This study focusses on the development of a biomimetic oxygenator test device. Due to limited biocompatibility, current oxygenators do not allow mid- to long-term therapy. Tissue engineering uses autologous cell sources to overcome the immunogenic barriers of biomaterials. Surface coating with endothelial cells might improve hemocompatibility and thus prevent immunogenic reactions of the body. In this study this concept is applied to endothelialise a gas-permeable membrane to develop a biomimetic oxygenator test-device (ENDOXY).ENDOXY—a multifunctional test-system was developed to endothelialise a gas-permeable membrane suitable for cell culture and to test the cell retention under shear stress and to measure gas transfer through it.Success...
Fouling on the gas-exchange hollow-fiber membrane (HFM) of extracorporeal membrane oxygenation (ECMO...
The generation of a living protective layer at the luminal surface of cardiovascular devices, compos...
The endothelialization of gas exchange membranes can increase the hemocompatibility of extracorporea...
Endothelialized oxygenator devices (EndOxy) with a physiological, nonthrombogenic, and anti-inflamma...
Endothelialized oxygenator devices (EndOxy) with a physiological, nonthrombogenic, and anti-inflamma...
In patients with respiratory failure, extracorporeal lung support can ensure the vital gas exchange ...
In the concept of a biohybrid lung, endothelial cells seeded on gas exchange membranes form a non-th...
Progress in biocompatibility and tissue engineering would today be inconceivable without the aid of ...
Current artificial lungs, or membrane oxygenators, have limited gas exchange capacity due to their i...
Extracorporeal lung support can ensure the vital gas exchange in patients with respiratory failure b...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Fouling on the gas-exchange hollow-fiber membrane (HFM) of extracorporeal membrane oxygenation (ECMO...
The generation of a living protective layer at the luminal surface of cardiovascular devices, compos...
The endothelialization of gas exchange membranes can increase the hemocompatibility of extracorporea...
Endothelialized oxygenator devices (EndOxy) with a physiological, nonthrombogenic, and anti-inflamma...
Endothelialized oxygenator devices (EndOxy) with a physiological, nonthrombogenic, and anti-inflamma...
In patients with respiratory failure, extracorporeal lung support can ensure the vital gas exchange ...
In the concept of a biohybrid lung, endothelial cells seeded on gas exchange membranes form a non-th...
Progress in biocompatibility and tissue engineering would today be inconceivable without the aid of ...
Current artificial lungs, or membrane oxygenators, have limited gas exchange capacity due to their i...
Extracorporeal lung support can ensure the vital gas exchange in patients with respiratory failure b...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
Fouling on the gas-exchange hollow-fiber membrane (HFM) of extracorporeal membrane oxygenation (ECMO...
The generation of a living protective layer at the luminal surface of cardiovascular devices, compos...
The endothelialization of gas exchange membranes can increase the hemocompatibility of extracorporea...