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Biomimetic and mechanically supportive 3D printed scaffolds for cartilage and osteochondral tissue engineering using photopolymers and digital light processing

Biofabrication. 2021-09; 
Sarah A Schoonraad, Kristine M Fischenich, Kevin N Eckstein, Victor Crespo-Cuevas, Lea M Savard, Archish Muralidharan, Andrew A Tomaschke, Asais Camila Uzcategui, Mark A Randolph, Robert R McLeod, Virginia L Ferguson, Stephanie J Bryant
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Catalog Peptides … MMP-sensitive crosslinkers (GCVPLS-LYSGCG and GCRDPLE-LRADRCG) and adhesion peptide GCRGDS were purchased from GenScript. Fetal bovine serum (FBS) was purchased from Atlanta Biologicals. Dulbecco's Modified Eagle Medium (DMEM), HEPES, glutaGRO, … Get A Quote

摘要

Successful 3D scaffold designs for musculoskeletal tissue engineering necessitate full consideration of the form and function of the tissues of interest. When designing structures for engineering cartilage and osteochondral tissues, one must reconcile the need to develop a mechanically robust system that maintains the health of cells embedded in the scaffold. In this work, we present an approach that decouples the mechanical and biochemical needs and allows for the independent development of the structural and cellular niches in a scaffold. Using the highly tuned capabilities of digital light processing-based stereolithography, structures with complex architectures are achieved over a range of effective porosit... More

关键词

3D printing, cartilage, digital light processing, hydrogel, mesenchymal stem cell, osteochondral, tissue engineering