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Application of Raman Spectroscopy and Infrared Spectroscopy in the Identification of Breast Cancer

机译:拉曼光谱和红外光谱在乳腺癌鉴别中的应用

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Raman spectroscopy and infrared (IR) spectroscopy are both techniques that allow for the investigation of vibrating chemical particles. These techniques provide information not only about chemical particles through the identification of functional groups and spectral analysis of so-called "fingerprints'', these methods allow for the qualitative and quantitative analyses of chemical substances in the sample. Both of these spectral techniques are frequently being used in biology and medicine in diagnosing illnesses and monitoring methods of therapy. The type of breast cancer found in woman is often a malignant tumor, causing 1.38 million new cases of breast cancer and 458 000 deaths in the world in 2013. The most important risk factors for breast cancer development are: sex, age, family history, specific benign breast conditions in the breast, ionizing radiation, and lifestyle. The main purpose of breast cancer screening tests is to establish early diagnostics and to apply proper treatment. Diagnoses of breast cancer are based on: (1) physical techniques (e.g., ultrasonography, mammography, elastography, magnetic resonance, positron emission tomography [PET]); (2) histopathological techniques; (3) biological techniques; and (4) optical techniques (e.g., photo acoustic imaging, fluorescence tomography). However, none of these techniques provides unique or especially revealing answers. The aim of our study is comparative spectroscopic measurements on patients with the following: normal non-cancerous breast tissue; breast cancer tissues before chemotherapy; breast cancer tissues after chemotherapy; and normal breast tissues received around the cancerous breast region. Spectra collected from breast cancer patients shows changes in amounts of carotenoids and fats. We also observed changes in carbohydrate and protein levels (e.g., lack of amino acids, changes in the concentration of amino acids, structural changes) in comparison with normal breast tissues. This fact verifies that Raman spectroscopy and IR spectroscopy are very useful diagnostic tools that will shed new light in understanding the etiology of breast cancer.
机译:拉曼光谱法和红外(IR)光谱法都是可以研究振动化学颗粒的技术。这些技术不仅可以通过功能基团的鉴定和所谓的“指纹”的光谱分析提供有关化学粒子的信息,而且还可以对样品中的化学物质进行定性和定量分析。在生物学和医学上用于诊断疾病和监测治疗方法的女性中发现的乳腺癌类型通常是恶性肿瘤,2013年在世界范围内导致138万例乳腺癌新病例和45.8万例死亡。乳腺癌发展的危险因素包括:性别,年龄,家族病史,乳房中特定的良性乳房状况,电离辐射和生活方式。乳腺癌筛查测试的主要目的是建立早期诊断并采取适当的治疗措施。乳腺癌的依据是:(1)物理技术(例如,超声检查,乳腺摄影,弹性成像,磁共振) ce,正电子发射断层扫描[PET]); (2)组织病理学技术; (3)生物技术; (4)光学技术(例如光声成像,荧光层析成像)。但是,这些技术都无法提供独特或特别具有启发性的答案。我们的研究目的是对患有以下疾病的患者进行光谱比较测量:正常的非癌性乳腺组织;化疗前的乳腺癌组织;化疗后的乳腺癌组织;和正常的乳腺组织在癌性乳腺区域周围被接受。从乳腺癌患者身上收集的光谱显示出类胡萝卜素和脂肪含量的变化。与正常的乳腺组织相比,我们还观察到碳水化合物和蛋白质水平的变化(例如,氨基酸缺乏,氨基酸浓度变化,结构变化)。这一事实证明,拉曼光谱和红外光谱是非常有用的诊断工具,将为了解乳腺癌的病因学提供新的思路。

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