JOURNAL ARTICLE

Artificial Auricular Cartilage Using Silk Fibroin and Polyvinyl Alcohol Hydrogel

Jung LeeMd. Tipu SultanSoon KimVijay KumarYeung Kyu YeonOk Joo LeeChan Ho Park

Year: 2017 Journal:   International Journal of Molecular Sciences Vol: 18 (8)Pages: 1707-1707   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

Several methods for auricular cartilage engineering use tissue engineering techniques. However, an ideal method for engineering auricular cartilage has not been reported. To address this issue, we developed a strategy to engineer auricular cartilage using silk fibroin (SF) and polyvinyl alcohol (PVA) hydrogel. We constructed different hydrogels with various ratios of SF and PVA by using salt leaching, silicone mold casting, and freeze-thawing methods. We characterized each of the hydrogels in terms of the swelling ratio, tensile strength, pore size, thermal properties, morphologies, and chemical properties. Based on the cell viability results, we found a blended hydrogel composed of 50% PVA and 50% SF (P50/S50) to be the best hydrogel among the fabricated hydrogels. An intact 3D ear-shaped auricular cartilage formed six weeks after the subcutaneous implantation of a chondrocyte-seeded 3D ear-shaped P50/S50 hydrogel in rats. We observed mature cartilage with a typical lacunar structure both in vitro and in vivo via histological analysis. This study may have potential applications in auricular tissue engineering with a human ear-shaped hydrogel.

Keywords:
Fibroin Self-healing hydrogels Polyvinyl alcohol Cartilage Tissue engineering Biomedical engineering Materials science Ultimate tensile strength SILK Composite material Anatomy Polymer chemistry Medicine

Metrics

88
Cited By
3.79
FWCI (Field Weighted Citation Impact)
59
Refs
0.95
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Silk-based biomaterials and applications
Physical Sciences →  Materials Science →  Biomaterials
Osteoarthritis Treatment and Mechanisms
Health Sciences →  Medicine →  Rheumatology
Collagen: Extraction and Characterization
Physical Sciences →  Materials Science →  Biomaterials

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