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首页> 外文期刊>Journal of Biotechnology >Biological efficacy of silk fibroin nanofiber membranes for guided bone regeneration
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Biological efficacy of silk fibroin nanofiber membranes for guided bone regeneration

机译:丝素蛋白纳米纤维膜对引导性骨再生的生物学功效

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摘要

The favorable biological properties of silk fibroin (SF) nanofiber membrane make it a good candidate for clinical applications as a device in bone and periodontal regenerative therapy. The purpose of this study is to evaluate the biocompatibility of the SF nanofiber membrane, and to examine its effect on bone regeneration in a rabbit calvarial model. To examine the biocompatibility of the electrospun SF membrane, we investigated cell proliferation, morphology, and differentiation. The bone regenerative efficacy of the membrane was evaluated in the calvarial defect of rabbits. The cell numbers and osteocalcin production labels were significantly increased in accordance with culture period. Cells had a stellate shape and broad cytoplasmic extensions on the membrane. The cells showed activity of ALPase that was comparable to culture dishes, and were calcified similarly to culture dishes. In in vivo tests, a complete bony union across the defects was observed after 8 weeks. At 12 weeks, the defect had completely healed with new bone. In conclusion, the SF nanofiber membrane was shown to possess good biocompatibility with enhanced bone regeneration and no evidence of any inflammatory reaction. These results strongly suggest that the SF membrane should be useful as a tool for guided bone regeneration.
机译:丝素蛋白(SF)纳米纤维膜的良好生物学特性使其成为临床应用的良好候选者,可作为骨和牙周再生疗法的一种装置。这项研究的目的是评估SF纳米纤维膜的生物相容性,并检查其对兔颅盖模型中骨再生的影响。为了检查静电纺丝SF膜的生物相容性,我们研究了细胞增殖,形态和分化。在兔的颅骨缺损中评估了该膜的骨再生功效。细胞的数量和骨钙素的产生标记随着培养时间的增加而显着增加。细胞在膜上具有星状形状和宽的细胞质延伸。细胞显示出与培养皿相当的ALPase活性,并且与培养皿类似地被钙化。在体内测试中,在8周后观察到了完整的骨缺损。在第12周,该缺损已用新骨完全治愈。总之,SF纳米纤维膜具有良好的生物相容性,并具有增强的骨再生能力,没有任何炎症反应的迹象。这些结果强烈表明,SF膜应可用作引导骨再生的工具。

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