Kourkoumelis Nikolaos, Lani Athina, Tzaphlidou Margaret
Department of Medical Physics, Medical School, University of Ioannina, Ioannina, 45110, Greece,
J Biol Phys. 2012 Sep;38(4):623-35. doi: 10.1007/s10867-012-9276-6. Epub 2012 Jul 7.
A model of osteoporosis based on induced inflammation (IMO) was applied on rabbit bones. The structural heterogeneity and molecular complexity of bone significantly affect bone mechanical properties. A tool like Fourier transform infrared spectroscopy, able to analyze both the inorganic and organic phase simultaneously, could provide compositional information regarding cortical and trabecular sections under normal and osteoporotic conditions. In this study, we assessed the mineral/matrix ratio, carbonate and phosphate content and labile (i.e., non-apatitic) species contribution to bone mineral and collagen cross-linking patterns. Clear differences were observed between cortical and trabecular bone regarding mineral and carbonate content. Induced inflammation lowers the mineral/matrix ratio and increases the overall carbonate accumulation. Elevated concentrations of labile species were detected in osteoporotic samples, especially in the trabecular sections. Collagen cross-linking patterns were indirectly observed through the 1660/1690 cm⁻¹ ratio in the amide I band and a positive correlation was found with the mineralization index. Principal component analysis (PCA) applied to female samples successfully clustered trabecular and osteoporotic cases. The important role played by the phosphate ions was confirmed by corresponding loadings plots. The results suggest that the application of the IMO model to rabbit bones effectively alters bone remodeling and forms an osteoporotic bone matrix with a dissimilar composition compared to the normal one.
一种基于诱导炎症的骨质疏松症模型(IMO)被应用于兔骨。骨骼的结构异质性和分子复杂性显著影响骨骼力学性能。像傅里叶变换红外光谱这样一种能够同时分析无机相和有机相的工具,可以提供正常和骨质疏松条件下皮质骨和小梁骨切片的成分信息。在本研究中,我们评估了矿物质/基质比、碳酸盐和磷酸盐含量以及不稳定(即非磷灰石)物种对骨矿物质和胶原蛋白交联模式的贡献。在皮质骨和小梁骨的矿物质和碳酸盐含量方面观察到明显差异。诱导炎症会降低矿物质/基质比并增加总体碳酸盐积累。在骨质疏松样本中检测到不稳定物种的浓度升高,尤其是在小梁骨切片中。通过酰胺I带中1660/1690 cm⁻¹的比值间接观察胶原蛋白交联模式,并发现其与矿化指数呈正相关。应用于雌性样本的主成分分析(PCA)成功地将小梁骨和骨质疏松病例聚类。相应的载荷图证实了磷酸根离子所起的重要作用。结果表明,将IMO模型应用于兔骨可有效改变骨重塑,并形成与正常骨成分不同的骨质疏松骨基质。