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同轴电纺制备 ICA-SF/PLCL 纳米纤维膜及其对体内外骨再生的影响。

The fabrication of an ICA-SF/PLCL nanofibrous membrane by coaxial electrospinning and its effect on bone regeneration in vitro and in vivo.

机构信息

Department of Oral Implantology, School/Hospital of Stomatology, Lanzhou University, Lanzhou, China, 730000.

School/Hospital of Stomatology, Lanzhou University, Lanzhou, 730000, China.

出版信息

Sci Rep. 2017 Aug 17;7(1):8616. doi: 10.1038/s41598-017-07759-8.

Abstract

GBR is currently accepted as one of the most effective approaches for bone defect regeneration relating to dental implant. Icariin is the main active ingredient in the extraction of total flavonoids from the Chinese traditional herb Epimediumbrevicornum Maxim. In this study, ICA was successfully incorporated into the nanofibers barrier membrane (ICA-SF/PLCL) as osteoinduction factor by coaxial electrospinning and was released in a sustained and controlled manner. The entire release period included two stages: an initial burst stage (47.54 ± 0.06% on 5 d) and a decreasing and constant stage (82.09 ± 1.86% on 30 d). The membrane has good biocompatibility with BMMSCs anchored and significantly promoted its osteogenic activity. Moreover, in vivo experiment, bone defect covered by ICA-SF/PLCL membrane in rat cranium were statistically repaired compare to other groups. 12 weeks after implantation, in the test group, the new bone formation spread to cover most of the defect region with volume and density of approximately 15.95 ± 3.58 mm and 14.02 ± 0.93%. These results demonstrated that ICA-SF/PLCL nanofibrous membrane could be a promising barrier applicated for GBR.

摘要

GBR 目前被认为是与牙种植体相关的骨缺损再生的最有效方法之一。淫羊藿苷是从中国传统草药淫羊藿中提取总黄酮的主要活性成分。在本研究中,通过同轴静电纺丝成功地将 ICA 作为成骨诱导因子掺入纳米纤维屏障膜(ICA-SF/PLCL)中,并以持续和受控的方式释放。整个释放期包括两个阶段:初始释放阶段(5d 时为 47.54±0.06%)和减少和恒定阶段(30d 时为 82.09±1.86%)。该膜具有良好的生物相容性,BMMSCs 锚定在膜上,并显著促进了其成骨活性。此外,体内实验表明,与其他组相比,大鼠颅骨中覆盖 ICA-SF/PLCL 膜的骨缺损得到了统计学上的修复。植入后 12 周,在实验组中,新骨形成扩散到覆盖大部分缺损区域,体积和密度约为 15.95±3.58mm 和 14.02±0.93%。这些结果表明,ICA-SF/PLCL 纳米纤维膜可作为一种有前途的 GBR 应用屏障。

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