Chitosan is a natural polymer widely investigated and used due to its antibacterial activity, mucoadhesive, analgesic, and hemostatic properties. Its biocompatibility makes chitosan a favorable candidate for different applications in tissue engineering (TE), such as skin, bone, and cartilage tissue regeneration. Despite promising results obtained with chitosan 3D scaffolds, significant challenges persist in fabricating hydrogel structures with ordered architectures and biological properties to mimic native tissues. In this work, chitosan has been investigated aiming at designing and fabricating uniaxial scaffolds which can be proposed for the regeneration of anisotropic tissues (i.e., skin, skeletal muscle, myocardium) by 3D printing techno...
The fabrication of intricate and long-term stable 3D polymeric scaffolds by a 3D printing technique ...
Cartilage is an important tissue contributing to the structure and function of support and protectio...
peer reviewedDentoalveolar tissue engineering is an emerging yet challenging field, considering the ...
Chitosan is a natural polymer widely investigated and used due to its antibacterial activity, mucoad...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
Chitosan (CS) has gained particular attention in biomedical applications due to its biocompatibility...
AbstractBioprinting is an emerging technology that offers the unique ability to deposit and pattern ...
In the last decade, 3D-bioprinting has attracted attention due to its capability to produce complex ...
3D biomaterial manufacturing strategies show an extraordinary driving force for the development of i...
Hydrogel materials are being investigated for application as scaffolds in tissue engineering owing t...
Recent progresses in tissue engineering are directed towards the development of technologies able to...
In recent years, 3D printed scaffolds becoming a widespread tool, which supports the repair mechanis...
Bioprinting can be defined as 3D patterning of living cells and other biologics by filling and assem...
Chitosan is one of the most well-known and characterized materials applied in tissue engineering. Du...
The augmented demand for medical devices devoted to tissue regeneration and possessing a controlled ...
The fabrication of intricate and long-term stable 3D polymeric scaffolds by a 3D printing technique ...
Cartilage is an important tissue contributing to the structure and function of support and protectio...
peer reviewedDentoalveolar tissue engineering is an emerging yet challenging field, considering the ...
Chitosan is a natural polymer widely investigated and used due to its antibacterial activity, mucoad...
Biomimetic constructs imitating the functions, structures, and compositions of normal tissues are of...
Chitosan (CS) has gained particular attention in biomedical applications due to its biocompatibility...
AbstractBioprinting is an emerging technology that offers the unique ability to deposit and pattern ...
In the last decade, 3D-bioprinting has attracted attention due to its capability to produce complex ...
3D biomaterial manufacturing strategies show an extraordinary driving force for the development of i...
Hydrogel materials are being investigated for application as scaffolds in tissue engineering owing t...
Recent progresses in tissue engineering are directed towards the development of technologies able to...
In recent years, 3D printed scaffolds becoming a widespread tool, which supports the repair mechanis...
Bioprinting can be defined as 3D patterning of living cells and other biologics by filling and assem...
Chitosan is one of the most well-known and characterized materials applied in tissue engineering. Du...
The augmented demand for medical devices devoted to tissue regeneration and possessing a controlled ...
The fabrication of intricate and long-term stable 3D polymeric scaffolds by a 3D printing technique ...
Cartilage is an important tissue contributing to the structure and function of support and protectio...
peer reviewedDentoalveolar tissue engineering is an emerging yet challenging field, considering the ...