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在犬节段性骨缺损模型中,评估以天然珊瑚载体作为骨移植替代物的牛源骨蛋白。

Evaluation of bovine-derived bone protein with a natural coral carrier as a bone-graft substitute in a canine segmental defect model.

作者信息

Sciadini M F, Dawson J M, Johnson K D

机构信息

Department of Orthopaedics and Rehabilitation, Vanderbilt University, Nashville, Tennessee 37232-2550, USA.

出版信息

J Orthop Res. 1997 Nov;15(6):844-57. doi: 10.1002/jor.1100150609.

Abstract

The efficacy of a bone-graft substitute (bovine-derived bone protein in a carrier of natural coral) in the healing of a segmental defect of a weight-bearing long bone was evaluated. Twenty dogs, divided into two groups, underwent bilateral radial osteotomies with creation of a 2.5 cm defect. On one side of each dog, the defect was filled with autogenous cancellous bone graft. Contralateral defects received, in a blinded randomized fashion, cylindrical implants consisting of natural coral (calcium carbonate) or calcium carbonate enhanced with a standard dose of bovine-derived bone protein (3.0 mg/implant; 0.68 mg bone protein/cm3). The limbs were stabilized with external fixators, and all animals underwent monthly radiographs. They were killed at 12 (group 1) or 24 (group 2) weeks, and regenerated bone was studied by biomechanical testing and histology. Radiographic union developed in all 20 radii with autogenous cancellous bone grafts and in all 10 of the radii with the composite implants. None of the radii with implants of calcium carbonate alone showed radiographic evidence of union. This represented a statistically significant difference between implant types. In addition, calcium carbonate implants both with and without bone protein demonstrated radiographic evidence of near total resorption of the radiodense carrier by 12 weeks. This resorption facilitated radiographic evaluation of healing. Mean values for biomechanical parameters of radii with the composite implants exceeded those for the contralateral controls at 12 and 24 weeks; the difference was statistically significant at 12 weeks. Histology revealed scant residual calcium carbonate carrier at either time in the defects with calcium carbonate implants; however, a moderate amount was present in defects with the composite implants. In these specimens, the residual carrier was completely surrounded by newly formed bone that may have insulated the calcium carbonate from further degradation. The present study used a carrier of granular calcium carbonate reconstituted with bovine type-I collagen to deliver an osteoinductive protein to the defect site. This carrier is of nonhuman origin (eliminating the risk of disease transmission or antigenicity) and resorbs rapidly. In this model, bovine-derived bone protein in a natural coral carrier performed consistently better than the gold standard autogenous cancellous bone graft in terms of the amount of bone formation and strength of the healed defect. This may have implications for removal of hardware or resumption of weight-bearing in certain clinical situations. These data also indicate that coralline calcium carbonate alone represents a poor option as a bone-graft substitute in this critical-sized segmental defect model.

摘要

评估了一种骨移植替代物(天然珊瑚载体中牛源骨蛋白)在负重长骨节段性缺损愈合中的疗效。将20只狗分为两组,进行双侧桡骨截骨术并制造2.5厘米的缺损。在每只狗的一侧,缺损处填充自体松质骨移植。对侧缺损以盲法随机方式接受由天然珊瑚(碳酸钙)或添加标准剂量牛源骨蛋白(3.0毫克/植入物;0.68毫克骨蛋白/立方厘米)的碳酸钙组成的圆柱形植入物。肢体用外固定器固定,所有动物每月进行X光检查。在12周(第1组)或24周(第2组)时将它们处死,并通过生物力学测试和组织学研究再生骨。所有20根接受自体松质骨移植的桡骨以及所有10根接受复合植入物的桡骨均出现了影像学骨愈合。仅使用碳酸钙植入物的桡骨均未显示影像学骨愈合的证据。这表明植入物类型之间存在统计学上的显著差异。此外,无论有无骨蛋白,碳酸钙植入物在12周时均显示出放射性致密载体几乎完全吸收的影像学证据。这种吸收有助于影像学评估愈合情况。在12周和24周时,接受复合植入物的桡骨生物力学参数的平均值超过对侧对照组;在12周时差异具有统计学意义。组织学显示,在使用碳酸钙植入物的缺损处,无论何时,碳酸钙载体残留量都很少;然而,在使用复合植入物的缺损处存在适量的残留。在这些标本中,残留载体完全被新形成的骨包围,这可能使碳酸钙免受进一步降解。本研究使用用牛I型胶原重构的颗粒状碳酸钙载体将骨诱导蛋白输送到缺损部位。这种载体是非人类来源的(消除了疾病传播或抗原性的风险)且吸收迅速。在该模型中,天然珊瑚载体中的牛源骨蛋白在骨形成量和愈合缺损强度方面始终优于金标准自体松质骨移植。这可能对某些临床情况下取出内固定物或恢复负重有影响。这些数据还表明,在这种临界大小的节段性缺损模型中,单独的珊瑚碳酸钙作为骨移植替代物是一个较差的选择。

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