Author/Authors :
Borowiec، نويسنده , , Justyna and Hampl، نويسنده , , Jِrg and Gebinoga، نويسنده , , Michael and Elsarnagawy، نويسنده , , Tarek and Elnakady، نويسنده , , Yasser A. and Fouad، نويسنده , , Hassan and Almajhadi، نويسنده , , Fahd and Fernekorn، نويسنده , , Uta and Weise، نويسنده , , Frank and Singh، نويسنده , , Sukhdeep and Elsarnagawy، نويسنده , , Dief and Schober، نويسنده , , Andreas، نويسنده ,
Abstract :
Within the scientific community, there is an increasing demand to apply advanced cell cultivation substrates with increased physiological functionalities for studying spatially defined cellular interactions. Porous polymeric scaffolds are utilized for mimicking an organ-like structure or engineering complex tissues and have become a key element for three-dimensional (3D) cell cultivation in the meantime. As a consequence, efficient 3D scaffold fabrication methods play an important role in modern biotechnology. Here, we present a novel thermoforming procedure for manufacturing porous 3D scaffolds from permeable materials. We address the issue of precise thermoforming of porous polymer foils by using multilayer polymer thermoforming technology. This technology offers a new method for structuring porous polymer foils that are otherwise available for non-porous polymers only. We successfully manufactured 3D scaffolds from solvent casted and phase separated polylactic acid (PLA) foils and investigated their biocompatibility and basic cellular performance. The HepG2 cell culture in PLA scaffold has shown enhanced albumin secretion rate in comparison to a previously reported polycarbonate based scaffold with similar geometry.
Keywords :
Polymer scaffold , Hepatocyte , Polylactic acid (PLA) , 3D , Cell culture