Our research was designed to evaluate the effect on bone regeneration with 3-dimensional (3D) printed polylactic acid (PLA) and 3D printed polycaprolactone (PCL) scaffolds, determine the more effective option for enhancing bone regeneration, and offer tentative evidence for further research and clinical application. Employing the 3D printing technique, the PLA and PCL scaffolds showed similar morphologies, as confirmed via scanning electron microscopy (SEM). Mechanical strength was significantly higher in the PLA group (63.4 MPa) than in the PCL group (29.1 MPa) (p 1 scaffold compared with the 3D printed PCL and the 3D printed PCL-Polydopamine (PDA) scaffold (p 1 (TGF-β1) scaffold also exhibited improved cell adhesion after 6 h of cell cocu...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
3D Printed biodegradable polymeric scaffolds are critical to repair a bone defect, which can provide...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Biomaterial tissue scaffolds...
Orthopedic tumor resection, trauma, or degenerative disease surgeries can result in large bone defec...
Polylactic acid scaffolds produced by 3D printing is a promising strategy for bone tissue engineerin...
WOS: 000440179300005Three-dimensional (3D) printing technology is a promising method for bone tissue...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
Three-dimensional (3D) printing technology is a promising method for bone tissue engineering applica...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
[[abstract]]3D printing is a versatile technique widely applied in tissue engineering due to its abi...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
3D Printed biodegradable polymeric scaffolds are critical to repair a bone defect, which can provide...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Biomaterial tissue scaffolds...
Orthopedic tumor resection, trauma, or degenerative disease surgeries can result in large bone defec...
Polylactic acid scaffolds produced by 3D printing is a promising strategy for bone tissue engineerin...
WOS: 000440179300005Three-dimensional (3D) printing technology is a promising method for bone tissue...
The 3D printing process can produce bioengineered scaffolds with a 100% interconnected porous struct...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
Three-dimensional (3D) printing technology is a promising method for bone tissue engineering applica...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
The still-growing field of additive manufacturing (AM), which includes 3D printing, has enabled manu...
[[abstract]]3D printing is a versatile technique widely applied in tissue engineering due to its abi...
The three-dimensional printing (3DP) also known as the additive manufacturing (AM), a novel and futu...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
3D Printed biodegradable polymeric scaffolds are critical to repair a bone defect, which can provide...