首页> 外文期刊>Scientific reports. >Dipyridamole-loaded 3D-printed bioceramic scaffolds stimulate pediatric bone regeneration in vivo without disruption of craniofacial growth through facial maturity
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Dipyridamole-loaded 3D-printed bioceramic scaffolds stimulate pediatric bone regeneration in vivo without disruption of craniofacial growth through facial maturity

机译:加载双吡啶糊糊的3D印刷的生物陶瓷支架刺激体内小儿骨再生,而不会通过面部成熟的颅面生长破坏

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This study investigates a comprehensive model of bone regeneration capacity of dypiridamole-loaded 3D-printed bioceramic (DIPY-3DPBC) scaffolds composed of 100% beta-tricalcium phosphate (β -TCP) in an immature rabbit model through the time of facial maturity. The efficacy of this construct was compared to autologous bone graft, the clinical standard of care in pediatric craniofacial reconstruction, with attention paid to volume of regenerated bone by 3D reconstruction, histologic and mechanical properties of regenerated bone, and long-term safety regarding potential craniofacial growth restriction. Additionally, long-term degradation of scaffold constructs was evaluated. At 24 weeks in vivo, DIPY-3DPBC scaffolds demonstrated volumetrically significant osteogenic regeneration of calvarial and alveolar defects comparable to autogenous bone graft with favorable biodegradation of the bioactive ceramic component in vivo. Characterization of regenerated bone reveals osteogenesis of organized, vascularized bone with histologic and mechanical characteristics comparable to native bone. Radiographic and histologic analyses were consistent with patent craniofacial sutures. Lastly, through application of 3D morphometric facial surface analysis, our results support that DIPY-3DPBC scaffolds do not cause premature closure of sutures and preserve normal craniofacial growth. Based on this novel evaluation model, this DIPY-3DPBC scaffold strategy is a promising candidate as a safe, efficacious pediatric bone tissue engineering strategy.
机译:本研究通过面部成熟时间,研究了二十红氧吲哚加载的3D印刷的3D印刷的3D印刷生物陶瓷(DIPY-3DPBC)支架的骨再生能力综合模型。将该构建体的疗效与自体骨移植物,小儿颅面重建的临床护理标准进行比较,注意到通过3D重建,组织学和再生骨骼的机械性能,对潜在的颅面进行的长期安全性有所关注生长限制。另外,评估支架构建体的长期降解。在体内24周时,Dipy-3dPBC支架在体内具有良好的生物活性陶瓷组分的生物活性骨移植的颅骨和肺泡缺陷的体积显着显着的成骨内骨质再生。再生骨的表征揭示了组织,血管化骨的成骨,其具有与天然骨骼相当的组织学和机械特性。射线照相和组织学分析与专利颅面缝合线一致。最后,通过应用3D形态学面部表面分析,我们的结果支持Dipy-3dPBC支架不会导致缝合线过早闭合并保持正常的颅面生长。基于这一新颖评价模型,这种Dipy-3dPBC脚手架策略是一个有前途的候选者,作为一种安全,有效的儿科骨组织工程战略。

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