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Microstructural and Photoacoustic Infrared Spectroscopic Studies of Human Cortical Bone with Osteogenesis Imperfecta

机译:人成骨不全症的皮质骨的显微结构和光声红外光谱研究

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The molecular basis of bone disease osteogenesis imperfecta (OI) and the mineralization of hydroxyapatite in OI bone have been of significant research interest. To further investigate the mechanism of OI disease and bone mineralization, Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy, and x-ray diffraction (XRD) are used in the present study to describe the structural and compositional differences between OI and healthy bone. OI bone exhibits more porous, fibrous features, abnormal collagen fibrils, and abnormal mineral deposits. Likewise, photoacoustic-FTIR experiments indicate an aberrant collagen structure and an altered mineral structure in OI. In contrast, there is neither significant difference in the non-collagenous proteins (NCPs) composition observed nor apparent change in the crystal structure between OI and healthy bone minerals as shown in XRD and energy-dispersive x-ray spectroscopy (EDS) results. This observation indicates that the biomineralization process is more controlled by the bone cells and non-collagenous phosphorylated proteins. The present study also confirms that there is an orientational influence on the stoichiometry of the mineral in OI bone. Also, a larger volume of the hydrated layer in the transverse plane than the longitudinal plane of the mineral crystal structure is proposed. The appearance of a new C-S band in the FTIR spectra in OI bone suggests the substitution of glycine by cysteine in collagen molecules or/and an increased amount of cysteine-rich osteonectin that relates to mineral nucleation and mineral crystal formation.
机译:骨病成骨不全症(OI)的分子基础和OI骨中羟基磷灰石的矿化具有重要的研究兴趣。为了进一步研究OI疾病和骨骼矿化的机制,本研究使用傅立叶变换红外光谱(FTIR),扫描电子显微镜和X射线衍射(XRD)来描述OI与健康骨骼之间的结构和组成差异。 OI骨表现出更多的多孔,纤维特征,异常的胶原纤维和异常的矿物质沉积。同样,光声FTIR实验表明OI中异常的胶原结构和矿物质结构发生了变化。相反,观察到的非胶原蛋白(NCPs)组成没有显着差异,OI和健康骨矿物质之间的晶体结构没有明显变化,如X射线衍射和能量色散X射线光谱(EDS)结果所示。该观察表明,生物矿化过程受骨细胞和非胶原磷酸化蛋白的控制更大。本研究还证实,OI骨中矿物质的化学计量存在取向影响。而且,提出了在横向平面中比矿物晶体结构的纵向平面更大体积的水合层。 OI骨的FTIR光谱中出现了一个新的C-S谱带,表明胶原分子中半胱氨酸取代了甘氨酸或/和与矿物质成核和矿物质晶体形成有关的富含半胱氨酸的骨连接蛋白的含量增加。

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