Osseous tissue defects caused by trauma present a common clinical problem. Although traditional clinical procedures have been successfully employed, several limitations persist with regards to insufficient donor tissue, disease transmission, and inadequate host-implant integration. Therefore, this work aims to address current limitations regarding inadequate host tissue integration through the use of a novel elastomeric material for three-dimensional (3D) printing biomimetic and bioactive scaffolds. A novel thermoplastic polyurethane-based elastomeric composite filament (Gel-Lay) was used to manufacture porous scaffolds. In an effort to render the scaffolds more bioactive, the flexible scaffolds were subsequently incubated in simulated body...
Scaffold-assisted tissue engineering has emerged as a highly promising strategy for regenerating dam...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Three-dimensional (3D) functional constructs with biomimetic mechanical and chemical properties are ...
Musculoskeletal defects are commonly caused by traumatic injuries and tumor removal and critically s...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Additive manufacturing holds promise for the fabrication of three-dimensional scaffolds with precise...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...
Osteochondral tissue has a complex graded structure where biological, physiological, and mechanical ...
Since we are able to use 3D printers, producing porous metal scaffolds become very easy. Contrary to...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
Some basic requirements of bone tissue engineering include cells derived from bone tissues, three-di...
The design of the bone scaffolds changes and develops with the developing technology and production ...
The use of porous three-dimensional (3D) composite scaffolds has attracted great attention in bone t...
The use of cell-rich hydrogels for three-dimensional (3D) cell culture has shown great potential for...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Scaffold-assisted tissue engineering has emerged as a highly promising strategy for regenerating dam...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Three-dimensional (3D) functional constructs with biomimetic mechanical and chemical properties are ...
Musculoskeletal defects are commonly caused by traumatic injuries and tumor removal and critically s...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
Additive manufacturing holds promise for the fabrication of three-dimensional scaffolds with precise...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...
Osteochondral tissue has a complex graded structure where biological, physiological, and mechanical ...
Since we are able to use 3D printers, producing porous metal scaffolds become very easy. Contrary to...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
Some basic requirements of bone tissue engineering include cells derived from bone tissues, three-di...
The design of the bone scaffolds changes and develops with the developing technology and production ...
The use of porous three-dimensional (3D) composite scaffolds has attracted great attention in bone t...
The use of cell-rich hydrogels for three-dimensional (3D) cell culture has shown great potential for...
Three-dimensional printing (3D printing) is a promising technique for producing scaffolds for bone t...
Scaffold-assisted tissue engineering has emerged as a highly promising strategy for regenerating dam...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
Three-dimensional (3D) functional constructs with biomimetic mechanical and chemical properties are ...