Additive manufacturing (AM) is an increasingly important technology for fabricating complex and customized structures using a range of advanced materials and is now playing a critical role in the field of bone tissue engineering (BTE). Two-dimensional nanomaterials (2D NMs) have demonstrated their significance in biomedical science. The convergence of 2D NMs to 3D printing (3DP) technology to create the desired bone scaffolds has become an alternative approach to breakthrough bottlenecks of remaining challenges in BTE, which can potentially achieve the multifunctionality of a bone substitute. The first part of this review provides an overview of the mechanism and critical comparison of the commonly-used 3DP and bioprinting methods. Each met...
In most cases, bone injuries heal without complications, however, there is an increasing number of i...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Bone tissue engineered 3-D constructs customized to patient-specific needs are emerging as attractiv...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
The utilization of biomedical nanotechnologies and nanomaterials has surged in the field of 3D bone ...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
Hope is that tissue engineering will provide a solution to meet the growing needs for bone substitut...
International audienceAdditive manufacturing has attracted keen interest in the medical field in rec...
The growing interest in multi-functional metallic biomaterials for bone substitutes challenges the c...
consider to be a synonymous of additive manufacturing has made its way into the medical field, not o...
The growing interest in multi-functional metallic biomaterials for bone substitutes challenges the c...
Since we are able to use 3D printers, producing porous metal scaffolds become very easy. Contrary to...
The design of the bone scaffolds changes and develops with the developing technology and production ...
In most cases, bone injuries heal without complications, however, there is an increasing number of i...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Bone tissue engineered 3-D constructs customized to patient-specific needs are emerging as attractiv...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
Recent developments in three-dimensional (3D) printing technology offer immense potential in fabrica...
The utilization of biomedical nanotechnologies and nanomaterials has surged in the field of 3D bone ...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
3D printed bone scaffolds have the potential to replace autografts and allografts because of advanta...
Hope is that tissue engineering will provide a solution to meet the growing needs for bone substitut...
International audienceAdditive manufacturing has attracted keen interest in the medical field in rec...
The growing interest in multi-functional metallic biomaterials for bone substitutes challenges the c...
consider to be a synonymous of additive manufacturing has made its way into the medical field, not o...
The growing interest in multi-functional metallic biomaterials for bone substitutes challenges the c...
Since we are able to use 3D printers, producing porous metal scaffolds become very easy. Contrary to...
The design of the bone scaffolds changes and develops with the developing technology and production ...
In most cases, bone injuries heal without complications, however, there is an increasing number of i...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
Bone tissue engineered 3-D constructs customized to patient-specific needs are emerging as attractiv...