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首页> 外文期刊>Journal of biomedical materials research, Part A >Fish cartilage: A promising source of biomaterial for biological scaffold fabrication in cartilage tissue engineering
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Fish cartilage: A promising source of biomaterial for biological scaffold fabrication in cartilage tissue engineering

机译:鱼类软骨:软骨组织工程中的生物支架制造的生物材料的有希望的生物材料来源

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Here, engineered cartilage-like scaffold using an extracellular matrix (ECM) from sturgeon fish cartilage provided a chondroinductive environment to stimulate cartilaginous matrix synthesis in human adipose stem cells (hASCs). Three dimensional porous and degradable fish cartilage ECM-derived scaffold (FCS) was produced using a protocol containing chemical decellularization, enzymatic solubilization, freeze-drying and EDC-crosslinking treatments and the effect of different ECM concentrations (10, 20, 30, and 40 mg/ml) on prepared scaffolds was investigated through physical, mechanical and biological analysis. The histological and scanning electron microscopy analysis revealed the elimination of the cell fragments and a 3-D interconnected porous structure, respectively. Cell viability assay displayed no cytotoxic effects. The prepared porous constructs of fish cartilage ECM were seeded with hASCs for 21 days and compared to collagen (Col) and collagen-10% hyaluronic acid (Col-HA) scaffolds. Cell culture results evidenced that the fabricated scaffolds could provide a proper 3-D structure to support the adhesion, proliferation and chondrogenic differentiation of hASCs considering the synthesis of specific proteins of cartilage, collagen type II (Col II) and aggrecan (ACAN). Based on the results of the present study, it can be concluded that the porous scaffold derived from fish cartilage ECM possesses an excellent potential for cartilage tissue engineering.
机译:在这里,使用鲟鱼软骨细胞外基质(ECM)构建的工程化软骨样支架提供了软骨诱导环境,以刺激人类脂肪干细胞(HASC)中软骨基质的合成。采用包含化学脱细胞、酶溶解、冷冻干燥和EDC交联处理的方案制备了三维多孔可降解鱼软骨ECM衍生支架(FCS),并通过物理、机械和生物分析研究了不同ECM浓度(10、20、30和40 mg/ml)对制备支架的影响。组织学和扫描电子显微镜分析显示,细胞碎片和三维互连多孔结构分别消失。细胞活力测定显示没有细胞毒性作用。将制备的鱼软骨ECM多孔结构与HASC接种21天,并与胶原(Col)和胶原-10%透明质酸(Col-HA)支架进行比较。细胞培养结果表明,考虑到软骨、II型胶原(Col II)和聚集蛋白聚糖(ACAN)的特异性蛋白质的合成,所制备的支架可以提供适当的三维结构来支持HASC的粘附、增殖和软骨分化。基于本研究的结果,可以得出结论,鱼软骨ECM衍生的多孔支架具有良好的软骨组织工程潜力。

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