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Production and characterization of chitosan fibers and 3-D fiber mesh scaffolds for tissue engineering applicattions

机译:用于组织工程应用的壳聚糖纤维和3-D纤维网状支架的生产和表征

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摘要

This study reports on the production of chitosan fibers and 3-D fiber meshes for the use as tissue engineering scaffolds. Both structures were produced by means of a wet spinning technique. Maximum strain at break and tensile strength of the developed fibers were found to be 8.5% and 204.9 MPa, respectively. After 14 d of immersion in simulated body fluid (SBF), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and inductively coupled plasma emission (ICP) spectroscopy analyses showed that a bioactive Ca-P layer was formed on the surface of the fibers, meaning that they exhibit a bioactive behavior. The samples showed around 120% max. swelling in physiological conditions. The pore sizes of 3-D chitosan fiber mesh scaffolds were observed to be in the range of 100-500 m by SEM. The equilibrium-swelling ratio of the developed scaffolds was found to be around 170% (w/w) in NaCl solution at 37 °C. Besides that, the limit swelling strain was less than 30%, as obtained by mechanical spectroscopy measurements in the same conditions. The viscoelastic properties of the scaffolds were also evaluated by both creep and dynamic mechanical tests. By means of using short-term MEM extraction test, both types of structures (fibers and scaffolds) were found to be non-cytotoxic to fibroblasts. Furthermore, osteoblasts directly cultured over chitosan fiber mesh scaffolds presented good morphology and no inhibition of cell proliferation could be observed.
机译:这项研究报告了用作组织工程支架的壳聚糖纤维和3-D纤维网的生产。两种结构都是通过湿纺技术生产的。发现所开发的纤维的最大断裂应变和拉伸强度分别为8.5%和204.9MPa。浸入模拟体液(SBF)中14天后,扫描电子显微镜(SEM),能量色散光谱(EDS)和电感耦合等离子体发射(ICP)光谱分析表明,在表面形成了生物活性Ca-P层纤维,意味着它们表现出生物活性。样品显示最大约120%。在生理条件下肿胀。通过SEM观察到3-D壳聚糖纤维网状支架的孔径在100-500m的范围内。在37°C的NaCl溶液中,已开发的支架的平衡溶胀率约为170%(w / w)。除此之外,在相同条件下通过机械光谱测量获得的极限溶胀应变小于30%。还通过蠕变和动态力学测试来评估支架的粘弹性质。通过使用短期MEM提取测试,发现两种类型的结构(纤维和支架)对成纤维细胞均无细胞毒性。此外,直接在壳聚糖纤维网状支架上培养的成骨细胞具有良好的形态,没有观察到细胞增殖的抑制作用。

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