Applications of Raman spectroscopy in life science

A. Martin, Cláudio A. T. Soto, S. M. Ali, L. M. Neto, R. Canevari, L. Pereira, P. Fávero
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引用次数: 2

Abstract

Raman spectroscopy has been applied to the analysis of biological samples for the last 12 years providing detection of changes occurring at the molecular level during the pathological transformation of the tissue. The potential use of this technology in cancer diagnosis has shown encouraging results for the in vivo, real-time and minimally invasive diagnosis. Confocal Raman technics has also been successfully applied in the analysis of skin aging process providing new insights in this field. In this paper it is presented the latest biomedical applications of Raman spectroscopy in our laboratory. It is shown that Raman spectroscopy (RS) has been used for biochemical and molecular characterization of thyroid tissue by micro-Raman spectroscopy and gene expression analysis. This study aimed to improve the discrimination between different thyroid pathologies by Raman analysis. A total of 35 thyroid tissues samples including normal tissue (n=10), goiter (n=10), papillary (n=10) and follicular carcinomas (n=5) were analyzed. The confocal Raman spectroscopy allowed a maximum discrimination of 91.1% between normal and tumor tissues, 84.8% between benign and malignant pathologies and 84.6% among carcinomas analyzed. It will be also report the application of in vivo confocal Raman spectroscopy as an important sensor for detecting advanced glycation products (AGEs) on human skin.
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拉曼光谱在生命科学中的应用
在过去的12年里,拉曼光谱已经被应用于生物样品的分析,提供了在组织病理转化过程中分子水平上发生的变化的检测。该技术在癌症诊断中的潜在应用已经在体内、实时和微创诊断方面显示出令人鼓舞的结果。共聚焦拉曼技术也成功地应用于皮肤老化过程的分析,为这一领域提供了新的见解。本文介绍了拉曼光谱在生物医学领域的最新应用。结果表明,拉曼光谱(RS)已被用于甲状腺组织的微拉曼光谱和基因表达分析的生化和分子表征。本研究旨在通过拉曼分析提高甲状腺不同病理的鉴别能力。共分析35例甲状腺组织样本,包括正常组织(n=10)、甲状腺肿(n=10)、乳头状(n=10)和滤泡癌(n=5)。共聚焦拉曼光谱对正常组织和肿瘤组织的最大识别率为91.1%,对良恶性组织的最大识别率为84.8%,对癌组织的最大识别率为84.6%。本文还将报道体内共聚焦拉曼光谱作为检测人体皮肤上晚期糖基化产物(AGEs)的重要传感器的应用。
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