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低磷血症(HYP)小鼠和X连锁低磷血症患者中羟基磷灰石的振动光谱分析。

Vibrational spectroscopic analysis of hydroxyapatite in HYP mice and individuals with X-linked hypophosphatemia.

作者信息

Amenta Eva, King Helen E, Petermann Holger, Uskoković Vuk, Tommasini Steven M, Macica Carolyn M

机构信息

Department of Medical Sciences, Frank H. Netter, M.D., School of Medicine at Quinnipiac University, North Haven, CT, USA.

Department of Earth Sciences, Utrecht University, Utrecht, The Netherlands.

出版信息

Ther Adv Chronic Dis. 2018 Oct 11;9(12):268-281. doi: 10.1177/2040622318804753. eCollection 2018.

Abstract

BACKGROUND

X-linked hypophosphatemia (XLH) is the most common form of familial phosphate-wasting disorders, due to an inactivating mutation in the phosphate-regulating neutral endopeptidase, X-linked gene. Persistent osteomalacia, enthesophytes, osteophytes, degenerative arthritis and dental abscesses/periodontal disease dominate the adult disorder. However, the impact of insufficient phosphate on hydroxyapatite composition, the major inorganic component of bone and teeth, is unknown in individuals with XLH.

METHODS

Using Raman spectroscopy, the carbonate (CO ) to phosphate (PO ) ion ratio was measured in HYP and wild-type mice and in primary and permanent teeth from XLH individuals and unaffected controls.

RESULTS

There was a significant difference in carbonate ion substitution between the HYP and wild-type femoral cortical bone (0.36 ± 0.08 0.24 ± 0.04; < 0.001). Carbonate ion substitution levels were also higher in permanent XLH teeth compared with unaffected individuals (0.39 ± 0.12 0.23 ± 0.04; < 0.001), but not in primary teeth (0.29 ± 0.11 0.26 ± 0.02; = 0.29). Complementary Fourier transform infrared analyses demonstrated higher relative intensities of the four major vibrational bands originating from the carbonate anion in XLH teeth compared with unaffected controls.

CONCLUSION

Ionic substitution within the crystal lattice is a common feature of hydroxyapatite and one that confers the physiological properties of bone that impact mechanical strength and the process of bone remodeling. Our data demonstrating anionic substitution in human dentin from individuals with XLH validate the use of dentin as a proxy for bone and to better understand the molecular adaptations that occur in the biochemical milieu of XLH.

摘要

背景

X连锁低磷血症(XLH)是家族性磷消耗性疾病最常见的形式,由磷酸盐调节中性内肽酶X连锁基因突变失活所致。持续性骨软化症、附着点骨赘、骨赘、退行性关节炎和牙脓肿/牙周病是成人期该疾病的主要表现。然而,在XLH患者中,磷酸盐不足对羟基磷灰石成分(骨骼和牙齿的主要无机成分)的影响尚不清楚。

方法

使用拉曼光谱法,测量了HYP小鼠和野生型小鼠以及XLH患者和未受影响对照者的乳牙和恒牙中碳酸根(CO)与磷酸根(PO)离子的比例。

结果

HYP小鼠和野生型小鼠股骨干皮质骨中的碳酸根离子取代存在显著差异(0.36±0.08对0.24±0.04;<0.001)。与未受影响的个体相比,XLH恒牙中的碳酸根离子取代水平也更高(0.39±0.12对0.23±0.04;<0.001),但乳牙中无此差异(0.29±0.11对0.26±0.02;=0.29)。补充傅里叶变换红外分析表明,与未受影响的对照者相比,XLH牙齿中源自碳酸根阴离子的四个主要振动带的相对强度更高。

结论

晶格内的离子取代是羟基磷灰石的一个共同特征,它赋予骨骼影响机械强度和骨重塑过程的生理特性。我们的数据表明XLH患者人牙本质中存在阴离子取代,这验证了使用牙本质作为骨骼替代物以更好地理解XLH生化环境中发生的分子适应性变化的可行性。

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