Scaffolds are physical substrates for cell attachment, proliferation, and differentiation, ultimately leading to the regeneration of tissues. They must be designed according to specific biomechanical requirements, i.e., certain standards in terms of mechanical properties, surface characteristics, porosity, degradability, and biocompatibility. The optimal design of a scaffold for a specific tissue strongly depends on both materials and manufacturing processes, as well as surface treatment. Polymeric scaffolds reinforced with electro-active particles could play a key role in tissue engineering by modulating cell proliferation and differentiation. This paper investigates the use of an extrusion-based additive manufacturing system to produce po...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
Additive manufacturing techniques are promising technologies to produce patient-specific and effecti...
Scaffolds are physical substrates for cell attachment, proliferation, and differentiation, ultimatel...
Scaffolds are physical substrates for cell attachment, proliferation and differentiation, ultimately...
Scaffolds are physical substrates for cell attachment, proliferation and differentiation, ultimately...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
Biomanufacturing is a relatively new research domain focusing on the use of additive manufacturing t...
Graphene-based polymer nanocomposites are being studied for biomedical applications. Polymer nanocom...
Scaffolds play a key role in tissue engineering applications. In the case of bone tissue engineering...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
Additive manufacturing techniques are promising technologies to produce patient-specific and effecti...
Scaffolds are physical substrates for cell attachment, proliferation, and differentiation, ultimatel...
Scaffolds are physical substrates for cell attachment, proliferation and differentiation, ultimately...
Scaffolds are physical substrates for cell attachment, proliferation and differentiation, ultimately...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
Biomanufacturing is a relatively new research domain focusing on the use of additive manufacturing t...
Graphene-based polymer nanocomposites are being studied for biomedical applications. Polymer nanocom...
Scaffolds play a key role in tissue engineering applications. In the case of bone tissue engineering...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
Additive manufacturing techniques are promising technologies to produce patient-specific and effecti...