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Original Article

Albuminated Polymer Surfaces for Biomedical Application

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Pages 229-246 | Published online: 11 Jul 2009

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L. Feng & J.D. Andrade. (1996) Protein adsorption on low temperature isotropic carbon: V. How is it related to its blood compatibility?. Journal of Biomaterials Science, Polymer Edition 7:5, pages 439-452.
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Rajender Sipehia, Giuseppe Martucci, Michaela Barbarosie & Clifford Wu. (1993) Enhanced Attachment and Growth of Human Endothelial Cells Derived from Umbilical Veins on Ammonia Plasma Modified Surfaces of Ptfe and EPTFE Synthetic Vascular Graft Biomaterials. Biomaterials, Artificial Cells and Immobilization Biotechnology 21:4, pages 455-468.
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Johannes G.A. Terlingen, Jan Feijen & Allan S. Hoffman. (1993) Immobilization of surface active compounds on polymer supports using a gas discharge process. Journal of Biomaterials Science, Polymer Edition 4:1, pages 31-33.
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Michael J. Danilich, Kandice Kottke-Marchant, James M. Anderson & Roger E. Marchant. (1992) The immobilization of glucose oxidase onto radio-frequency plasma-modified poly(etherurethaneurea). Journal of Biomaterials Science, Polymer Edition 3:3, pages 195-216.
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Janice L. Bohnert, Bradford C. Fowler, Thomas A. Horbett & Allan S. Hoffman. (1989) Plasma gas discharge deposited fluorocarbon polymers exhibit reduced elutability of adsorbed albumin and fibrinogen. Journal of Biomaterials Science, Polymer Edition 1:4, pages 279-297.
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Rajender Sipehia. (1988) Ftir-Atr Spectra of Protein a Immobilized on to Functionalized Polypropylene Membranes by Gaseous Plasma of Oxygen and of Anhydrous Ammonia. Biomaterials, Artificial Cells and Artificial Organs 16:5, pages 955-966.
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J.E. Wilson. (1986) Hemocompatible Polymers: Preparation and Properties. Polymer-Plastics Technology and Engineering 25:3-4, pages 233-294.
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. 2012. Nonthermal Plasma Chemistry and Physics. Nonthermal Plasma Chemistry and Physics 269 298 .
Lin Zhang, Zhi-Hua Sun, Feng-Mei Yu & Hong-Bin Chen. (2011) Structure and Properties of - Nanocomposite Films for Biomedical Applications. Bioinorganic Chemistry and Applications 2011, pages 1-5.
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Lijiang Wang & Gregory Raupp. (2005) Investigation of Dow Cyclotene 4026 surface amination by downstream plasma treatment. Journal of Applied Polymer Science 97:6, pages 2418-2427.
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Jin Ho Lee & Kinam Park. 2002. Methods of Tissue Engineering. Methods of Tissue Engineering 525 537 .
Mitchell Mason, Koen P Vercruysse, Kelly R Kirker, Ryon Frisch, Dale M Marecak, Glenn D Prestwich & William G Pitt. (2000) Attachment of hyaluronic acid to polypropylene, polystyrene, and polytetrafluoroethylene. Biomaterials 21:1, pages 31-36.
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Robert M. Nerem, Linda G. Braddon & Dror Seliktar. 1998. Frontiers in Tissue Engineering. Frontiers in Tissue Engineering 561 579 .
C.-M. Chan, T.-M. Ko & H. Hiraoka. (1996) Polymer surface modification by plasmas and photons. Surface Science Reports 24:1-2, pages 1-54.
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Kalpana R. Kamath, Haesun Park, Hong S. Shim & Kinam Park. (1994) Albumin grafting on dimethyldichlorosilane-coated glass by gamma-irradiation. Colloids and Surfaces B: Biointerfaces 2:5, pages 471-479.
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Kalpana R. Kamath & Kinam Park. (2004) Surface modification of polymeric biomaterials by albumin grafting using γ‐irradiation. Journal of Applied Biomaterials 5:2, pages 163-173.
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G.H. Engbers & J. Feijen. (2018) Current Techniques to Improve the Blood Compatibility of Biomaterial Surfaces. The International Journal of Artificial Organs 14:4, pages 199-215.
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R. Sipehia, A. S. Chawla, J. Daka & T. M. S. Chang. (2004) Immobilization of enzymes on polypropylene bead surfaces by anhydrous ammonia gaseous plasma technique. Journal of Biomedical Materials Research 22:5, pages 417-422.
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Chandra P. Sharma, Thomas Chandy & M.C. Sunny. (2016) Inhibition of Platelet Adhesion to Glow Discharge Modified Surfaces. Journal of Biomaterials Applications 1:3, pages 533-552.
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George Joseph & Chandra P. Sharma. (1986) Platelet adhesion to surfaces treated with glow discharge and albumin. Journal of Biomedical Materials Research 20:5, pages 677-682.
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Fred Senatore & Fred Bernath. (2004) Parameters affecting optimum activity and stability of urokinase‐bound fibrocollagenous tubes. Biotechnology and Bioengineering 28:1, pages 64-72.
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