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Kingshott P, Interfacial interactions of protein and lipid adsorption to contact lens surfaces, PhD Thesis, University of New South Wales, Sydney, Australia, 1998.
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Interfacial Interactions of Protein and Lipid Adsorption to Contact Lens Surfaces
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Kingshott, P.1
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9
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0031271483
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Intermolecular forces between extracellular polysaccharides measured using atomic force microscope
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Elegantly shows, using AFM in the surface force mode, that the structure of polysaccharides (PSs) layers is dependent upon salt content, and at higher salt contents how the PS layers collapse and become more strongly adhered to surfaces. The study has implications for the role that PSs play in conditioning films of biofilm formation.
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Frank B.P., Belfort G. Intermolecular forces between extracellular polysaccharides measured using atomic force microscope. Langmuir. 13:1997;6234-6240. Elegantly shows, using AFM in the surface force mode, that the structure of polysaccharides (PSs) layers is dependent upon salt content, and at higher salt contents how the PS layers collapse and become more strongly adhered to surfaces. The study has implications for the role that PSs play in conditioning films of biofilm formation.
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Langmuir
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Frank, B.P.1
Belfort, G.2
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85033966708
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Symp on Non-Fouling Surface Technologies
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University of Washington, Seattle, July 30-31, 1998. An excellent overview of the breadth of the field and recent developments. A range of coating approaches were reviewed and theories discussed for interfacial phenomena involved in non-fouling
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Symp on Non-Fouling Surface Technologies, University of Washington, Seattle, July 30-31, 1998. Proceedings papers to be published as a special issue of J Biomat Sci, Polym Edn, 1999. An excellent overview of the breadth of the field and recent developments. A range of coating approaches were reviewed and theories discussed for interfacial phenomena involved in non-fouling.
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Proceedings Papers to Be Published As a Special Issue of J Biomat Sci, Polym Edn
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11
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0031213771
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Reduced protein adsorption on plastics via direct plasma deposition of triethylene glycol monoallyl ether
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Demonstrates the use of pulsed plasma polymerisation to produce PEO-like films in a one-step process that show high reductions in protein adsorption.
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Beyer D., Knoll W., Ringsdorf H., Wang J.-H., Timmons R.B., Sluka P. Reduced protein adsorption on plastics via direct plasma deposition of triethylene glycol monoallyl ether. J. Biomed. Mater. Res. 36:1997;181-189. Demonstrates the use of pulsed plasma polymerisation to produce PEO-like films in a one-step process that show high reductions in protein adsorption.
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J. Biomed. Mater. Res.
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Beyer, D.1
Knoll, W.2
Ringsdorf, H.3
Wang, J.-H.4
Timmons, R.B.5
Sluka, P.6
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12
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85033942712
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Abstract, Symp on Non-Fouling Surface Technologies
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University of Washington, Seattle, July 30-31, 1998 Description of a systematic study of the properties of rfgd deposited coatings and their effects on bioadhesion resistance. Demonstration of extremely low rates of adsorption and the ability of such proteins to be eluted
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Ratner BD, Abstract, Symp on Non-Fouling Surface Technologies, University of Washington, Seattle, July 30-31, 1998. Proceedings papers to be published as a special issue of J Biomat Sci, Polym Edn, 1999. Description of a systematic study of the properties of rfgd deposited coatings and their effects on bioadhesion resistance. Demonstration of extremely low rates of adsorption and the ability of such proteins to be eluted.
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Proceedings Papers to Be Published As a Special Issue of J Biomat Sci, Polym Edn
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Ratner, B.D.1
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Abstract, Materials Research Society Meeting
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Boston, Nov. 30-Dec. 4, 1998
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Pan V, Ratner BD. Abstract, Materials Research Society Meeting, Boston, Nov. 30-Dec. 4, 1998. Proceedings papers to be published as MRS Proc, Vol. 544 (1999).
