猪皮质骨和松质骨:组织形态学和密度学特征

M. E. Andreis, M. Cummaudo, U. Polito, A. M. Luciano, C. Cattaneo, M. Giancamillo, A. Giancamillo, S. Modina
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摘要

猪骨的形态、组成和重塑与人类相似,因此它们被认为是骨相关研究的良好模型。它们已被用于几项涉及骨生长、骨和软骨骨折以及股骨头骨坏死的研究。然而,关于猪正常骨特征的文献是不完整的。本研究旨在填补猪股骨干和远端骨骺、胫骨平台和骨干的微结构和骨密度(BMD)方面的文献空白。材料与方法:取80 ~ 100 kg屠宰猪后肢5只。显微分析股骨中/远端和胫骨近/中端皮质骨和松质骨,以确定不同部位的基本组织形态学参数。双能x射线吸收测定法评估骨密度。对骨密度(BMD)、骨面积(BA)和皮质厚度进行方差分析和相关性分析。结果与讨论:胫骨和股骨骨干皮质骨多呈丛状;原发性/继发性骨组织不清晰。定义骨面积、骨周长、骨小梁宽度、骨小梁数目、骨小梁间距和不同解剖部位骨密度的平均值。这些数值在不同解剖部位无显著差异。骨密度与皮质厚度呈正相关(r=0,80;p < 0。01)。尽管样本量小,但这些结果似乎是一致的。因此,它们可以代表猪正常骨骼参数的参考值。事实上,应用解剖学和再生医学需要非常精确的骨微形态、组成和密度信息,以便为骨替代品的构建提供可靠的指示。此外,由于骨异常的解释是建立在掌握正常骨特征的基础上的,因此必须定义参考参数,以避免误解,并进行比较评价。结论:本研究的结果虽然是初步的,但可以被认为是猪正常骨骼特征定义的可靠起点。
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Swine cortical and cancellous bone: histomorphometric and densitometric characterisation
Introduction: Swine bone morphology, composition and remodelling are similar to humans’, therefore they are considered good models in bone-related research. They have been used for several studies involving bone growth, bone and cartilage fractures and femoral head osteonecrosis. Nevertheless, the literature about pig normal bone features is incomplete. This work aims to fill the literature gaps on the microarchitecture and Bone Mineral Density (BMD) of swine femoral diaphysis and distal epiphysis and tibial plateau and diaphysis. Materials and methods: Five hind limbs were collected from slaughtered 80-100 kg pigs. Microscopic analysis of cortical and cancellous bone from middle/distal femur and proximal/middle tibia was performed to determine basic histomorphometric parameters at different sites. Dual-energy X-Rays Absorptiometry was also employed to evaluate BMD. ANOVA and correlation between BMD, bone area (BA) and cortical thickness were performed. Results and discussion: Diaphyseal cortical bone was mostly plexiform both in the tibia and the femur; primary/secondary osteons without clear organization were also found. Mean values for bone area, bone perimeter, trabecular width, number and separation and BMD at different anatomical sites were defined. No significant difference was found for these values at different anatomical sites. BMD proved to be positively correlated with cortical thickness (r=0,80; p<0,01). Despite the small sample size, these results seem homogeneous. They could therefore represent reference values for normal bone parameters in pigs. Applied anatomy and regenerative medicine, in fact, demand very precise information about bone micromorphology, composition and density to provide reliable indication in bone substitutes building. Moreover, since the interpretation of bone abnormalities is based on mastering normal bone characteristics, the definition of reference parameters is mandatory to avoid misinterpretation and allow comparative evaluation. Conclusion: The results of this study, although preliminary, may be considered a dependable starting point for the definition of normal bone features in pigs.
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