Diseases in articular cartilages have affected millions of people globally. Although the biochemical and cellular composition of articular cartilages is relatively simple, there is a limitation in the self-repair ability of the cartilage. Therefore, developing strategies for cartilage repair is very important. Here, we report on a new liquid resin preparation process of water-based polyurethane based photosensitive materials with hyaluronic acid with application of the materials for 3D printed customized cartilage scaffolds. The scaffold has high cytocompatibility and is one that closely mimics the mechanical properties of articular cartilages. It is suitable for culturing human Wharton’s jelly mesenchymal stem cells (hWJMSCs) and the cells...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
[[abstract]]Diseases in articular cartilages have affected millions of people globally. Although the...
Articular cartilage, which is a white transparent tissue with 1–2 mm thickness, is located in the in...
Articular cartilage defects affect millions of people worldwide, including children, adolescents, an...
The limited self-healing ability of cartilage necessitates the application of alternative tissue eng...
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and reg...
Cartilage injury is the main cause of disability in the United States, and it has been projected tha...
Direct-write assembly is used to fabricate 3D microperiodic scaffolds composed of hyaluronic acid (H...
Current cartilage tissue engineering strategies cannot as yet fabricate new tissue that is indisting...
Current cartilage tissue engineering strategies cannot as yet fabricate new tissue that is indisting...
Direct-write assembly is used to fabricate 3D microperiodic scaffolds composed of hyaluronic acid (H...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
© 2020 IOP Publishing Ltd. As scaffolds approach dimensions that are of clinical relevance, mechanic...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
[[abstract]]Diseases in articular cartilages have affected millions of people globally. Although the...
Articular cartilage, which is a white transparent tissue with 1–2 mm thickness, is located in the in...
Articular cartilage defects affect millions of people worldwide, including children, adolescents, an...
The limited self-healing ability of cartilage necessitates the application of alternative tissue eng...
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and reg...
Cartilage injury is the main cause of disability in the United States, and it has been projected tha...
Direct-write assembly is used to fabricate 3D microperiodic scaffolds composed of hyaluronic acid (H...
Current cartilage tissue engineering strategies cannot as yet fabricate new tissue that is indisting...
Current cartilage tissue engineering strategies cannot as yet fabricate new tissue that is indisting...
Direct-write assembly is used to fabricate 3D microperiodic scaffolds composed of hyaluronic acid (H...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
© 2020 IOP Publishing Ltd. As scaffolds approach dimensions that are of clinical relevance, mechanic...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...