Polymeric membranes are widely applied in biomedical applications, including in vitro organ models. In such models, they are mostly used as supports on which cells are cultured to create functional tissue units of the desired organ. To this end, the membrane properties, e.g., morphology and porosity, should match the tissue properties. Organ models of dynamic (barrier) tissues, e.g., lung, require flexible, elastic and porous membranes. Thus, membranes based on poly (dimethyl siloxane) (PDMS) are often applied, which are flexible and elastic. However, PDMS has low cell adhesive properties and displays small molecule ad- and absorption. Furthermore, the introduction of porosity in these membranes requires elaborate methods. In this work, we ...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Please double check for any spelling mistakes. Polydimethylsiloxane (PDMS)-based elastomers have bec...
Despite the increased expenditure of the pharmaceutical industry on research and development, the nu...
Polymeric membranes are widely applied in biomedical applications, including in vitro organ models. ...
Polymeric membranes are widely applied in biomedical applications, including in vitro organ models. ...
The recent development of lungs-on-chips is a major advancement in lung disease research. However, t...
Polymeric membranes prepared via DIPS (Diffusion Induced Phase Separation) are widely studied and ut...
Using phase separation micromolding (PS mu M) we developed porous micro-patterned sheets from amorph...
A common approach in tissue engineering strategies is to deliver living cells together with supporti...
International audienceHerein, a novel polymeric porous membrane was developed, without the use of an...
A new method has been developed for creating self-assembling or self-organizing materials. The meth...
In vitro models are fundamental in the study of cell behaviour, the physiological function of organs...
In recent years, organs-on-chips (OOCs) have been developed to meet the desire for more realistic in...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Please double check for any spelling mistakes. Polydimethylsiloxane (PDMS)-based elastomers have bec...
Despite the increased expenditure of the pharmaceutical industry on research and development, the nu...
Polymeric membranes are widely applied in biomedical applications, including in vitro organ models. ...
Polymeric membranes are widely applied in biomedical applications, including in vitro organ models. ...
The recent development of lungs-on-chips is a major advancement in lung disease research. However, t...
Polymeric membranes prepared via DIPS (Diffusion Induced Phase Separation) are widely studied and ut...
Using phase separation micromolding (PS mu M) we developed porous micro-patterned sheets from amorph...
A common approach in tissue engineering strategies is to deliver living cells together with supporti...
International audienceHerein, a novel polymeric porous membrane was developed, without the use of an...
A new method has been developed for creating self-assembling or self-organizing materials. The meth...
In vitro models are fundamental in the study of cell behaviour, the physiological function of organs...
In recent years, organs-on-chips (OOCs) have been developed to meet the desire for more realistic in...
Biocompatible and elastic porous tubular structures based on poly(1,3-trimethylene carbonate), PTMC,...
Please double check for any spelling mistakes. Polydimethylsiloxane (PDMS)-based elastomers have bec...
Despite the increased expenditure of the pharmaceutical industry on research and development, the nu...