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RAMAN SPECTRAL CLASSIFICATION OF MINERAL- AND COLLAGEN-BOUND WATER’S ASSOCIATIONS TO ELASTIC AND POST-YIELD MECHANICAL PROPERTIES OF CORTICAL BONE

机译:矿物质和胶原结合水的拉曼光谱分类与CO骨弹性和屈服后力学性能的关系

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摘要

Water that is bound to bone’s matrix is implied as a predictor of fracture resistance; however, bound water is an elusive variable to be measured nondestructively. To date, the only nondestructive method used for studying bone hydration status is magnetic resonance variants (NMR or MRI). For the first time, bone hydration status was studied by short-wave infrared (SWIR) Raman spectroscopy to investigate associations of mineral-bound and collagen-bound water compartments with mechanical properties. Thirty cortical bone samples were used for quantitative Raman-based water analysis, gravimetric analysis, porosity measurement, and biomechanical testing. A sequential dehydration protocol was developed to replace unbound (heat drying) and bound (ethanol treatment) water in bone. Raman spectra were collected serially to track the OH-stretch band during dehydration. Four previously identified peaks were investigated: I3220/I2949, I3325/I2949 and I3453/I2949 reflect status of organic-matrix related water (mostly collagen-related water) compartments and collagen portion of bone while I3584/I2949 reflects status of mineral-related water compartments and mineral portion of bone. These spectroscopic biomarkers were correlated with elastic and post-yield mechanical properties of bone. Collagen-water related biomarkers (I3220/I2949 and I3325/I2949) correlated significantly and positively with toughness (R2=0.81 and R2=0.79; p<0.001) and post-yield toughness (R2=0.65 and R2=0.73; p<0.001). Mineral-water related biomarker correlated significantly and negatively with elastic modulus (R2=0.78; p<0.001) and positively with strength (R2=0.46; p < 0.001). While MR-based techniques have been useful in measuring unbound and bound water, this is the first study which probed bound-water compartments differentially for collagen and mineral-bound water. For the first time, we showed an evidence for contributions of different bound-water compartments to mechanical properties of wet bone and the reported correlations of Raman-based water measurements to mechanical properties underline the necessity for enabling approaches to assess these new biomarkers noninvasively in vivo to improve the current diagnosis of those who may be at risk of bone fracture due to aging and diseases.
机译:暗示与骨骼基质结合的水是抗断裂性的预测指标。然而,束缚水是一个难以测量的变量。迄今为止,用于研究骨骼水化状态的唯一非破坏性方法是磁共振变异体(NMR或MRI)。首次通过短波红外(SWIR)拉曼光谱研究了骨骼的水合作用状况,以研究与矿物质结合和与胶原结合的水室与机械性能的关联。 30个皮质骨样品用于基于拉曼的定量水分析,重量分析,孔隙率测量和生物力学测试。开发了顺序脱水方案以代替骨中未结合的(加热干燥)和结合的(乙醇处理)水。连续收集拉曼光谱以追踪脱水期间的OH拉伸带。研究了四个先前确定的峰:I3220 / I2949,I3325 / I2949和I3453 / I2949反映了骨骼的有机基质相关水(主要是胶原相关的水)隔室和骨胶原部分的状态,而I3584 / I2949反映了矿物质相关的水的状态骨的隔室和矿物质部分。这些光谱生物标志物与骨的弹性和屈服后的机械性能相关。胶原蛋白水相关生物标志物(I3220 / I2949和I3325 / I2949)与韧性呈显着正相关(R 2 = 0.81和R 2 = 0.79; p <0.001)和屈服后韧性(R 2 = 0.65和R 2 = 0.73; p <0.001)。矿泉水相关生物标志物与弹性模量(R 2 = 0.78; p <0.001)显着负相关,与强度(R 2 = 0.46; p <0.001)正相关。 。尽管基于MR的技术可用于测量未结合水和结合水,但这是第一项针对结合水隔室差异化检测胶原蛋白和结合矿物质水的研究。首次,我们展示了不同的结合水区对湿骨力学性能的贡献的证据,并且已报道的基于拉曼的水测量结果与力学性能之间的相关性强调了有必要采取可行的方法来在体内无创地评估这些新生物标记以提高对因衰老和疾病而有骨折风险的人的当前诊断。

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