Blood-contacting materials with antiplatelet aggregation and anticoagulant properties are in great demand in biomedical field. Herein, hydrophilic poly(ethylene glycol) (PEG) and antithrombotic peptide ACH11 were coimmobilized onto Au to develop a multifunctional surface with remarkable hemocompatibility, antiprotein adsorption, antiplatelet aggregation, anticoagulant properties, and good histocompatibility. PEG can not only help the surface resist nonspecific protein adsorption and improve its hemocompatibility but also be a benefit for the immobilized ACH11 to maintain its bioactivity in plasma. The anticoagulant peptide ACH11 can endow the surface with the ability of activated coagulation factor Xa (FXa) inhibition and antiplatelet aggr...
The hemocompatibility of vascular grafts made from poly(ethylene terephthalate) (PET) is insufficien...
Biocompatibility of natural and synthetic implant materials as blood contacting devices is crucial t...
The blood compatibility of self-assembled monolayers (SAMs) of oligoproline, a nonionic antifouling ...
Biomaterials are commonly used in the medical clinic today; however, artificial materials can activa...
Activation of the thrombotic and complement systems is the main recognition and effector mechanisms ...
Infection and thrombus formation are still the biggest challenges for the success of blood contact m...
Poor compatibility between blood and metallic coronary artery stents is one reason for arterial rest...
Implantable material surfaces suffer from unavoidable major events of blood–biomaterial interactions...
We described a two-step process to fabricate the heparinized polypropylene (PP) film using cyanuric ...
The use of blood-contacting implantable devices is limited by surface-induced thrombosis, which has ...
Endothelial cell (EC) seeding significantly improves the blood compatibility of artificial surfaces....
The research described in this thesis is focused on the synthesis and evaluation of a vascular graft...
Poor compatibility between blood and metallic coronary artery stents is one reason for arterial rest...
Thrombus and infections are the most common causes for the failure of medical devices, leading to hi...
Activation of hemostatic pathways by blood‐contacting materials remains a major hurdle in the develo...
The hemocompatibility of vascular grafts made from poly(ethylene terephthalate) (PET) is insufficien...
Biocompatibility of natural and synthetic implant materials as blood contacting devices is crucial t...
The blood compatibility of self-assembled monolayers (SAMs) of oligoproline, a nonionic antifouling ...
Biomaterials are commonly used in the medical clinic today; however, artificial materials can activa...
Activation of the thrombotic and complement systems is the main recognition and effector mechanisms ...
Infection and thrombus formation are still the biggest challenges for the success of blood contact m...
Poor compatibility between blood and metallic coronary artery stents is one reason for arterial rest...
Implantable material surfaces suffer from unavoidable major events of blood–biomaterial interactions...
We described a two-step process to fabricate the heparinized polypropylene (PP) film using cyanuric ...
The use of blood-contacting implantable devices is limited by surface-induced thrombosis, which has ...
Endothelial cell (EC) seeding significantly improves the blood compatibility of artificial surfaces....
The research described in this thesis is focused on the synthesis and evaluation of a vascular graft...
Poor compatibility between blood and metallic coronary artery stents is one reason for arterial rest...
Thrombus and infections are the most common causes for the failure of medical devices, leading to hi...
Activation of hemostatic pathways by blood‐contacting materials remains a major hurdle in the develo...
The hemocompatibility of vascular grafts made from poly(ethylene terephthalate) (PET) is insufficien...
Biocompatibility of natural and synthetic implant materials as blood contacting devices is crucial t...
The blood compatibility of self-assembled monolayers (SAMs) of oligoproline, a nonionic antifouling ...