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偏光门控技术可提取口腔癌诊断中深度分辨的荧光氧化还原比。

Polarization gating technique extracts depth resolved fluorescence redox ratio in oral cancer diagnostics.

机构信息

Department of Medical Physics, Anna University, Chennai, India.

Department of Radiology, Radio-Oncology and Nuclear Medicine, CHU Sainte-Justine, Montreal, Canada.

出版信息

Photodiagnosis Photodyn Ther. 2020 Jun;30:101757. doi: 10.1016/j.pdpdt.2020.101757. Epub 2020 Apr 23.

DOI:10.1016/j.pdpdt.2020.101757
PMID:32335189
Abstract

Mortality of oral cancer is often due to late diagnosis. Effective non-invasive diagnostic techniques may increase the survival rate based on an earlier diagnosis.. We report on the application of the polarization gating technique for isolating weakly scattered and highly scattered components of fluorescence emission from the superficial and deeper layers of tissue due to intrinsic fluorophores NADH and FAD. The fluorescence polarization spectra were collected from 21 normal and 67 oral squamous cell carcinoma biopsy tissues. The tissues were excited at 350 nm and the fluorescence emission had two peaks corresponding to NADH, and FAD respectively. The spectra were analyzed using the polarization gating technique along with the spectral deconvolution method to derive the optical redox ratio from different layers of tissue. The fractional change in redox ratio between superficial and deeper layers of tissue exhibits excellent statistical significance (p<10) which may be due to a shift in the metabolic pathway from oxidative phosphorylation to glycolysis in the cancer cell. Further, variation in collagen intensity in deeper layers of tissue is observed which may be attributed to the breakdown of collagen fibers in the stroma. Linear discriminant analysis showed that oral cancer tissue is discriminated with a better accuracy using polarization gating technique than that of conventional fluorescence spectroscopy.

摘要

口腔癌的死亡率通常归因于诊断过晚。有效的非侵入性诊断技术可以通过早期诊断提高生存率。我们报告了偏振门控技术在分离组织浅层和深层固有荧光团 NADH 和 FAD 的弱散射和强散射成分方面的应用。从 21 份正常和 67 份口腔鳞状细胞癌活检组织中采集了荧光偏振光谱。组织在 350nm 处被激发,荧光发射有两个峰,分别对应 NADH 和 FAD。使用偏振门控技术和光谱解卷积方法对光谱进行分析,以从不同组织层导出光氧化还原比。组织浅层和深层之间氧化还原比的分数变化具有极好的统计学意义(p<10),这可能是由于癌细胞的代谢途径从氧化磷酸化转变为糖酵解。此外,在组织深层中观察到胶原强度的变化,这可能归因于基质中胶原纤维的破裂。线性判别分析表明,与传统荧光光谱相比,偏振门控技术能够更准确地区分口腔癌组织。

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