Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the open macroscopic pore network impedes the retention of the seeding solution. The present study aimed at comparing several seeding conditions (no fetal bovine serum, 10% or 100% serum) and methods (Static seeding in Tissue Culture Treated plate (CT), Static seeding of the MES in non-Culture Treated plate (nCT), Seeding in nCT plate placed on an orbital shaker at 20 rpm (nCTR), Static seeding of the MES previously incubated with 100% FBS for 1 h to allow for protein adsorption (FBS)) commonly utilised in tissue engineering using highly porous melt electrowritten scaffolds, assessing their seeding efficacy, cell distribution homogeneity and repro...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
Tissue engineering involves the seeding of cells into a structural scaffolding to regenerate the arc...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Abstract: The use of biopolymers as a three dimensional (3D) support structure for cell growth is a ...
The aim of this study was to develop and evaluate a simple and rapid cell seeding procedure for both...
Obtaining an efficient, uniform and reproducible cell seeding of porous tubular scaffolds constitute...
Melt electrowriting (MEW) is an additive manufacturing technology that is recently used to fabricate...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
Tissue engineering involves the seeding of cells into a structural scaffolding to regenerate the arc...
The advance of rapid prototyping techniques has significantly improved control over the pore network...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Abstract: The use of biopolymers as a three dimensional (3D) support structure for cell growth is a ...
The aim of this study was to develop and evaluate a simple and rapid cell seeding procedure for both...
Obtaining an efficient, uniform and reproducible cell seeding of porous tubular scaffolds constitute...
Melt electrowriting (MEW) is an additive manufacturing technology that is recently used to fabricate...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engine...
Tissue engineering involves the seeding of cells into a structural scaffolding to regenerate the arc...