A photo-crosslinkable cartilage-derived extracellular matrix bioink for auricular cartilage tissue engineering

去细胞化 软骨 细胞外基质 生物医学工程 材料科学 组织工程 3D生物打印 自愈水凝胶 基质(化学分析) 糖胺聚糖 再生(生物学) 细胞生物学 解剖 医学 生物 复合材料 高分子化学
作者
Dafydd O. Visscher,Hyeongjin Lee,Paul P. M. van Zuijlen,Marco N. Helder,Anthony Atala,James J. Yoo,Sang Jin Lee
出处
期刊:Acta Biomaterialia [Elsevier]
卷期号:121: 193-203 被引量:102
标识
DOI:10.1016/j.actbio.2020.11.029
摘要

Three-dimensional (3D) bioprinting of patient-specific auricular cartilage constructs could aid in the reconstruction process of traumatically injured or congenitally deformed ear cartilage. To achieve this, a hydrogel-based bioink is required that recapitulates the complex cartilage microenvironment. Tissue-derived decellularized extracellular matrix (dECM)-based hydrogels have been used as bioinks for cell-based 3D bioprinting because they contain tissue-specific ECM components that play a vital role in cell adhesion, growth, and differentiation. In this study, porcine auricular cartilage tissues were isolated and decellularized, and the decellularized cartilage tissues were characterized by histology, biochemical assay, and proteomics. This cartilage-derived dECM (cdECM) was subsequently processed into a photo-crosslinkable hydrogel using methacrylation (cdECMMA) and mixed with chondrocytes to create a printable bioink. The rheological properties, printability, and in vitro biological properties of the cdECMMA bioink were examined. The results showed cdECM was obtained with complete removal of cellular components while preserving major ECM proteins. After methacrylation, the cdECMMA bioinks were printed in anatomical ear shape and exhibited adequate mechanical properties and structural integrity. Specifically, auricular chondrocytes in the printed cdECMMA hydrogel constructs maintained their viability and proliferation capacity and eventually produced cartilage ECM components, including collagen and glycosaminoglycans (GAGs). The potential of cell-based bioprinting using this cartilage-specific dECMMA bioink is demonstrated as an alternative option for auricular cartilage reconstruction.
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