Background: In vitro dynamic culture conditions play a pivotal role in developing engineered tissue grafts, where the supply of oxygen and nutrients, and waste removal must be permitted within construct thickness. For tubular scaffolds, mass transfer is enhanced by introducing a convective flow through rotating bioreactors with positive effects on cell proliferation, scaffold colonization and extracellular matrix deposition. We characterized a novel polyurethane-based tubular scaffold and investigated the impact of 3 different culture configurations over cell behavior: dynamic (i) single-phase (medium) rotation and (ii) double-phase exposure (medium-air) rotation; static (iii) single-phase static culture as control. Methods: A new mixture o...
Cardiovascular diseases represent a major global health burden, with high rates of mortality and mor...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...
Background: In vitro dynamic culture conditions play a pivotal role in developing engineered tissue ...
Cardiovascular diseases represent a major global health burden, with high rates of mortality and mor...
In tissue engineering, the chemical and topographical cues within three-dimensional (3D) scaffolds a...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
Background. Bone engineering requires thicker three-dimensional constructs than the maximum thicknes...
Bioreactors for large-scale culture of mammalian cells are playing vital roles in biotechnology and ...
In the past decades, vascular tissue engineering has made great strides towards bringing engineered ...
Tubular polymer scaffolds based on tissue engineering techniques have been studied as potential alte...
Human tissues and organs are inherently heterogeneous, and their functionality is determined by the ...
There is a clinical need for a tissue-engineered vascular graft (TEVG), and combining stem cells wit...
3D cell cultures have been investigated in the tissue engineering and regenerative medicine domains ...
Culturing three-dimensional (3D) tissues with an appropriate microenvironment is a critical and fund...
Cardiovascular diseases represent a major global health burden, with high rates of mortality and mor...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...
Background: In vitro dynamic culture conditions play a pivotal role in developing engineered tissue ...
Cardiovascular diseases represent a major global health burden, with high rates of mortality and mor...
In tissue engineering, the chemical and topographical cues within three-dimensional (3D) scaffolds a...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
Background. Bone engineering requires thicker three-dimensional constructs than the maximum thicknes...
Bioreactors for large-scale culture of mammalian cells are playing vital roles in biotechnology and ...
In the past decades, vascular tissue engineering has made great strides towards bringing engineered ...
Tubular polymer scaffolds based on tissue engineering techniques have been studied as potential alte...
Human tissues and organs are inherently heterogeneous, and their functionality is determined by the ...
There is a clinical need for a tissue-engineered vascular graft (TEVG), and combining stem cells wit...
3D cell cultures have been investigated in the tissue engineering and regenerative medicine domains ...
Culturing three-dimensional (3D) tissues with an appropriate microenvironment is a critical and fund...
Cardiovascular diseases represent a major global health burden, with high rates of mortality and mor...
Current culture methods to generate large quantities of cells destined for tissue engineering and re...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...