & S. D. Bruck. 1973. Development of block copolyether-urethane intra-aortic balloons and other medical devices. J. Biomed. Mater. Res. 7: 313–334. 7 Braley, S. 1968. The silicones as subdermal engineering materials. Ann. N.Y Acad. Sci. 146(1): 148–157. 8 Fox, H. W. & W. A. Zisman. 1952. The spreading of liquids on low-energy surfaces. II. Modified tetrafluoroethylene polymers. J. Colloid Sci. 7: 109–121. 9 Lampert, H. 1930. Muench. Med. Wochschr. 77: 586. 10 Rose, J. C. & H. P. Broida. 1954. Effects of plastic and steel surfaces on clotting time of human blood. Proc. Soc. Exp. Biol. Med. 86: 384–386. 11 Ross, J., L. J. Greenfield, R. L. Bowman & A. G. Morrow. 1961. The chemical structure and surface properties of certain synthetic polymers and their relationship to thrombosis. In Prosthetic Valves for Cardiac Surgery. K. A. Merendino, Ed.: 212–223. Charles C Thomas, Springfield , Ill . 12 Lyman, D. J., W. M. Muir & I. J. Lee. 1965. The effect of chemical structure and surface properties of polymers on the coagulation of blood. I. Surface free energy effects. Trans. Amer. Soc. Artif. Int. Organs 11: 301–306. 13 Osipow, L. I. 1962. Surface Chemistry. Reinhold Publishing Corp. New York , N.Y. 14 Cochrane, C. G., S. D. Revak & K. D. Wuepper. 1973. Activation of Hageman factor in solid and fluid phases. J. Exp. Med. 138: 1564–1583. 15 Falb, R. D., M. T. Takahashi, G. A. Grode & R. I. Leininger. 1967. Studies on the stability and protein adsorption characteristics of heparinized polymer surfaces by radioisotope labeling techniques. J. Biomed. Mater. Res. 1: 239–251. 16 Brash, J. L. & D. J. Lyman. 1969. Adsorption of plasma proteins in solution to uncharged, hydrophobic polymer surfaces. J. Biomed. Mater. Res. 3: 175–189. 17 Koutsky, J. A., N. V. Hien & S. L. Cooper. 1970. Some results on electron microscope investigations of polyether-urethane and polyester-urethane block copolymers. J. Polymer. Sci. 138: 353–359. 18 Horbett, T. A. & A. S. Hoffman. 1975. Bovine plasma protein adsorption to radiation grafted hydrogels based on hydroxyethylmethacrylate and N-vinyl pyrrolidone. In Applied Chemistry at Protein Interfaces. R. E. Baier, Ed.: 230–254. American Chemical Society. Washington , D.C. 19 MacRitchie, F. 1972. The adsorption of proteins at the solid-liquid interface. J. Colloid Interface Sci. 38: 484–488. 20 Brash, J. L., S. Uniyal & Q. Samak. 1974. Exchange of albumin adsorbed on polymer surfaces. Trans. Amer. Soc. Artif. Int. Organs 20: 69–76. 21 Morrissey, B. W. & R. R. Stromberg. 1974. The conformation of adsorbed blood proteins by infrared bound fraction measurements. J. Colloid Interface Sci. 46: 152–164. 22 Morrissey, B. W. & C. A. Fenstermaker. 1976. Conformation of adsorbed γ-globulin and β-lactoglobulin. Effect of surface concentration. Trans. Amer. Soc. Artif. Int. Organs 22: 278–283. 23 Vroman, L. & A. L. Adams. 1969. Identification of rapid changes at plasmasolid interfaces. J. Biomed. Mater. Res. 3: 43–67. 24 Lee, R. G., C. Adamson & S. W. Kim. 1974. Competitive adsorption of plasma proteins onto polymer surfaces. Thromb. Res. 4: 485–490. 25 Vroman, L., A. L. Adams, M. Klings & G. Fischer. 1975. Fibrinogen, globulins, albumin and plasma at interfaces. In Applied Chemistry at Protein Interfaces. R. E. Baier, Ed.: 255–289. American Chemical Society. Washington , D.C. 26 Brash, J. L. & V. J. Davidson. 