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一种用于生物材料诱导骨组织再生自动分析的新型绵羊模型。

A new sheep model with automatized analysis of biomaterial-induced bone tissue regeneration.

作者信息

Atayde L M, Cortez P P, Pereira T, Armada-da-Silva P A S, Afonso A, Lopes M A, Santos J D, Maurício A C

机构信息

Departamento de Clínicas Veterinárias, Instituto de Ciências Biomédicas de Abel Salazar (ICBAS), Universidade do Porto (UP), Rua de Jorge Viterbo Ferreira, no 228, 4050-313, Porto, Portugal,

出版信息

J Mater Sci Mater Med. 2014 Aug;25(8):1885-901. doi: 10.1007/s10856-014-5216-2. Epub 2014 Apr 27.

Abstract

Presently, several bone graft substitutes are being developed or already available for clinical use. However, the limited number of clinical and in vivo trials for direct comparison between these products may complicate this choice. One of the main reasons for this scarcity it is the use of models that do not readily allow the direct comparison of multiple bone graft substitutes, due especially to the small number of implantation sites. Although sheep cancellous bone models are now well established for these purposes, the limited availability of cancellous bone makes it difficult to find multiple comparable sites within a same animal. These limitations can be overcome by the monocortical model here proposed as it consists in 5-6 holes (5 mm Ø), in the femoral diaphysis, with similar bone structure, overlying soft tissue and loading pattern for all defects. Associated to this model, it is also described a fast histomorphometric analysis method using a computer image segmentation test (Threshold method) to assess bone regeneration parameters. The information compiled through the experimental use of 45 sheep in several studies allowed determining that this ovine model has the potential to demonstrate differences in bone-forming performance between various scaffolds. Additionally, the described histomorphometric method is fast, accurate and reproducible.

摘要

目前,有几种骨移植替代物正在研发中或已可用于临床。然而,这些产品之间进行直接比较的临床和体内试验数量有限,这可能会使这种选择变得复杂。造成这种稀缺的主要原因之一是所使用的模型不容易进行多种骨移植替代物的直接比较,特别是由于植入部位数量少。尽管绵羊松质骨模型目前已很好地用于这些目的,但松质骨的可获得性有限,使得在同一动物体内难以找到多个可比部位。这里提出的单皮质模型可以克服这些限制,因为它在股骨干中有5 - 6个孔(直径5毫米),所有缺损的骨结构、覆盖的软组织和加载模式相似。与该模型相关联的,还描述了一种使用计算机图像分割测试(阈值法)来评估骨再生参数的快速组织形态计量学分析方法。通过在多项研究中对45只绵羊进行实验性使用所收集的信息表明,这种绵羊模型有潜力展示各种支架在骨形成性能方面的差异。此外,所描述的组织形态计量学方法快速、准确且可重复。

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