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Salt-responsive polyzwitterionic materials for surface regeneration between switchable fouling and antifouling properties
- Source :
- Acta Biomaterialia. 40:62-69
- Publication Year :
- 2016
- Publisher :
- Elsevier BV, 2016.
-
Abstract
- Development of smart regenerative surface is a highly challenging but important task for many scientific and industrial applications. Specifically, very limited research efforts were made for surface regeneration between bio-adhesion and antifouling properties, because bioadhesion and antifouling are the two highly desirable but completely opposite properties of materials. Herein, we developed salt-responsive polymer brushes of poly(3-(1-(4-vinylbenzyl)-1H-imidazol-3-ium-3-yl) propane-1-sulfonate) (polyVBIPS), which can be switched reversibly and repeatedly between protein capture/release and surface wettability in a controllable manner. PolyVBIPS brush has demonstrated its switching ability to resist both protein adsorption from 100% blood plasma/serum and bacterial attachment in multiple cycles. PolyVBIPS brush also exhibits reversible surface wettability from ∼40° to 25° between in PBS and in 1 M NaCl solutions in multiple cycles. Overall, the salt-responsive behaviors of polyVBIPS brushes can be interpreted by the “anti-polyelectrolyte effect”, i.e. polyVBIPS brushes adopt a collapsed chain conformation at low ionic strengths to achieve surface adhesive, but an extended chain conformation at high ionic strength to realize antifouling properties. We expect that polyVBIPS will provide a simple, robust, and promising system for the fabrication of smart surfaces with biocompatible, reliable, and regenerative properties. Statement of Significance Unlike many materials with “one-time switching” capability for surface regeneration, we developed a new regenerative surface of zwitterionic polymer brush, which exhibits a reversible salt-induced switching property between a biomolecule-adhesive state and a biomolecule repellent state in complex media for multiple cycles. PolyVBIPS is easily synthesized and can be straightforward coated on the surface, which provides a simple, robust, and promising system for the fabrication of smart surfaces with biocompatible, reliable, regenerative properties.
- Subjects :
- Materials science
Polymers
Biomedical Engineering
Nanotechnology
02 engineering and technology
010402 general chemistry
Polymer brush
01 natural sciences
Biochemistry
Bacterial Adhesion
Biomaterials
Biofouling
Coated Materials, Biocompatible
Humans
Molecular Biology
chemistry.chemical_classification
Bacteria
Fouling
Biomolecule
Blood Proteins
General Medicine
Polymer
021001 nanoscience & nanotechnology
0104 chemical sciences
chemistry
Wettability
Adhesive
Wetting
0210 nano-technology
Biotechnology
Protein adsorption
Subjects
Details
- ISSN :
- 17427061
- Volume :
- 40
- Database :
- OpenAIRE
- Journal :
- Acta Biomaterialia
- Accession number :
- edsair.doi.dedup.....3548974499e89b6a910fb88c6e07970a