1976. Adsorption on glass and polyethylene from solutions of fibrinogen and albumin. Thromb. Res. 9: 249–259. 27 Vroman, L. & A. L. Adams. 1967. Possible involvement of fibrinogen and proteolysis in surface activation. Thromb. Diath. Haemorr. 18: 510–524. 28 Limber, G. K., C. H. Glenn & R. G. Mason. 1974. Studies of proteins elutable from certain artificial surfaces exposed to human plasma. Thromb. Res. 5: 735–746. 29 Wright, H. P. 1941. Adhesiveness of blood platelets in normal subjects with varying concentrations of anticoagulants. J. Pathol. Bacteriol. 53: 255–262. 30 Hellem, A. J. 1960. The adhesiveness of human blood platelets in vitro. Scand. J. Clin. Lab. Invest. 12(Supp. 51): 1. 31 Salzman, E. W. 1963. Measurement of platelet adhesiveness. J. Lab. Clin. Med. 62: 724–735. 32 Lyman, D. J., J. L. Brash, S. W. Chaikin & M. Carini. 1968. The effect of chemical structure and surface properties of synthetic polymers on the coagulation of blood. II. Protein and platelet interaction with polymer surfaces. Trans. Amer. Soc. Artif. Int. Organs. 14: 250–255. 33 Lyman, D. J., K. G. Klein, J. L. Brash & B. K. Fritzinger. 1970. Interaction of platelets with polymer surfaces. I. Uncharged hydrophobic polymer surfaces. Thromb. Diath. Haemorr. 23: 120–128. 34 Lyman, D. J., K. G. Klein, J. L. Brash, B. K. Fritzinger, J. D. Andrade & F. Bonomo. 1971. Platelet interaction with protein-coated surfaces: an approach to thromboresistant surfaces. Thromb. Diath. Haemorr. (Supp.) 42: 109–114. 35 Day, R. C., I. A. Feuerstein & J. L. Brash. 1976. Flow patterns in a platelet adhesion test cell and their effect on adhesion measurements. Thromb. Res. 9: 133–142. 36 Friedman, L. I., H. Liem, E. F. Grabowski, E. F. Leonard & C. W. McCord. 1970. Inconsequentiality of surface properties for initial platelet adhesion. Trans. Amer. Soc. Artif. Int. Organs 16: 63–73. 37 Grabowski, E. F., K. K. Herther & P. Didisheim. 1976. Human versus dog platelet adhesion to cuprophane under controlled conditions of whole blood flow. J. Lab. Clin. Med. To be published. 38 Turitto, V. T. & E. F. Leonard. 1972. Platelet adhesion to a spinning disc. Trans. Amer. Soc. Artif. Int. Organs 18: 348–354. 39 Feuerstein, I. A., J. M. Brophy & J. L. Brash. 1975. Platelet transport and adhesion to reconstituted collagen and artificial surfaces. Trans. Amer. Soc. Artif. Int. Organs 21: 427–434. 40 Brash, J. L., J. M. Brophy & I. A. Feuerstein. 1976. Adhesion of platelets to artificial surfaces: effect of red cells. J. Biomed. Mater. Res. 10: 429–443. 41 Mustard, J. F., D. W. Perry, N. G. Ardlie & M. A. Packham. 1972. Preparation of suspensions of washed platelets fro mhumans. Brit. J. Haematol. 22: 193–204. 42 Brash, J. L. & S. J. Whicher. 1976. Interaction of platelets with surfaces: a factorial study of adhesion and associated release of serotonin. Proc. Strathclyde Bioengineering Seminar Series. Second Seminar, Aug. 1976. In Biomedical Engineering Approaches to the Artificial Lung, Kidney and Liver. To be published. 43 Keller, K. H. 1971. Effect of fluid shear on mass transport in flowing blood. Fed. Proc. 30: 1591–1599. 44 Turitto, V. T., A. M. Benis & E. F. Leonard. 1972. Platelet diffusion in flowing blood. Ind. Eng. Chem. Fundam. 11: 216–232. 45 Goldsmith, H. L. 1971. Red cell motions and wall interaction in tube flow. Fed. Proc. 26: 1578–1588. 