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具有三维微观结构的脱细胞软骨基质/丝素蛋白二次交联水凝胶支架诱导脂肪来源基质细胞的软骨分化

Chondrogenic Differentiation of Adipose-Derived Stromal Cells Induced by Decellularized Cartilage Matrix/Silk Fibroin Secondary Crosslinking Hydrogel Scaffolds with a Three-Dimensional Microstructure.

作者信息

Zhou Jing, Wu Nier, Zeng Jinshi, Liang Ziyu, Qi Zuoliang, Jiang Haiyue, Chen Haifeng, Liu Xia

机构信息

Plastic Surgery Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100144, China.

State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing 100071, China.

出版信息

Polymers (Basel). 2023 Apr 13;15(8):1868. doi: 10.3390/polym15081868.

Abstract

Finding an ideal scaffold is always an important issue in the field of cartilage tissue engineering. Both decellularized extracellular matrix and silk fibroin have been used as natural biomaterials for tissue regeneration. In this study, a secondary crosslinking method of γ irradiation and ethanol induction was used to prepare decellularized cartilage extracellular matrix and silk fibroin (dECM-SF) hydrogels with biological activity. Furthermore, the dECM-SF hydrogels were cast in custom-designed molds to produce a three-dimensional multi-channeled structure to improve internal connectivity. The adipose-derived stromal cells (ADSC) were seeded on the scaffolds, cultured in vitro for 2 weeks, and implanted in vivo for another 4 and 12 weeks. The double crosslinked dECM-SF hydrogels exhibited an excellent pore structure after lyophilization. The multi-channeled hydrogel scaffold presents higher water absorption ability, surface wettability, and no cytotoxicity. The addition of dECM and a channeled structure could promote chondrogenic differentiation of ADSC and engineered cartilage formation, confirmed by H&E, safranin O staining, type II collagen immunostaining, and qPCR assay. In conclusion, the hydrogel scaffold fabricated by the secondary crosslinking method has good plasticity and can be used as a scaffold for cartilage tissue engineering. The multi-channeled dECM-SF hydrogel scaffolds possess a chondrogenic induction activity that promotes engineered cartilage regeneration of ADSC in vivo.

摘要

寻找理想的支架材料一直是软骨组织工程领域的一个重要问题。脱细胞细胞外基质和丝素蛋白都已被用作组织再生的天然生物材料。在本研究中,采用γ射线辐照和乙醇诱导的二次交联方法制备具有生物活性的脱细胞软骨细胞外基质和丝素蛋白(dECM-SF)水凝胶。此外,将dECM-SF水凝胶浇铸在定制设计的模具中,以产生三维多通道结构,从而改善内部连通性。将脂肪来源的基质细胞(ADSC)接种在支架上,体外培养2周,然后体内植入另外4周和12周。双交联的dECM-SF水凝胶冻干后呈现出优异的孔隙结构。多通道水凝胶支架具有更高的吸水性、表面润湿性且无细胞毒性。通过苏木精-伊红染色、番红O染色、II型胶原免疫染色和qPCR检测证实,添加dECM和通道结构可促进ADSC的软骨分化和工程软骨形成。总之,通过二次交联方法制备的水凝胶支架具有良好的可塑性,可作为软骨组织工程的支架材料。多通道dECM-SF水凝胶支架具有软骨诱导活性,可促进体内ADSC的工程软骨再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28bf/10144539/4afeedeb0187/polymers-15-01868-g001.jpg

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