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Abstract, Materials Research Society Meeting
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Boston, Nov. 30-Dec. 4, 1998
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Johnston E, Ratner BD. Abstract, Materials Research Society Meeting, Boston, Nov. 30-Dec. 4, 1998. Proceedings papers to be published as MRS Proc, Vol. 544 (1999).
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Self-assembled organic monolayers: Model systems for studying adsorption of proteins at surfaces
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Prime K.L., Whitesides G.M. Self-assembled organic monolayers: Model systems for studying adsorption of proteins at surfaces. Science. 252:1991;1164-1167.
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16
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0032495430
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Molecular conformation in oligo(ethylene glycol)-terminated self-assembled monolayers on gold and silver surfaces determines their ability to resist protein adsorption
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Excellent paper describing the subtle relationship between PEO molecular conformation and the ability to prevent protein adsorption.
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Harder P., Grunze M., Dahint R., Whitesides G.M., Laibinis P.E. Molecular conformation in oligo(ethylene glycol)-terminated self-assembled monolayers on gold and silver surfaces determines their ability to resist protein adsorption. J. Phys. Chem. B. 102:1998;426-436. Excellent paper describing the subtle relationship between PEO molecular conformation and the ability to prevent protein adsorption.
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J. Phys. Chem. B
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Harder, P.1
Grunze, M.2
Dahint, R.3
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Laibinis, P.E.5
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17
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Low-energy configurations of methoxy triethylene glycol terminated alkanethiol self-assembled monolayers and their relevance to protein adsorption
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Pertsin A.J., Grunze M., Garbuzova I.A. Low-energy configurations of methoxy triethylene glycol terminated alkanethiol self-assembled monolayers and their relevance to protein adsorption. J. Phys. Chem. B. 102:1998;4918-4926.
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Pertsin, A.J.1
Grunze, M.2
Garbuzova, I.A.3
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18
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0030831255
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Measurement of attractive forces between proteins and end-grafted poly(ethylene glycol) chains
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Excellent paper demonstrating the use of the surface force apparatus (SFA) to show PEO repulsion of proteins is dependent on PEO configuration. Protein attraction by PEO layers occurs when the compression energy is great enough to induce chain rearrangements, and cause protein penetration into the polymer core, without protein denaturation. The study opens up additional questions about current models describing PEO-protein interactions and suggests that more comprehensive models are required to account for all the degrees of freedom of PEO.
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Sheth S.R., Leckband D. Measurement of attractive forces between proteins and end-grafted poly(ethylene glycol) chains. Proc. Natl. Acad. Sci. USA. 94:1997;8399-8404. Excellent paper demonstrating the use of the surface force apparatus (SFA) to show PEO repulsion of proteins is dependent on PEO configuration. Protein attraction by PEO layers occurs when the compression energy is great enough to induce chain rearrangements, and cause protein penetration into the polymer core, without protein denaturation. The study opens up additional questions about current models describing PEO-protein interactions and suggests that more comprehensive models are required to account for all the degrees of freedom of PEO.
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(1997)
Proc. Natl. Acad. Sci. USA
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Sheth, S.R.1
Leckband, D.2
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Protein-resistant coatings for glass and metal oxide surfaces derived from oligo(ethylene glycol)-terminated alkyltrichlorosilanes
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Lee S.-W., Laibinis P.E. Protein-resistant coatings for glass and metal oxide surfaces derived from oligo(ethylene glycol)-terminated alkyltrichlorosilanes. Biomaterials. 19:1998;1669-1675.
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Lee, S.-W.1
Laibinis, P.E.2
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Prevention of protein adsorption by tethered poly(ethylene oxide) layers: Experiments and single-chain mean-field analysis
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McPherson T., Kidane A., Szleifer I., Park K. Prevention of protein adsorption by tethered poly(ethylene oxide) layers: Experiments and single-chain mean-field analysis. Langmuir. 14:1998;176-186.
