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An integrated coherent anti-Stokes Raman scattering and multiphoton imaging technique for liver disease diagnosis

机译:集成相干反斯托克斯拉曼散射和多光子成像技术在肝病诊断中的应用

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Liver steatosis and fibrosis are two prevalence liver diseases and may eventually develop into hepatocellular carcinoma (HCC) Due to their prevalence and severity, much work has been done to develop efficient diagnostic methods and therapies. Nonlinear optical microscopy has high sensitivity and chemical specificity for major biochemical compounds, making it a powerful tool for tissue imaging without staining. In this study, three nonlinear microscopy imaging modalities are applied to the study of liver diseases in a bile duct ligation rat modal. CARS shows the distributions of fats or lipids quantitatively across the tissue; SHG visualizes the collagens; and TPEF reveals the morphology of hepatic cells. The results clearly show the development of liver steatosis and fibrosis with time, and the hepatic fat and collagen fibrils are quantified. This study demonstrates the ability of multimodal nonlinear optical microscopy for liver disease diagnosis, and may provide new insights into the understanding of the mechanisms of steatosis/fibrosis transformations at the cellular and molecular levels.
机译:肝脂肪变性和纤维化是两种流行的肝脏疾病,最终可能发展成肝细胞癌(HCC)。由于它们的普遍性和严重性,已经做了很多工作来开发有效的诊断方法和治疗方法。非线性光学显微镜对主要的生化化合物具有很高的灵敏度和化学特异性,使其成为无需染色的组织成像的强大工具。在这项研究中,三种非线性显微镜成像模式应用于胆管结扎大鼠模式肝病的研究。 CARS定量显示整个组织中脂肪或脂质的分布; SHG使胶原蛋白可视化; TPEF揭示了肝细胞的形态。结果清楚地表明了随着时间的推移,肝脂肪变性和纤维化的发展,并且量化了肝脂肪和胶原纤维。这项研究证明了多峰非线性光学显微镜在肝病诊断中的能力,并可能在细胞和分子水平上为了解脂肪变性/纤维化转化的机理提供新的见解。

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