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Quantification of tryptophan in different layers of oral cancer tissue using fluorescence polarization technique

机译:荧光偏振技术定量不同层口腔组织中不同层的色氨酸

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Oral cancer has a poor five-year survival rate and has not improved much in the past two decades which is due to late diagnosis. In current clinical practice analysis of Haematoxylin Eosin stained tissue biopsy is considered as a golden standard which is rather painful and routine check is not possible. In this regard, native fluorescence spectroscopy has been considered to discriminate cancer tissue based on relative alterations in the level of tryptophan. To estimate relative variations of tryptophan at different layers of tissue fluorescence polarization gating technique has been adopted which is based on the principle that the light from the superficial layer of tissue partially retain the polarization plane of incident light as they are less scattered while light from the deeper layer is completely depolarized due to multiple scattering. Integrated intensity of tryptophan was quantified, and subsequent statistical analysis has been carried out to evaluate the diagnostic potentiality of the proposed technique. It was found that the fractional variation of tryptophan in the superficial layer to the deeper layer was found to be statistically more significant in discriminating oral cancer than cumulative tryptophan in both layers.
机译:口腔癌为期五年生存率较差,在过去的二十年中没有改善,这是由于迟到的诊断。在目前对血红素氧素染色的临床实践分析染色的组织活检被认为是一种相当痛苦和常规检查的黄金标准。在这方面,已被认为本机荧光光谱基于色氨酸水平的相对改变来鉴别癌组织。为了估计不同层的色氨酸的相对变化已经采用,其基于来自组织的浅层层的光部分地保持入射光的偏振平面,因为它们较少散射而来自由于多个散射,更深层完全地偏振。量化色氨酸的集成强度,并进行了随后的统计分析来评估所提出的技术的诊断潜力。发现,在识别口腔癌中,发现浅层层中的色氨酸的分数变化在鉴别口腔癌,而不是两层中的累积色氨酸。

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