Evaluation of Nanofiber-Based Polyglycolic Acid Scaffolds for Improved Chondrocyte Retention and In Vivo Bioengineered Cartilage Regeneration
Author:
Publisher
Ovid Technologies (Wolters Kluwer Health)
Subject
Surgery
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1. Selective cell transplantation using bioabsorbable artificial polymers as matrices
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3. Combined chondrocyte-copolymer implantation with slow release of basic fibroblast growth factor for tissue engineering an auricular cartilage construct
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5. Tissue Engineering of a Human Sized And Shaped Auricle Using a Mold
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1. Optimization of 3D autologous chondrocyte-seeded polyglycolic acid scaffolds to mimic human ear cartilage;Biomaterials Science;2023
2. Extracellular Matrix Biomimicry for Cartilage Tissue Formation;Cartilage: From Biology to Biofabrication;2023
3. The significance of nanofiber polyglycolic acid for promoting tissue repair in a rat subcutaneous implantation model;Journal of Biomedical Materials Research Part B: Applied Biomaterials;2022-07-14
4. Surface modification of the cubic micro-cartilage by collagenase treatment and its efficacy in cartilage regeneration for ear tissue engineering;International Journal of Pediatric Otorhinolaryngology;2022-02
5. Ethanol treatment of nanoPGA/PCL composite scaffolds enhances human chondrocyte development in the cellular microenvironment of tissue-engineered auricle constructs;PLOS ONE;2021-07-09
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