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McPherson, T.1
Kidane, A.2
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Szleifer I. Protein adsorption on tethered polymer layers - Effect of polymer chain architecture and composition. Physica A. 244:1997;370-388.
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Protein surface interactions in the presence of polyethylene oxide: I. Simplified theory
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Grafting of PEO to glass, nitinol, and pyrolytic carbon surfaces by γ-irradiation
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McPherson T.B., Shim H.S., Park K. Grafting of PEO to glass, nitinol, and pyrolytic carbon surfaces by γ-irradiation. J. Biomed. Mater. Res. (Appl. Biomater.). 38:1997;289-302.
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McPherson, T.B.1
Shim, H.S.2
Park, K.3
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25
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0032210849
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A surface plasmon resonance study of albumin adsorption to PEO-PPO-PEO triblock copolymers
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Good investigation of Pluronic surfactant inhibition of albumin adsorption using a series of molecular weights. Protein repulsion was shown to be independent of chain length but solely dependent on the ability of the PPO to anchor the Pluronic to the surface and avoid desorption.
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Green R.J., Davies M.C., Roberts C.J., Tendler S.J.B. A surface plasmon resonance study of albumin adsorption to PEO-PPO-PEO triblock copolymers. J. Biomed. Mater. Res. 42:1998;165-171. Good investigation of Pluronic surfactant inhibition of albumin adsorption using a series of molecular weights. Protein repulsion was shown to be independent of chain length but solely dependent on the ability of the PPO to anchor the Pluronic to the surface and avoid desorption.
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J. Biomed. Mater. Res.
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Green, R.J.1
Davies, M.C.2
Roberts, C.J.3
Tendler, S.J.B.4
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26
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0032527082
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A novel method for surface modification to promote cell attachment to hydrophobic substrates
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Neff J.A., Caldwell K.D., Tresco P.A. A novel method for surface modification to promote cell attachment to hydrophobic substrates. J. Biomed. Mater. Res. 40:1998;511-519.
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Neff, J.A.1
Caldwell, K.D.2
Tresco, P.A.3
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27
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0032115878
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Poly(ethylene oxide) grafted to silicon surfaces: Grafting density and protein adsorption
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Demonstrates how the PEO graft density can be varied by changing the solution properties, and how optimal PEO graft density and/or architecture is required to prevent protein adsorption.
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Sofia S.J., Premnath V., Merrill E.W. Poly(ethylene oxide) grafted to silicon surfaces: Grafting density and protein adsorption. Macromolecules. 31:1998;5059-5070. Demonstrates how the PEO graft density can be varied by changing the solution properties, and how optimal PEO graft density and/or architecture is required to prevent protein adsorption.
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(1998)
Macromolecules
, vol.31
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Sofia, S.J.1
Premnath, V.2
Merrill, E.W.3
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28
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0032486501
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Comparison of tethered star and linear poly(ethylene oxide) for control of biomaterial surface properties
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Irvine D.J., Mayes A.M., Satija S.K., Barker J.G., Sofia-Allgor S.J., Griffith L.G. Comparison of tethered star and linear poly(ethylene oxide) for control of biomaterial surface properties. J. Biomed. Mater. Res. 40:1998;498-509.
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Irvine, D.J.1
Mayes, A.M.2
Satija, S.K.3
Barker, J.G.4
Sofia-Allgor, S.J.5
Griffith, L.G.6
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29
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0032526793
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Effect of chain density on inhibition of protein adsorption by poly(ethylene glycol) based coatings
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Paper describes a range of methods to immobilise PEGs on surfaces and discusses the effectiveness of the interfacial chain density, in relation to protein size, at preventing serum protein adsorption.
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Malmsten M., Emoto K., Van Alstine J.M. Effect of chain density on inhibition of protein adsorption by poly(ethylene glycol) based coatings. J. Colloid Interf. Sci. 202:1998;507-517. Paper describes a range of methods to immobilise PEGs on surfaces and discusses the effectiveness of the interfacial chain density, in relation to protein size, at preventing serum protein adsorption.
