A mussel-inspired surface functionalization of the polydopamine (PDA) coating has been demonstrated to be a promising strategy to ensure the biocompatibility of various biomaterials. To explore the multifunctionality of the PDA coating for vascular stents and elucidate the mechanisms by which the PDA coating modulates vascular cell behavior, this study examined the protein adsorption, the responses of endothelial cells (ECs) and smooth muscle cells (SMCs), and platelet adhesion to various PDA-coated surfaces synthesized at varied initial dopamine concentrations. Our results indicate that various PDA coatings present distinct and varied functionalities. The quinone group on the PDA coating induces a substantially higher amount of protein ads...
In this study, we introduced a simple method for polydopamine-mediated immobilization of dual bioact...
It is widely accepted that surface biofunctional modification may be an effective approach to improv...
Recently, Poly-dimethylsiloxane (PDMS) have been widely used in cell studies due to its many advanta...
Surface functionalization via molecular design has been a key approach to incorporate new functional...
We present a versatile route for promoting cell adhesion and viability on various non-wetting surfac...
Finding that mussels rely on catechol and amine functional group enriched proteins to achieve robust...
Most polymeric vascular prosthetic materials have low patency rate for replacement of small diameter...
Most polymeric vascular prosthetic materials have low patency rate for replacement of small diameter...
Mussel inspired proteins have been demonstrated to serve as a versatile biologic adhesive with numer...
Heparin, an important polysaccharide, has been widely used for coatings of cardiovascular devices be...
Surface modification by conjugating biomolecules has been widely proved to enhance biocompatibility ...
This research concentrated on improving the blood compatibility of the iron stent. Based on the self...
Amine groups physiologically play an important role in regulating the growth behavior of cells and t...
Biomaterials with graded functionality have various applications in cell and tissue engineering. In ...
Mussels and other marine organisms secrete protein-based adhesive materials for adherence to substra...
In this study, we introduced a simple method for polydopamine-mediated immobilization of dual bioact...
It is widely accepted that surface biofunctional modification may be an effective approach to improv...
Recently, Poly-dimethylsiloxane (PDMS) have been widely used in cell studies due to its many advanta...
Surface functionalization via molecular design has been a key approach to incorporate new functional...
We present a versatile route for promoting cell adhesion and viability on various non-wetting surfac...
Finding that mussels rely on catechol and amine functional group enriched proteins to achieve robust...
Most polymeric vascular prosthetic materials have low patency rate for replacement of small diameter...
Most polymeric vascular prosthetic materials have low patency rate for replacement of small diameter...
Mussel inspired proteins have been demonstrated to serve as a versatile biologic adhesive with numer...
Heparin, an important polysaccharide, has been widely used for coatings of cardiovascular devices be...
Surface modification by conjugating biomolecules has been widely proved to enhance biocompatibility ...
This research concentrated on improving the blood compatibility of the iron stent. Based on the self...
Amine groups physiologically play an important role in regulating the growth behavior of cells and t...
Biomaterials with graded functionality have various applications in cell and tissue engineering. In ...
Mussels and other marine organisms secrete protein-based adhesive materials for adherence to substra...
In this study, we introduced a simple method for polydopamine-mediated immobilization of dual bioact...
It is widely accepted that surface biofunctional modification may be an effective approach to improv...
Recently, Poly-dimethylsiloxane (PDMS) have been widely used in cell studies due to its many advanta...