A novel 3D histotypic cartilage construct engineered by supercritical carbon dioxide decellularized porcine nasal cartilage graft and chondrocytes exhibited chondrogenic capability in vitro

去细胞化 软骨 软骨发生 阿格里坎 组织工程 细胞外基质 化学 生物医学工程 II型胶原 软骨细胞 解剖 糖胺聚糖 基质(化学分析) 病理 骨关节炎 医学 生物化学 关节软骨 替代医学 色谱法
作者
Su‐Shin Lee,Yi‐Chia Wu,Shu‐Hung Huang,Ying-Che Chen,Srinivasan Periasamy,Dar‐Jen Hsieh,Yi‐Chun Yeh,Yi‐Ping Lai,Yun-Nan Lin
出处
期刊:International Journal of Medical Sciences [Ivyspring International Publisher]
卷期号:18 (10): 2217-2227 被引量:13
标识
DOI:10.7150/ijms.56342
摘要

Augmentative and reconstructive rhinoplasty surgical procedures use autologous tissue grafts or synthetic grafts to repair the nasal defect and aesthetic reconstruction.Donor site trauma and morbidity are common in autologous grafts.The desperate need for the production of grafted 3D cartilage tissues as rhinoplasty grafts without the adverse effect is the need of the hour.In the present study, we developed a bioactive 3D histotypic construct engineered with the various ratio of adipose-derived stem cells (ADSC) and chondrocytes together with decellularized porcine nasal cartilage graft (dPNCG).We decellularized porcine nasal cartilage using supercritical carbon dioxide (SCCO2) extraction technology.dPNCG was characterized by H&E, DAPI, alcian blue staining, scanning electron microscopy and residual DNA content, which demonstrated complete decellularization.3D histotypic constructs were engineered using dPNCG, rat ADSC and chondrocytes with different percentage of cells and cultured for 21 days.dPNCG together with 100% chondrocytes produced a solid mass of 3D histotypic cartilage with significant production of glycosaminoglycans.H&E and alcian blue staining showed an intact mass, with cartilage granules bound to one another by extracellular matrix and proteoglycan, to form a 3D structure.Besides, the expression of chondrogenic markers, type II collagen, aggrecan and SOX-9 were elevated indicating chondrocytes cultured on dPNCG substrate facilitates the synthesis of type II collagen along with extracellular matrix to produce 3D histotypic cartilage.To conclude, dPNCG is an excellent substrate scaffold that might offer a suitable environment for chondrocytes to produce 3D histotypic cartilage.This engineered 3D construct might serve as a promising future candidate for cartilage tissue engineering in rhinoplasty.

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