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Preparation and characterization of a novel drug-loaded Bi-layer scaffold for cartilage regeneration

脚手架 材料科学 软骨 生物医学工程 组织工程 生物相容性 软骨细胞 再生(生物学) 纳米纤维 复合材料 解剖 细胞生物学 医学 生物 冶金
作者
Yunqing Yue,Peihu Xu,Zhixin Lei,Kebi Li,Jingyi Xu,Jing Wen,Sining Wang,Wanting Cheng,Sihui Lin,Zhijun Huang,Haixing Xu
出处
期刊:RSC Advances [Royal Society of Chemistry]
卷期号:12 (16): 9524-9533 被引量:6
标识
DOI:10.1039/d2ra00311b
摘要

The incidence of articular cartilage defects is increasing year by year. In order to repair the cartilage tissue at the defect, scaffolds with nanofiber structure and biocompatibility have become a research hotspot. In this study, we designed and fabricated a bi-layer scaffold prepared from an upper layer of drug-dispersed gelatin methacrylate (GELMA) hydrogel and a lower layer of a drug-encapsulated coaxial fiber scaffold prepared from silk fiber (SF) and polylactic acid (PLA). These bi-layer scaffolds have porosity (91.26 ± 3.94%) sufficient to support material exchange and pore size suitable for cell culture and infiltration, as well as mechanical properties (2.65 ± 0.31 MPa) that meet the requirements of cartilage tissue engineering. The coaxial fiber structure exhibited excellent drug release properties, maintaining drug release for 14 days in PBS. In vitro experiments indicated that the scaffolds were not toxic to cells and were amenable to chondrocyte migration. Notably, the growth of cells in a bi-layer scaffold presented two states. In the hydrogel layer, cells grow through interconnected pores and take on a connective tissue-like shape. In the coaxial fiber layer, cells grow on the surface of the coaxial fiber mats and appeared tablet-like. This is similar to the structure of the functional partitions of natural cartilage tissue. Together, the bi-layer scaffold can play a positive role in cartilage regeneration, which could be a potential therapeutic choice to solve the current problems of clinical cartilage repair.
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