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Evaluation of 3D printed PCL/PLGA/beta-TCP versus collagen membranes for guided bone regeneration in a beagle implant model

机译:评估3D打印PCL / PLGA /β-TCP与胶原膜相比在比格犬植入模型中引导骨再生的情况

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Here, we compared 3D-printed polycaprolactone/poly(lactic-co-glycolic acid)/beta-tricalcium phosphate (PCL/PLGA/beta-TCP) membranes with the widely used collagen membranes for guided bone regeneration (GBR) in beagle implant models. For mechanical property comparison in dry and wet conditions and cytocompatibility determination, we analyzed the rate and pattern of cell proliferation of seeded fibroblasts and preosteoblasts using the cell counting kit-8 assay and scanning electron microscopy. Osteogenic differentiation was verified using alizarin red S staining. At 8 weeks following implantation in vivo using beagle dogs, computed tomography and histological analyses were performed after sacrifice. Cell proliferation rates in vitro indicated that early cell attachment was higher in collagen than in PCL/PLGA/beta-TCP membranes; however, the difference subsided by day 7. Similar outcomes were found for osteogenic differentiation, with approximately 2.5 times greater staining in collagen than PCL/PLGA/beta-TCP, but without significant difference by day 14. In vivo, bone regeneration in the defect area, represented by new bone formation and bone-to-implant contact, paralleled those associated with collagen membranes. However, tensile testing revealed that whereas the PCL/PLGA/beta-TCP membrane mechanical properties were conserved in both wet and dry states, the tensile property of collagen was reduced by 99% under wet conditions. Our results demonstrate in vitro and in vivo that PCL/PLGA/beta-TCP membranes have similar levels of biocompatibility and bone regeneration as collagen membranes. In particular, considering that GBR is always applied to a wet environment (e.g. blood, saliva), we demonstrated that PCL/PLGA/beta-TCP membranes maintained their form more reliably than collagen membranes in a wet setting, confirming their appropriateness as a GBR membrane.
机译:在这里,我们将3D打印的聚己内酯/聚乳酸-乙醇酸/β-磷酸三钙(PCL / PLGA /β-TCP)膜与广泛使用的胶原膜在比格犬植入模型中用于引导性骨再生(GBR)进行了比较。为了在干燥和潮湿条件下进行机械性能比较并确定细胞相容性,我们使用细胞计数试剂盒8检测法和扫描电子显微镜分析了种子成纤维细胞和成骨细胞的细胞增殖速率和模式。使用茜素红S染色验证了成骨分化。使用比格犬在体内植入后第8周,处死后进行计算机断层扫描和组织学分析。体外细胞增殖速率表明,胶原蛋白中的早期细胞附着高于PCL / PLGA /β-TCP膜中。然而,差异在第7天消失。成骨分化的结果相似,胶原蛋白染色比PCL / PLGA / beta-TCP大约2.5倍,但到第14天则无显着差异。以新骨形成和骨与植入物接触为代表的区域与胶原膜相关。但是,拉伸试验表明,尽管PCL / PLGA /β-TCP膜的机械性能在湿和干状态下均保持不变,但在湿条件下胶原蛋白的拉伸性能却降低了99%。我们的研究结果表明,在体外和体内,PCL / PLGA /β-TCP膜具有与胶原膜相似的生物相容性和骨再生水平。特别是,考虑到GBR始终应用于潮湿的环境(例如血液,唾液),我们证明PCL / PLGA / beta-TCP膜在潮湿环境中比胶原膜更可靠地保持其形态,从而确认了它们适合作为GBR膜。

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