Litcius/Paper detail

Hybrid Hydrogel Composed of Hyaluronic Acid, Gelatin, and Extracellular Cartilage Matrix for Perforated TM Repair

Yili Wang, Feng Wen, Xueting Yao, Lulu Zeng, Jiaming Wu, Qinhong He, Huaqiong Li, Lian Fang

2021Frontiers in Bioengineering and Biotechnology23 citationsDOIOpen Access PDF

Abstract

A novel series of composite hydrogels, built from the three components 1), hyaluronic acid methacryloyl (HAMA); 2), gelatin methacryloyl (GelMA), and 3), extracellular cartilage matrix (ECM), was prepared and studied regarding the possible utility in the surgical repair of damaged (perforated) tympanic membrane (TM). Noteworthy is component 3), which was harvested from the ribs of α-1,3-galactosidyltransferase-knockout (α-1,3 GalT-KO) pigs. The absence of α-1,3-galactosyl glycoprotein is hypothesized to prevent rejection due to foreign-body immunogenicity. The composite hydrogels were characterized by various aspects, using a variety of physicochemical techniques: aqueous swelling, structural degradation, behavior under compression, and morphology, e.g., in vitro biocompatibility was assessed by the CCK-8 and live–dead assays and through cytoskeleton staining/microscopy. Alcian blue staining and real-time PCR (RT-PCR) were performed to examine the chondrogenic induction potential of the hydrogels. Moreover, a rat TM defect model was used to evaluate the in vivo performance of the hydrogels in this particular application. Taken together, the results from this study are surprising and promising. Much further development work will be required to make the material ready for surgical use.

Topics & Concepts

Self-healing hydrogelsHyaluronic acidGelatinExtracellular matrixBiocompatibilityCartilageTissue engineeringChemistryBiomedical engineeringBiophysicsChondrogenesisStainingMaterials scienceBiochemistryAnatomyPolymer chemistryIn vitroPathologyBiologyMedicineOrganic chemistryEar Surgery and Otitis MediaNasal Surgery and Airway StudiesSilk-based biomaterials and applications