首页> 外文OA文献 >Reconstruction of irradiated bone segmental defects with a biomaterial associating MBCP+®, microstructured collagen membrane and total bone marrow grafting: An experimental study in rabbits
【2h】

Reconstruction of irradiated bone segmental defects with a biomaterial associating MBCP+®, microstructured collagen membrane and total bone marrow grafting: An experimental study in rabbits

机译:用mBCp +,微结构胶原膜与全骨髓移植相结合的生物材料重建受照射的骨节段性缺损:兔的实验研究

摘要

The bone tissue engineering models used today are still a long way from any oncologic application as immediate postimplantation irradiation would decrease their osteoinductive potential. The aim of this study was to reconstruct a segmental critical size defect in a weight-bearing bone irradiated after implantation. Six white New Zealand rabbits were immediately implanted with a biomaterial associating resorbable collagen membrane EZ® filled and micro-macroporous biphasic calcium phosphate granules (MBCP+®). After a daily schedule of radiation delivery, and within 4 weeks, a total autologous bone marrow (BM) graft was injected percutaneously into the center of the implant. All the animals were sacrificed at 16 weeks. Successful osseous colonization was found to have bridged the entire length of the defects. Identical distribution of bone ingrowth and residual ceramics at the different levels of the implant suggests that the BM graft plays an osteoinductive role in the center of the defect. Periosteum-like formation was observed at the periphery, with the collagen membrane most likely playing a role. This model succeeded in bridging a large segmental defect in weight-bearing bone with immediate postimplantation fractionated radiation delivery. This has significant implications for the bone tissue engineering approach to patients with cancer-related bone defects.
机译:当今使用的骨组织工程模型与任何肿瘤学应用相距甚远,因为立即植入后辐射会降低其骨诱导潜力。这项研究的目的是重建植入后照射的负重骨骼的节段性临界尺寸缺损。立即将六只新西兰大白兔植入生物材料,该生物材料将可填充的可吸收胶原膜和微巨噬细胞双相磷酸钙颗粒(MBCP +®)结合在一起。在每天进行放射递送之后,并在4周内,将全自体骨髓(BM)移植物经皮注射到植入物的中心。在16周时处死所有动物。发现成功的骨定植已弥合了缺陷的整个长度。在植入物的不同水平上骨向内生长和残留的陶瓷完全相同,这表明BM移植物在缺损中心起骨诱导作用。在外周观察到骨膜样形成,胶原膜最可能起作用。该模型成功地弥合了承重骨中较大的节段性缺损,并立即进行了植入后的分次放射递送。这对于患有癌症相关骨缺损的患者的骨组织工程方法具有重要意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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