Topographic features are well known to influence cell behaviour and can provide a powerful tool for engineering complex, functional tissues. This study aimed to investigate the mechanisms of formation of a stable micro-topography on plastic compressed (PC) collagen gels. The uni-directional fluid flow that accompanies PC of collagen gels creates a fluid leaving surface (FLS) and a non-fluid leaving surface (non-FLS). Here we tested the hypothesis that the resulting anisotropy in collagen density and stiffness between FLS and non-FLS would influence the fidelity and stability of micro-grooves patterned on these surfaces. A pattern template of parallel-aligned glass fibres was introduced to the FLS or non-FLS either at the start of the compre...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
Collagen microstructure is closely related to the mechanical properties of tissues and affects cell ...
In small intestinal submucosa scaffolds for functional tissue engineering, the impact of scaffold fa...
Micropatterning of polymers is a technique used in tissue engineering to create additional features ...
Operator control of cell/matrix density of plastically compressed collagen hydrogel scaffolds critic...
Collagen gels provide a versatile and widely used substrate for three-dimensional (3D) cell culture....
Tissue engineering has traditionally relied on the use of scaffolds as inert, durable materials for ...
Topographic patterning provides a useful tool for regulating cell function, such as adhesion, prolif...
Among various natural biopolymers, type I collagen gels have demonstrated the highest potential as b...
Micropatterning technologies have demonstrated that cell shape is a major regulator of cell behavior...
<p>A) Overall microfluidic device layout. B) The devices contain an array of trapezoidal posts that ...
Tissue engineering provides a promising tool for creating load-bearing cardiovascular tissues. Ideal...
Scaffolds are used in diverse tissue engineering applications as hosts for cell proliferation and ex...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Cell behavior is influenced by a multitude of extracellular factors including chemistry, mechanics, ...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
Collagen microstructure is closely related to the mechanical properties of tissues and affects cell ...
In small intestinal submucosa scaffolds for functional tissue engineering, the impact of scaffold fa...
Micropatterning of polymers is a technique used in tissue engineering to create additional features ...
Operator control of cell/matrix density of plastically compressed collagen hydrogel scaffolds critic...
Collagen gels provide a versatile and widely used substrate for three-dimensional (3D) cell culture....
Tissue engineering has traditionally relied on the use of scaffolds as inert, durable materials for ...
Topographic patterning provides a useful tool for regulating cell function, such as adhesion, prolif...
Among various natural biopolymers, type I collagen gels have demonstrated the highest potential as b...
Micropatterning technologies have demonstrated that cell shape is a major regulator of cell behavior...
<p>A) Overall microfluidic device layout. B) The devices contain an array of trapezoidal posts that ...
Tissue engineering provides a promising tool for creating load-bearing cardiovascular tissues. Ideal...
Scaffolds are used in diverse tissue engineering applications as hosts for cell proliferation and ex...
Mechanical loading protocols in tissue engineering (TE) aim to improve the deposition of a properly ...
Cell behavior is influenced by a multitude of extracellular factors including chemistry, mechanics, ...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
Collagen microstructure is closely related to the mechanical properties of tissues and affects cell ...
In small intestinal submucosa scaffolds for functional tissue engineering, the impact of scaffold fa...