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Raman spectroscopy detects deterioration in biomechanical properties of bone in a glucocorticoid-treated mouse model of rheumatoid arthritis

机译:拉曼光谱法在类风湿关节炎的糖皮质激素治疗小鼠模型中检测到骨骼的生物力学性能下降

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摘要

Although glucocorticoids are frequently prescribed for the symptomatic management of inflammatory disorders such as rheumatoid arthritis, extended glucocorticoid exposure is the leading cause of physician-induced osteoporosis and leaves patients at a high risk of fracture. To study the biochemical effects of glucocorticoid exposure and how they might affect biomechanical properties of the bone, Raman spectra were acquired from ex vivo tibiae of glucocorticoid- and placebo-treated wild-type mice and a transgenic mouse model of rheumatoid arthritis. Statistically significant spectral differences were observed due to both treatment regimen and mouse genotype. These differences are attributed to changes in the overall bone mineral composition, as well as the degree of phosphate mineralization in tibial cortical bone. In addition, partial least squares regression was used to generate a Raman-based prediction of each tibia's biomechanical strength as quantified by a torsion test. The Raman-based predictions were as accurate as those produced by microcomputed tomography derived parameters, and more accurate than the clinically-used parameter of bone mineral density. These results suggest that Raman spectroscopy could be a valuable tool for monitoring bone biochemistry in studies of bone diseases such as osteoporosis, including tests of drugs being developed to combat these diseases.
机译:尽管糖皮质激素经常被处方用于对风湿性关节炎等炎症性疾病的对症治疗,但是长期暴露于糖皮质激素是医师诱发骨质疏松症的主要原因,并使患者极易发生骨折。为了研究糖皮质激素暴露的生化效应以及它们如何影响骨骼的生物力学特性,从糖皮质激素和安慰剂治疗的野生型小鼠的离体胫骨和类风湿性关节炎的转基因小鼠模型中获得了拉曼光谱。由于治疗方案和小鼠基因型,观察到统计学上显着的光谱差异。这些差异归因于总体骨矿物质组成的变化,以及胫​​骨皮质骨中磷酸盐矿化的程度。另外,使用偏最小二乘回归生成每个胫骨的生物力学强度的基于拉曼的预测,如通过扭转试验量化的。基于拉曼的预测与通过微计算机断层扫描得出的参数所产生的预测一样准确,并且比临床上使用的骨矿物质密度参数更准确。这些结果表明,拉曼光谱法可能是监测骨疾病(如骨质疏松症)研究中的骨生物化学的有价值的工具,其中包括针对这些疾病开发的药物测试。

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