首页> 外文期刊>Materials science & engineering >Magneto-sensitive decellularized bone matrix with or without low frequency-pulsed electromagnetic field exposure for the healing of a critical-size bone defect
【24h】

Magneto-sensitive decellularized bone matrix with or without low frequency-pulsed electromagnetic field exposure for the healing of a critical-size bone defect

机译:磁敏脱色骨矩阵,有或没有低频脉冲电磁场暴露,用于愈合临界尺寸的骨缺损

获取原文
获取原文并翻译 | 示例
       

摘要

Bioactive ECM-based materials mimic the complex composition and structure of natural tissues. Decellularized cancellous bone matrix (DBM) has potential for guiding new bone formation and accelerating the regeneration process. On the other hand, low frequency-pulsed electromagnetic field (LF-PEMF) has been shown to enhance the regeneration capacity of bone defects. The present study sought to explore the feasibility of using DBM and DBM/MNP, and LF-PEMF for treating critical-size bone defects. Firstly, decellularization protocol was optimized to obtain a bioactive DBM, then MNPs were incorporated. Later, the physical, chemical and biological properties of DBM and DBM/MNP were assessed in vitro. MNPs homogeneously distributed into the DBM were not found to be toxic to human osteoblast cultures. Finally, an in vivo study was carried out with DBM and DBM/MNP composites in a bilateral critical-size rat cranial defect model (n = 48) with or without LF-PEMF exposure for 45 and 90 days. The histomorphometric and radiographic evaluations revealed that, while the collagen (positive control) and Sham (negative control) groups showed high incidence of fibrous connective tissue together with low level of osteogenic activity, both the DBM and DBM/MNP-grafted groups significantly promoted new bone tissue formation and angiogenesis, by the appropriate use of LF-PEMF for 90 days.
机译:基于生物活性的ECM基础材料模仿了自然组织的复杂组成和结构。脱细胞的松质骨基质(DBM)具有引导新骨形成和加速再生过程的可能性。另一方面,已经显示出低频脉冲电磁场​​(LF-PEMF)来增强骨缺损的再生能力。本研究试图探讨使用DBM和DBM / MNP的可行性,以及用于治疗临界尺寸骨缺损的LF-PEMF。首先,优化了脱细胞化方案以获得生物活性DBM,然后掺入MNP。后来,在体外评估DBM和DBM / MNP的物理,化学和生物学性质。未发现均匀分布到DBM中的MNP对人骨细胞培养物有毒。最后,在双侧临界大小大鼠颅缺损模型(N = 48)中,用DBM和DBM / MNP复合材料进行体内研究,其中没有LF-PEMF暴露45和90天。组织形态和射线照相评估显示,虽然胶原蛋白(阳性对照)和假(阴性对照)基团显示出纤维结缔组织的高发生率以及低水平的成骨活性,但DBM和DBM / MNP接枝的基团都显着促进了新的骨组织形成和血管生成,通过适当使用LF-PEMF 90天。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号