Additive manufacturing (AM) allows the free form fabrication of three-dimensional (3D) structures with distinct external geometry, fitting into a patient-specific defect, and defined internal pore architecture. However, fabrication of predesigned collagen scaffolds using AM-based technologies is challenging due to the low viscosity of collagen solutions, gels or dispersions commonly used for scaffold preparation. In the present study, we have developed a straightforward method which is based on 3D plotting of a highly viscous, high density collagen dispersion. The swollen state of the collagen fibrils at pH4 enabled the homogenous extrusion of the material, the deposition of uniform strands and finally the construction of 3D scaffolds. Stab...
Novel freeze-drying methods to produce a range of collagen-glycosaminoglycan scaffolds with tailored...
The pore structure of three-dimensional scaffolds used in tissue engineering has been shown to signi...
Construction of scaffolds is crucial for tissue engineering applications. Three dimensional (3D) sca...
Every tissue and organ has its own 3-dimensional (3D) extracellular matrix (ECM) organization. Cells...
International audienceType I collagen is the main component of the extracellular matrix (ECM). In vi...
Three-dimensional collagen/chitosan scaffolds fabricated by freeze-drying technique in 96-well polys...
The biofabrication of large natural biomaterial scaffolds into complex 3D shapes which have a contro...
The biofabrication of large natural biomaterial scaffolds into complex 3D shapes which have a contro...
This article reports the mechanical properties and in vitro evaluation of a collagen scaffold fabric...
Type I collagen is the main component of the extracellular matrix (ECM). In vitro, under a narrow wi...
The construction of scaffolds and subsequent incorporation of cells and biologics have been widely i...
Scaffolds are an important aspect of the tissue engineering approach to tissue regeneration. This st...
Sponge-like matrices with a specific 3D structural design resembling the actual extracellular matrix...
Scaffolds of collagen and collagen with hyaluronic acid were fabricated using 3D printing and crossl...
Three-dimensional (3-D) in vitro models of the mammary gland require a scaffold matrix that supports...
Novel freeze-drying methods to produce a range of collagen-glycosaminoglycan scaffolds with tailored...
The pore structure of three-dimensional scaffolds used in tissue engineering has been shown to signi...
Construction of scaffolds is crucial for tissue engineering applications. Three dimensional (3D) sca...
Every tissue and organ has its own 3-dimensional (3D) extracellular matrix (ECM) organization. Cells...
International audienceType I collagen is the main component of the extracellular matrix (ECM). In vi...
Three-dimensional collagen/chitosan scaffolds fabricated by freeze-drying technique in 96-well polys...
The biofabrication of large natural biomaterial scaffolds into complex 3D shapes which have a contro...
The biofabrication of large natural biomaterial scaffolds into complex 3D shapes which have a contro...
This article reports the mechanical properties and in vitro evaluation of a collagen scaffold fabric...
Type I collagen is the main component of the extracellular matrix (ECM). In vitro, under a narrow wi...
The construction of scaffolds and subsequent incorporation of cells and biologics have been widely i...
Scaffolds are an important aspect of the tissue engineering approach to tissue regeneration. This st...
Sponge-like matrices with a specific 3D structural design resembling the actual extracellular matrix...
Scaffolds of collagen and collagen with hyaluronic acid were fabricated using 3D printing and crossl...
Three-dimensional (3-D) in vitro models of the mammary gland require a scaffold matrix that supports...
Novel freeze-drying methods to produce a range of collagen-glycosaminoglycan scaffolds with tailored...
The pore structure of three-dimensional scaffolds used in tissue engineering has been shown to signi...
Construction of scaffolds is crucial for tissue engineering applications. Three dimensional (3D) sca...