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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Study on the biochemical mechanisms of the micro-wave ablation treatment of lung cancer by ex vivo confocal Raman microspectral imaging
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Study on the biochemical mechanisms of the micro-wave ablation treatment of lung cancer by ex vivo confocal Raman microspectral imaging

机译:以外的肺癌微波消融治疗肺癌的生化机制研究

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As a highly invasive and the most prevalent malignancy, lung cancer remains the leading cause of cancerassociated mortality worldwide, especially in China. Microwave ablation (MWA) is an effective, safe, and the least invasive ablative treatment modality, which has been increasingly used for the management of unrespectable lung tumors. However, the underlying biochemical mechanisms of MWA treatment remain to be incompletely elucidated. Therefore, to illustrate the complex biochemical responses of lung squamous cell carcinoma (LSCC) to MWA treatment, confocal Raman micro-spectral imaging (CRMI) was applied in combination with multivariate analysis. A total of twelve LSCC tissues were acquired from patients undergoing clinical treatment, and their spectral characteristics were analyzed to determine significant spectral variations following cancer progression and MWA treatment in comparison with healthy lung tissues. Point-scanned Raman datasets were acquired from sectioned tissue samples in both pretherapy (Pre-MWA group) and post-therapy groups (Post-MWA group) and further analyzed using K-means cluster analysis (KCA) and principal component analysis (PCA) to highlight the detailed compositional variations of the biochemical constituents. The spectral variations of essential amino acids (such as phenylalanine and tryptophan), collagen, and nucleic acids in the cancerous tissues of the Post-MWA group were significantly enhanced compared to those in the Pre-MWA group. The acquired information further confirmed a remarkable increase in the content of nucleic acid, protein, and lipid in the cancerous tissue following MWA treatment and, a comparative spectral imaging investigation indicated that MWA had no noticeable adverse effects on the paracancerous tissues. Thus, the findings not only illustrated the underlying biochemical variability in lung cancer during MWA treatment but also further confirmed the feasibility of a combined analytical procedure for assessing the bi
机译:作为一种高度侵袭性和最普遍的恶性肿瘤,肺癌仍然是全世界癌症治愈死亡率的主要原因,特别是在中国。微波消融(MWA)是一种有效,安全的和最不侵入性的丧吻,其越来越多地用于不敏感的肺肿瘤的管理。然而,MWA治疗的潜在生化机制仍有待阐明。因此,为了说明肺鳞状细胞癌(LSCC)对MWA处理的复杂生化反应,将共焦拉曼微谱成像(CRMI)与多变量分析组合施用。从经历临床治疗的患者中获得了12个LSCC组织,分析了它们的光谱特性,以确定癌症进展和MWA治疗后的显着光谱变异与健康肺组织相比。从前术(MWA组)和治疗后组(MWA组)中的切片组织样品中获取点扫描的拉曼数据集,并使用K-Means簇分析(KCA)和主成分分析(PCA)进一步分析突出生物化学成分的详细组成变化。与Pre-MWA组中的那些相比,MWA组癌组织中基本氨基酸(例如苯丙氨酸和色氨酸),胶原和核酸的光谱变化显着提高。所获取的信息进一步证实了核酸,蛋白质和脂质的在癌性组织的内容以下MWA治疗和,表明MWA对所述旁组织没有明显的不利影响的比较光谱成像研究的显着增加。因此,该研究结果不仅在MWA治疗期间阐述了肺癌的潜在生化变异,而且还进一步证实了用于评估BI的组合分析程序的可行性

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