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3D打印HAP-GEL支架复合BMSCs和HUVECs细胞修复兔颅骨缺损 被引量:2

The 3D printed HAP-GEL scaffold combined with BMSCs and HUVECs for rabbit skull defects
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摘要 目的:探讨3D打印羟基磷灰石晶体-可溶性胶原(hydroxyapatite-geltin,HAP-GEL)支架复合骨髓间充质干细胞(bone regeneration bone marrow mesenchymal stem cells,BMSCs)和人脐静脉内皮细胞(human umbilical vein endothelial cells,HUVECs)组织工程骨对兔颅骨缺损的修复效果。方法:将3D打印的HAP-GEL复合物支架与BMSCs和HUVECs共培养;制作颅骨缺损模型,随机分为3组,即单独HAP-GEL支架组,HAP-GEL支架复合细胞组和空白对照组。术后12周对标本进行大体观察和X线检测,分析骨修复情况。结果:大体标本观察,空白对照组仅有少量骨质形成;HAP-GEL组材料有部分降解,骨缺损边缘较清晰;HAP-GEL复合细胞组骨痂形成较多,骨缺损界限不清。X射线显示,空白对照组骨缺损为较明显的透射影;与HAP-GEL组相比,HAP-GEL复合细胞组缺损区域密度明显增高,接近正常骨组织。结论:负载有细胞的HAP-GEL复合体对兔颅骨缺损的修复效果优于单纯HAP-GEL支架材料,是一种相对理想的骨缺损修复替代材料。 Objective:To investigate the bone defect repair ability of hydroxyapatite-geltin(HAP-GEL)scaffold with bone marrow mesenchymal stem cells(BMSCs)and human umbilical vein endothelial cells(HUVECs)by in rabbit skull defect.Methods:The 3 D printed HAP/GEL composite scaffold was co-cultured with bone regeneration BMSCs and HUVECs.Make skull defect models and were randomly divided into three groups,which were implanted with HAP-GEL scaffold,HAP-GEL composite BMSCs and HUVECs scaffold,and a blank control group was set up.At 12 weeks after the operation,the specimens were observed by X-ray,and the bone repair was analyzed.Results:From gress inspection,there was only a small amount of bone formation in control group.In alone scaffold group,the scaffold material was partially degraded and the edge between the material and bone tissue was clarityed.The BMSCs+HUVECs+HAP-GEL group had more bone callus formation and unclear bone defect boundary.From X-ray,the bone defect area of the control group was more obvious.Compared with the alone HAP-GEL group,the HAP-GEL loaded with BMSCs and HUVECs cells group showed significant density,which was close to normal bone tissue.Conclusion:Cells combined with HAP-GEL scaffold has a better repair effect on rabbit skull defect than simple HAP-GEL scaffold,which is a relatively ideal substitute for bone defect repair.
作者 范海霞 王宏 程焕芝 李然 郭秀娟 耿海霞 FAN Hai-xia;WANG Hong;CHENG Huan-zhi;LI Ran;GUO Xiu-juan;GENG Hai-xia(School of stomatology,Jining Medical University of Shandong,Shandong Jining 272067,China;Department of Stomatology,Weifang Medical University,Shandong Weifang 261053,China;Department of stomatology,Affiliated Hospital of Jining Medical University of Shandong,Shandong Jining 272067,China)
出处 《临床口腔医学杂志》 2020年第4期199-202,共4页 Journal of Clinical Stomatology
基金 山东省自然科学基金(ZR2017LH044) 济宁医学院教师科研扶持项目(JYFC2018KJ018) 国家自然科学基金培育项目(2016-09).
关键词 3D打印 组织工程骨 羟基磷灰石晶体-可溶性胶原 骨髓间充质干细胞 人脐静脉内皮细胞 3D printing Tissue engineering bone Hydroxyapatite-geltin(HAP-GEL) Bone regeneration bone marrow mesenchymal stem cells Human umbilical vein endothelial cells
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