血清拉曼光谱:评估实验致癌过程中的肿瘤负荷变化。

IF 2 3区 物理与天体物理 Q3 BIOCHEMICAL RESEARCH METHODS Journal of Biophotonics Pub Date : 2024-01-16 DOI:10.1002/jbio.202300424
Priyanka A. Jadhav, Arti Hole, Arvind Ingle, Rukmini Govekar, Hemanth Noothalapati, C. Murali Krishna
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引用次数: 0

摘要

多项血清拉曼光谱(RS)研究表明,它具有作为口腔癌筛查工具的潜力。本研究利用仓鼠颊囊口腔癌实验模型研究了低肿瘤负荷(LTL)和高肿瘤负荷(HTL)对血清 RS 的影响。研究采用了未经处理的对照组、LTL 组和 HTL 组在恶性转化过程中每隔一周的血清。对血清拉曼光谱进行了多变量分析--主成分分析、基于主成分的线性判别分析(用于研究组的分层)和多变量曲线解析-交替最小二乘法(MCR-ALS)(用于理解生物分子差异)。多变量分析显示,在所有周间隔中,LTL 和 HTL 之间都存在分类错误。MCR-ALS 成分在对照组与 LTL 之间、对照组与 HTL 之间显示出显著的丰度,但无法区分 LTL 和 HTL。MCR-ALS 成分显示出蛋白质、脂类、血红素和核酸的光谱混合物。因此,这些发现支持使用血清 RS 作为筛查工具,因为不同的肿瘤负荷并不是影响该技术的干扰因素。
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Serum Raman spectroscopy: Evaluation of tumour load variations in experimental carcinogenesis

Several serum Raman spectroscopy (RS) studies have demonstrated its potential as an oral cancer screening tool. This study investigates influence of low tumour load (LTL) and high tumour load (HTL) on serum RS using hamster buccal pouch model of experimental oral carcinogenesis. Sera of untreated control, LTL, and HTL groups at week intervals during malignant transformation were employed. Serum Raman spectra were subjected to multivariate analyses—principal component analysis, principal component-based linear discriminant analysis (for stratification of study groups), and multivariate curve resolution-alternating least squares (MCR-ALS) (to comprehend biomolecular differences). Multivariate analysis revealed misclassifications between LTL and HTL at all week intervals. MCR-ALS components showed statistically significant abundances between control versus LTL and control versus HTL, but could not discern LTL and HTL. MCR-ALS components exhibited spectral mixtures of proteins, lipids, heme and nucleic acids. Thus, these findings support use of serum RS as a screening tool as varying tumour load is not a confounding factor influencing the technique.

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来源期刊
Journal of Biophotonics
Journal of Biophotonics 生物-生化研究方法
CiteScore
5.70
自引率
7.10%
发文量
248
审稿时长
1 months
期刊介绍: The first international journal dedicated to publishing reviews and original articles from this exciting field, the Journal of Biophotonics covers the broad range of research on interactions between light and biological material. The journal offers a platform where the physicist communicates with the biologist and where the clinical practitioner learns about the latest tools for the diagnosis of diseases. As such, the journal is highly interdisciplinary, publishing cutting edge research in the fields of life sciences, medicine, physics, chemistry, and engineering. The coverage extends from fundamental research to specific developments, while also including the latest applications.
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