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J. Colloid Interf. Sci.
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Malmsten, M.1
Emoto, K.2
Van Alstine, J.M.3
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PEO graft density controls protein adsorption
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Kingshott P, Chabrecek P, Griesser HJ, PEO graft density controls protein adsorption, Trans Amer Soc Biomater, 1999;22:242 and, Griesser HJ, Abstract, Symp on Non-Fouling Surface Technologies, University of Washington, Seattle, July 30-31, 1998. Proceedings papers to be published as a special issue of J Biomat Sci, Polym Edn, 1999.
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Kingshott, P.1
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and, University of Washington, Seattle, July 30-31, 1998
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Kingshott P, Chabrecek P, Griesser HJ, PEO graft density controls protein adsorption, Trans Amer Soc Biomater, 1999;22:242 and, Griesser HJ, Abstract, Symp on Non-Fouling Surface Technologies, University of Washington, Seattle, July 30-31, 1998. Proceedings papers to be published as a special issue of J Biomat Sci, Polym Edn, 1999.
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Using polyethyleneimine to graft poly(ethylene glycol) or polysaccharide to polystyrene
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Brink C., Osterberg E., Holmberg K., Tiberg F. Using polyethyleneimine to graft poly(ethylene glycol) or polysaccharide to polystyrene. Colloid Surf. 66:1992;149-156.
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Spencer N.D. Advanced surfaces: Their tailing and analysis. Chimia. 52:1998;598-606.
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Jenny C.R., Anderson J.M. Effects of surface coupled polyethylene oxide on human macrophage adhesion and foreign body giant cell formation in vitro. J. Biomed. Mater. Res. 44:1999;206-216.
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Anderson, J.M.2
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Deible C.R., Petrosko P., Johnson P.C., Beckham E.J., Russel A.J., Wagner W.R. Molecular barriers to biomaterial thrombosis by modification of surface proteins with polyethylene glycol. Biomaterials. 19:1998;1885-1893.
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Deible, C.R.1
Petrosko, P.2
Johnson, P.C.3
Beckham, E.J.4
Russel, A.J.5
Wagner, W.R.6
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Sofia S.J., Merrill E.W. Grafting of PEO to polymer surfaces using electron beam irradiation. J. Biomed. Mater. Res. 40:1998;153-163.
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Sofia, S.J.1
Merrill, E.W.2
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37
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0031551678
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Creation of stable poly(ethylene oxide) surfaces on poly(methyl methacrylate) using blends of branched and linear polymers
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Walton D.G., Soo P.P., Mayes A.M., Sofia Allgor S.J., Jujii J.T., Griffith L.G., Ankner J.F., Kaiser H., Johansson J., Smith G.D., Barker J.G., Satija S.K. Creation of stable poly(ethylene oxide) surfaces on poly(methyl methacrylate) using blends of branched and linear polymers. Macromolecules. 30:1997;6947-6956.
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Macromolecules
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Walton, D.G.1
Soo, P.P.2
Mayes, A.M.3
Sofia Allgor, S.J.4
Jujii, J.T.5
Griffith, L.G.6
Ankner, J.F.7
Kaiser, H.8
Johansson, J.9
Smith, G.D.10
Barker, J.G.11
Satija, S.K.12
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38
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0031824625
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Surface characteristics and biocompatibility of lactide-based poly(ethylene glycol) scaffolds for tissue engineering
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Han D.K., Park K.D., Hubbell J.A., Kin Y.H. Surface characteristics and biocompatibility of lactide-based poly(ethylene glycol) scaffolds for tissue engineering. J. Biomater. Sci. Polymer Edn. 9:1998;667-680.
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Han, D.K.1
Park, K.D.2
Hubbell, J.A.3
Kin, Y.H.4
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39
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Grafted poly(ethylene glycol) on lipid surfaces inhibits protein adsorption and cell adhesion
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Du H., Chandaroy P., Hui S.W. Grafted poly(ethylene glycol) on lipid surfaces inhibits protein adsorption and cell adhesion. Biochim. Biophys. Acta Biomem. 1326:1997;236-248.
