In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold for large bone defect treatment (LBDT). Microporous, polylactic acid (PLA) scaffolds showed good healing results in small animals. However, transfer to large animal models is not easily achieved simply by upscaling the design. Increasing diffusion distances have a negative impact on cell survival and nutrition supply, leading to cell death and ultimately implant failure. Here, a novel scaffold architecture was designed to meet all requirements for an advanced bone substitute. Biofunctional, porous subunits in a load-bearing, compression-resistant frame structure characterize this approach. An open, macro- and microporous internal architecture (...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
Abstract Background The primary objective of Tissue engineering is a regeneration or replacement of ...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Due to increased life expectancy and needs of the baby boomer population, it is estimated that in th...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold fo...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
Abstract Background The primary objective of Tissue engineering is a regeneration or replacement of ...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Large bone defects are commonly treated by replacement with auto- and allografts, which have substan...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Due to increased life expectancy and needs of the baby boomer population, it is estimated that in th...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
Three different triply periodic minimal surfaces (TPMS) with three levels of porosity within those o...
The conventional tissue engineering is based on seeding of macroporous scaffold on its surface ("top...