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首页> 外文期刊>ScientificWorldJournal >Xenoimplantation of an Extracellular-Matrix-Derived, Biphasic, Cell-Scaffold Construct for Repairing a Large Femoral-Head High-Load-Bearing Osteochondral Defect in a Canine Model
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Xenoimplantation of an Extracellular-Matrix-Derived, Biphasic, Cell-Scaffold Construct for Repairing a Large Femoral-Head High-Load-Bearing Osteochondral Defect in a Canine Model

机译:细胞外基质衍生,双相,细胞支架构建体的XenoImplantation用于修复犬模型中的大股头高承载骨质色神经缺陷

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This study was aimed to develop an ECM-derived biphasic scaffold and to investigate its regeneration potential loaded with BM-MSCs in repair of large, high-load-bearing osteochondral defects of the canine femoral head. The scaffolds were fabricated using cartilage and bone ECM as a cartilage and bone layer, respectively. Osteochondral constructs were fabricated using induced BM-MSCs and the scaffold. Osteochondral defects (11 mm diameter × 10 mm depth) were created on femoral heads of canine and treated with the constructs. The repaired tissue was evaluated for gross morphology, radiography, histological, biomechanics at 3 and 6 months after implantation. Radiography revealed that femoral heads slightly collapsed at 3 months and severely collapsed at 6 months. Histology revealed that some defects in femoral heads were repaired, but with fibrous tissue or fibrocartilage, and femoral heads with different degrees of collapse. The bone volume fraction was lower for subchondral bone than normal femoral bone at 3 and 6 months. Rigidity was lower in repaired subchondral bone than normal femoral bone at 6 months. The ECM-derived, biphasic scaffold combined with induced BM-MSCs did not successfully repair large, high-load-bearing osteochondral defects of the canine femoral head. However, the experience can help improve the technique of scaffold fabrication and vascularization.
机译:该研究旨在开发ECM衍生的双相支架,并研究其在犬股头的大型高承载骨质色神经缺陷的修复中加载的再生电位。使用软骨和骨ECM作为软骨和骨层制造支架。使用诱导的BM-MSC和支架制造骨色神经构建体。在犬枪的股骨头上创建骨质色盲缺陷(11毫米×10mm深度),并用构造处理。评估修复的组织在植入后3和6个月的3和6个月内评价粗体形态,造影,组织学,生物力学。造影显示股骨头在3个月内略微坍塌,并在6个月内严重倒塌。组织学揭示了股骨头的一些缺陷被修复,但用纤维组织或纤维纤维,以及具有不同坍塌程度的股头。骨骼体积分数对于骨髓内骨比普通股骨骨骼较低,3个月。在6个月内,修复后骨骨的刚性降低了正常的股骨。 ECM衍生的双相支架结合诱导的BM-MSCs并未成功修复犬股头的大型高承载的骨质色神经缺陷。然而,这种经验可以帮助改善支架制造和血管化的技术。

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