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Evaluation of processed bovine cancellous bone matrix seeded with syngenic osteoblasts in a critical size calvarial defect rat model

机译:评价同种异体成骨细胞种子在牛颅骨缺损大鼠模型中的加工性能

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摘要

Introduction: Biologic bone substitutes may offer alternatives to bone grafting procedures. The aim of this study was to evaluate a preformed bone substitute based on processed bovine cancellous bone (PBCB) with or without osteogenic cells in a critical size calvarial defect rat model. Methods: Discs of PBCB (Tutobone®) were seeded with second passage fibrin gel-immobilized syngenic osteoblasts (group A, n = 40). Cell-free matrices (group B, n = 28) and untreated defects (group C; n=28) served as controls. Specimens were explanted between day 0 and 4 months after implantation and were subjected to histological and morphometric evaluation. Results: At 1 month, bone formation was limited to small peripheral areas. At 2 and 4 months, significant bone formation, matrix resorption as well as integration of the implants was evident in groups A and B. In group C no significant regeneration of the defects was observed. Morphometric analysis did not disclose differences in bone formation in matrices from groups A and B. Carboxyfluorescine-Diacetate-Succinimidylester (CFDA) labeling demonstrated low survival rates of transplanted cells. Discussion: Osteoblasts seeded into PBCB matrix display a differentiated phenotype following a 14 days cell culture period. Lack of initial vascularization may explain the absence of added osteogenicity in constructs from group A in comparison to group B. PBCB is well integrated and represents even without osteogenic cells a promising biomaterial for reconstruction of critical size calvarial bone defects.
机译:简介:生物骨替代物可能提供替代骨移植程序的方法。这项研究的目的是评估在关键尺寸颅骨缺损大鼠模型中,基于有或没有成骨细胞的加工牛松质骨(PBCB)的预制骨替代物。方法:将第二代纤维蛋白凝胶固定的同基因成骨细胞接种到PBCB(Tutobone®)盘上(A组,n = 40)。无细胞基质(B组,n = 28)和未处理的缺陷(C组; n = 28)作为对照。在植入后的第0至4个月之间将样本移出,并进行组织学和形态计量学评估。结果:在1个月时,骨形成仅限于较小的外围区域。在第2和第4个月,在A组和B组中,明显的骨形成,基质吸收以及植入物的整合变得明显。在C组中,没有观察到明显的缺损再生。形态计量学分析未揭示A组和B组矩阵中骨形成的差异。羧荧光二乙酸双琥珀酰亚胺酯(CFDA)标记显示移植细胞的存活率较低。讨论:播种到PBCB基质中的成骨细胞在14天的细胞培养期后表现出分化的表型。缺乏初始血管形成可能解释了与B组相比,A组的构建体没有增加的成骨性。PBCB具有很好的整合性,即使没有成骨细胞,也代表了重建关键尺寸颅盖骨缺损的有前途的生物材料。

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