This article reviews recent developments and major issues in the use and design of biomaterials for use as scaffolds in pediatric tissue engineering. A brief history of tissue engineering and the ...
Scientists from Tomsk Polytechnic University in collaboration with colleagues have engineered 3D-printed biodegradable scaffolds with shape memory effect based on poly(lactic acid) (PLA) doped with ...
This technique can produce scaffolds with high porosity and without the use of organic solvents. Despite the significant progress in tissue engineering scaffold design and fabrication, several ...
The process also involves bioreactors, growth factors, transcription factors, scaffolds, and mechanical stimuli to ensure ... sophisticated and functional engineered tissues. The integration of tissue ...
We have developed a new scaffold fabrication technology, termed MAgnetic Prototyping in 3D (MAP3D), to nondestructively control zonal collagen orientation by magnetic fields in conjunction with cell ...
Quality control of the materials used in various surgical applications is a key challenge for the tissue engineering industry. For example, living human cells are being used in scaffolds to repair ...
Photopolymerized hydrogels offer a unique medium with which to design a wide array of scaffolds from different chemistries ... environment to study mechanotransduction pathways as well as developing ...
Scientists have developed a new method called ESCAPE, which is engineered sacrificial capillary pumps for evacuation ...
Neural tissue engineering, spinal cord repair, cardiovascular diseases, drug delivery, biomaterial scaffolds, stem cells, neural electrode/tissue interface, and surface modification.
Bone tissue engineering offers a new solution by combining ... necessitating further optimization of scaffold design and ...
In tissue engineering, the technology permits highly complex and even patient-matched scaffold designs, as has been proven in vascular applications. This will provide new treatment pathways based on ...