46 George, J. N. 1972. Direct assessment of platelet adhesion to glass: a study of the forces of interaction and the effects of plasma and serum factors, platelet function, and modification of the glass surface. Blood 40: 862–874. 47 Lee, R. G. & S. W. Kim. 1974. The role of carbohydrate in platelet adhesion to foreign surfaces. J. Biomed. Mater. Res. 8: 393–398. 48 Jamieson, G. A., C. L. Urban & A. J. Barber. 1971. Enzymatic basis for platelet: collagen adhesion as the primary step in haemostasis. Nature [New Biol.] 234: 5–7. 49 Lee, R. G. & S. W. Kim. 1976. Cyclic AMP and platelet adhesion to silastic surfaces. Thromb. Res. 8: 111–114. 50 Hum, O. S., A. W. Neumann & W. Zingg. 1975. Platelet interaction with smooth solid substrates determined by an open static method. Thromb. Res. 7: 461–470. 51 Packham, M. A., G. Evans, M. F. Glynn & J. F. Mustard. 1969. The effect of plasma proteins on the interaction of platelets with glass surfaces. J. Lab. Clin. Med. 73: 686–697. 52 Steiner, M. & M. Baldini. 1970. Subcellular distribution of 51Cr and characterization of its binding sites in human platelets. Blood 35: 727–739. 53 Baumgartner, H. R., R. Muggli, T. B. Tschopp & V. T. Turitto. 1976. Platelet anhesion, release and aggregation in flowing blood: effects of surface properties and platelet function. Thromb. Diath. Haemorr. 35: 124–138. 54 Bernstein, E. F. 1971. Certain aspects of blood interfacial phenomena—red blood cells. Fed. Proc. 30: 1510–1515. 55 Blackshear, P. L. 1972. Hemolysis at Prosthetic Surfaces. In The Chemistry of Biosurfaces. Vol. 2. M. L. Hair, Ed.: 523–562. Marcel Dekker Inc. New York , N.Y. 56 Leverett, L. B., J. D. Hellums, E. C. Lynch & C. P. Alfrey. 1972. Red blood cell damage by shear stress. Biophys. J. 12: 257–273. 57 Hochmuth, R. M., N. Mohandas, E. E. Spaeth, J. R. Williamson, P. L. Blackshear, Jr. & D. W. Johnson. 1972. Surface adhesion deformation and detachment at low shear of red cells and white cells. Trans. Amer. Soc. Artif. Int. Organs 18: 325–332. 58 Mohandas, N., R. M. Hochmuth & E. E. Spaeth. 1974. Adhesion of red cells to foreign surfaces in the presence of flow. J. Biomed. Mater. Res. 8: 119–136. 59 Lampert, R. H. & M. C. Williams. 1972. Effect of surface materials on shearinduced hemolysis. J. Biomed. Mater. Res. 6: 499–532. 60 Weiss, L. & L. E. Blumenson. 1967. Dynamic adhesion and separation of cells in vitro. II. Interactions of cells with hydrophilic and hydrophobic surfaces. J. Cell Physiol. 70: 23–32. 61 George, J. N., R. I. Weed & C. F. Reed. 1971. Adhesion of human erythrocytes to glass: the nature of the interaction and the effect of serum and plasma. J. Cell Physiol. 77: 51–60. 62 George, J. N. 1972. Fibrinogen inhibits red cell adhesion to glass. J. Cell Physiol. 79: 457–462. 63 Brash, J. L. & S. Uniyal. 1976. Adsorption of albumin and fibrinogen to polyethylene in presence of red cells. Trans. Amer. Soc. Artif. Int. Organs 22: 253–259. 64 Keller, K. H. & S. I. Yum. 1970. Erythrocyte-tube wall interactions in laminar flow of blood suspensions. Trans. Amer. Soc. Artif. Int. Organs 16: 42–47. Citing Literature Volume283, Issue1The Behavior of Blood and its Components at InterfacesFebruary 1977Pages 356-371 ReferencesRelatedInformation

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