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, pp. 236-248
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Du, H.1
Chandaroy, P.2
Hui, S.W.3
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40
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0032189095
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Surface characterisation and biological properties study of silicone rubber membrane grafted with phospholipid as biomaterial via plasma induced graft co-polymerization
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Hsiue G.H., Lee S.D., Chang P.C., Kao C.Y. Surface characterisation and biological properties study of silicone rubber membrane grafted with phospholipid as biomaterial via plasma induced graft co-polymerization. J. Biomed. Mater. Res. 42:1998;134-147.
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, vol.42
, pp. 134-147
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Hsiue, G.H.1
Lee, S.D.2
Chang, P.C.3
Kao, C.Y.4
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41
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0032061941
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Adsorption of proteins onto poly(ether urethane) with a phosphorylcholine moiety and influence or preadsorbed phospholipid
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Van der Heiden A.P., Willems G.M., Lindhout T., Pijpers A.P., Koole L.H. Adsorption of proteins onto poly(ether urethane) with a phosphorylcholine moiety and influence or preadsorbed phospholipid. J. Biomed. Mater. Res. 40:1998;195-203.
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, vol.40
, pp. 195-203
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Van Der Heiden, A.P.1
Willems, G.M.2
Lindhout, T.3
Pijpers, A.P.4
Koole, L.H.5
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42
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0032104470
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Synthesis, structure and surface dynamics of phosphorylcholine functional biomimicking polymers
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Ruiz L., Hilborn J.G., Léonard D., Mathieu H.J. Synthesis, structure and surface dynamics of phosphorylcholine functional biomimicking polymers. Biomaterials. 19:1998;987-998.
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Biomaterials
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Ruiz, L.1
Hilborn, J.G.2
Léonard, D.3
Mathieu, H.J.4
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University of Washington, Seattle, July 30-31, 1998
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Griesser HJ, Abstract, Symp on Non-Fouling Surface Technologies, University of Washington, Seattle, July 30-31, 1998. Proceedings papers to be published as a special issue of J Biomat Sci, Polym Edn, 1999.
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(1999)
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Griesser, H.J.1
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44
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85033957567
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Effect of polysaccharide structure on protein adsorption
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in press
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McArthur SL, McLean KM, Kingshott P, St.John HAW, Chatelier RC, Griesser HJ. Effect of polysaccharide structure on protein adsorption, Colloids Surf, B, Bio-interfaces, in press.
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Colloids Surf, B, Bio-interfaces
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McArthur, S.L.1
McLean, K.M.2
Kingshott, P.3
St.john, H.A.W.4
Chatelier, R.C.5
Griesser, H.J.6
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45
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0031852871
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Covalent linkage of recombinant hirudin to a novel ionic poly(carbonate) urethane polymer with protein binding sites: Determination of surface antithrombin activity
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Phaneuf M.D., Szycher M., Berceli S.A., Dempsey D.J., Quist W.C., LoGerfo F.W. Covalent linkage of recombinant hirudin to a novel ionic poly(carbonate) urethane polymer with protein binding sites: Determination of surface antithrombin activity. Artif Organs. 22:1998;657-665.
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Dempsey, D.J.4
Quist, W.C.5
Logerfo, F.W.6
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The stability of PEG coatings was evaluated using electroosmosis measurements to provide a measure of the surface charge and pKs of surface groups, and thickness and graft density. An mE-PEG surface showed no changes to the electroosmosis after being stored in phosphate buffer at a range of pH values (4-11) up to 3 weeks, indicating that the surface was stable. On the other hand diEPEG showed a shift in electroosmosis as a function of pH after storage for 3 weeks at pH 11. The results suggest that the stability of end-attached PEGs is determined by the functionality of the end group that remains exposed to the aqueous environment.
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