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Non-Invasive Monitoring of Functional State of Articular Cartilage Tissue with Label-Free Unsupervised Hyperspectral Imaging

机译:无标记无监督的高光谱成像对关节软骨组织功能状态的无创监测

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摘要

Damage and degradation of articular cartilage leads to severe pain and loss of mobility. The development of new therapies for cartilage regeneration for monitoring their effect requires further study of cartilage, ideally at a molecular level and in a minimally invasive way. Hyperspectral microscopy is a novel technology which utilises endogenous fluorophores to non-invasively assess the molecular composition of cells and tissue. In this study, we applied hyperspectral microscopy to healthy bovine articular cartilage and osteoarthritic human articular cartilage to investigate its capacity to generate informative molecular data and characterise disease state and treatment effects. We successfully demonstrated label-free fluorescence identification of collagen type I and II – isolated in cartilage here for the first time and the co-enzymes free NADH and FAD which together give the optical redox ratio that is an important measure of metabolic activity. The intracellular composition of chondrocytes was also examined. Differences were observed in the molecular ratios within the superficial and transitional zones of the articular cartilage which appeared to be influenced by disease state and treatment. These findings show that hyperspectral microscopy could be useful for investigating the molecular underpinnings of articular cartilage degradation and repair. As it is non-invasive and non-destructive, samples can be repeatedly assessed over time, enabling true time-course experiments with in-depth molecular data. Additionally, there is potential for the hyperspectral approach to be adapted for patient examination to allow the investigation of cartilage state. This could be of advantage for assessment and diagnosis as well as treatment monitoring.
机译:关节软骨的损坏和退化会导致严重的疼痛和活动能力丧失。为了监测其效果而开发用于软骨再生的新疗法需要进一步研究软骨,理想的是在分子水平上并以微创方式进行。高光谱显微镜是一种新颖的技术,它利用内源性荧光团非侵入性地评估细胞和组织的分子组成。在这项研究中,我们将高光谱显微镜应用于健康的牛关节软骨和骨关节炎人关节软骨,以研究其生成信息分子数据并表征疾病状态和治疗效果的能力。我们成功地证明了I型和II型胶原蛋白的无标签荧光鉴定-首次在这里分离出了软骨,以及无辅酶的NADH和FAD,它们共同提供了光学氧化还原比,这是代谢活性的重要指标。还检查了软骨细胞的细胞内组成。在关节软骨的浅表和过渡区内观察到分子比率的差异,这似乎受疾病状态和治疗的影响。这些发现表明,高光谱显微镜可用于研究关节软骨降解和修复的分子基础。由于它是非侵入性和非破坏性的,因此可以随时间反复评估样品,从而可以利用深入的分子数据进行真正的时程实验。另外,高光谱方法有可能适合于患者检查,以调查软骨状态。这对于评估和诊断以及治疗监测可能是有利的。

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