去细胞化
聚乳酸
脚手架
聚己内酯
材料科学
软骨
再生(生物学)
生物医学工程
间充质干细胞
复合数
软骨发生
细胞外基质
基质(化学分析)
化学
聚合物
复合材料
解剖
细胞生物学
医学
生物
生物化学
作者
Stacey M.S. Gruber,Sumit Murab,Paulomi Ghosh,Patrick W. Whitlock,Chia‐Ying Lin
出处
期刊:Biomaterials advances
日期:2022-07-30
卷期号:140: 213052-213052
被引量:14
标识
DOI:10.1016/j.bioadv.2022.213052
摘要
Treatment options for large osteochondral injuries (OCIs) are limited by donor tissue scarcity, morbidity, and anatomic mismatch. 3D printing technology can produce patient-specific scaffolds to address these large defects. Thermoplastics like polycaprolactone (PCL) offer necessary mechanical properties, but lack bioactivity. We fabricated 3D printed PCL scaffolds embedded with polylactic acid microspheres containing decellularized cartilage matrix (DM). DM incorporation within polylactic acid microspheres prevented its thermal degradation during the 3D printing process. The scaffolds replicated the mechanical properties of native cartilage and demonstrated controlled release of DM proteins. Human mesenchymal stem cells (hMSCs) seeded on the composite scaffolds with DM and cultured in basal media self-assembled into aggregates mimicking mesenchymal condensates during embryonic development. The DM composite scaffolds also induced higher expression of biochemical markers of cartilage development than controls, providing evidence for their translational application in the treatment of OCIs. The present study demonstrates the potential of direct incorporation of DM with thermoplastics for 3D printing of patient-specific scaffolds for osteochondral regeneration.
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