Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"Effects of Plasma Proteins on Staphylococcus epidermidis RP62A Adhesion and Interaction with Platelets on Polyurethane Biomaterial Surfaces"
written by Li-Chong Xu, Christopher A. Siedlecki,
published by Journal of Biomaterials and Nanobiotechnology, Vol.3 No.4A, 2012
has been cited by the following article(s):
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[2] New cross‐linkable poly [bis (octafluoropentoxy) phosphazene] biomaterials: Synthesis, surface characterization, bacterial adhesion, and plasma coagulation …
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[3] Quantifying single‐platelet biomechanics: An outsider's guide to biophysical methods and recent advances
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[4] Blood coagulation response and bacterial adhesion to biomimetic polyurethane biomaterials prepared with surface texturing and nitric oxide release
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[5] Influence of Fibrinogen on Staphylococcus epidermidis Adhesion Can Be Reversed by Tuning Surface Nanotopography
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[7] Development of an anti-adhesive coating using an extracellular polymer produced by a cyanobacterium: towards industrial application
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[8] Comparative characterisation of the biofilm-production abilities of Staphylococcus epidermidis isolated from human skin and platelet concentrates
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[9] Surface modification strategies for combating catheter-related complications: recent advances and challenges
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[10] Octadecyl Chains Immobilized onto Hyaluronic Acid Coatings by Thiol− ene “Click Chemistry” Increase the Surface Antimicrobial Properties and Prevent …
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[12] Octadecyl Chains Immobilized onto Hyaluronic Acid Coatings by Thiol–ene “Click Chemistry” Increase the Surface Antimicrobial Properties and Prevent Platelet …
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[13] Antibacterial polyurethanes
Advances in Polyurethane Biomaterials, 2016
[14] Staphylococcus epidermidis affinity for fibrinogen-coated surfaces correlates with the abundance of the SdrG adhesin on the cell surface
Langmuir, 2015
[15] Staphylococcus aureus Fibronectin-Binding Protein A Mediates Cell-Cell Adhesion through Low-Affinity Homophilic Bonds
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[16] Atomic force microscopy reveals a dual collagen‐binding activity for the staphylococcal surface protein SdrF
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[17] Protein adsorption, platelet adhesion, and bacterial adhesion to polyethylene‐glycol‐textured polyurethane biomaterial surfaces
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[18] Biofilm treatments with electric currents
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