Oinas J, Rieppo L, Finnilä M A J, Valkealahti M, Lehenkari P, Saarakkala S
Research Unit of Medical Imaging, Physics and Technology, Faculty of Medicine, University of Oulu, Finland.
Medical Research Center, University of Oulu and Oulu University Hospital, Finland.
Sci Rep. 2016 Jul 21;6:30008. doi: 10.1038/srep30008.
The changes in chemical composition of human articular cartilage (AC) caused by osteoarthritis (OA) were investigated using Fourier transform infrared microspectroscopy (FTIR-MS). We demonstrate the sensitivity of FTIR-MS for monitoring compositional changes that occur with OA progression. Twenty-eight AC samples from tibial plateaus were imaged with FTIR-MS. Hyperspectral images of all samples were combined for K-means clustering. Partial least squares regression (PLSR) analysis was used to compare the spectra with the OARSI grade (histopathological grading of OA). Furthermore, the amide I and the carbohydrate regions were used to estimate collagen and proteoglycan contents, respectively. Spectral peak at 1338 cm(-1) was used to estimate the integrity of the collagen network. The layered structure of AC was revealed using the carbohydrate region for clustering. Statistically significant correlation was observed between the OARSI grade and the collagen integrity in the superficial (r = -0.55) and the deep (r = -0.41) zones. Furthermore, PLSR models predicted the OARSI grade from the superficial (r = 0.94) and the deep (r = 0.77) regions of the AC with high accuracy. Obtained results suggest that quantitative and qualitative changes occur in the AC composition during OA progression, and these can be monitored by the use of FTIR-MS.
采用傅里叶变换红外显微光谱法(FTIR-MS)研究骨关节炎(OA)引起的人体关节软骨(AC)化学成分变化。我们证明了FTIR-MS对监测OA进展过程中发生的成分变化的敏感性。对来自胫骨平台的28个AC样本进行了FTIR-MS成像。将所有样本的高光谱图像进行组合以进行K均值聚类。使用偏最小二乘回归(PLSR)分析将光谱与OARSI分级(OA的组织病理学分级)进行比较。此外,分别使用酰胺I区和碳水化合物区来估计胶原蛋白和蛋白聚糖的含量。使用1338 cm(-1)处的光谱峰来估计胶原网络的完整性。利用碳水化合物区进行聚类揭示了AC的分层结构。在表层(r = -0.55)和深层(r = -0.41)区域,观察到OARSI分级与胶原完整性之间存在统计学显著相关性。此外,PLSR模型能够从AC的表层(r = 0.94)和深层(r = 0.77)区域高精度地预测OARSI分级。所得结果表明,在OA进展过程中AC成分发生了定量和定性变化,并且可以通过使用FTIR-MS进行监测。