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Surface-Enhanced Raman Spectroscopy Analysis of Human Breast Cancer via Silver Nanoparticles: An Examination of Fabrication Methods

机译:通过银纳米粒子的人乳腺癌的表面增强拉曼光谱分析:对制造方法的检查

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摘要

Breast cancer in a traditional way is diagnosed using mammography, computer tomography, ultrasounds, biopsy, and finally, histopathological analysis. Histopathological analysis is a gold standard in breast cancer diagnostics; however, it is time consuming and prone to the human interpretations. That is why new methods based on optical properties of analyzed human tissue samples are needed to be introduced to the clinical practice objective, costless and fast diagnostic protocols. Nowadays, Raman spectroscopy-based methods are gaining more and more importance. Raman spectroscopy and imaging allow to characterize human tissue samples using an electromagnetic radiation from a safe range, and simultaneously, a minimal sample preparation is required. During measurements, a natural differentiation in tissues components’ scattering cross sections is used to build 2D and 3D maps of the chemical component distribution. The paper presents the application of SERS (surface-enhanced Raman spectroscopy) measurements for analysis of human breast cancer (adenocarcinoma). The advantages of SERS application in cancer diagnostics are also discussed. Moreover, the detailed chemical composition of human breast cancer tissue based on Raman bands of DNA/RNA, amino acids, lipids, and proteins which are significantly enhanced is presented. Three different methods of NP preparation are presented, and the effectiveness of Raman signal enhancement of Ag nanoparticles synthetized by these methods is compared. The enhancement effect of NPs synthetized by reduction of silver nitrate with sodium borohydride (method no. 1) and silver nitrate-hydroxylamine hydrochloride reduction (method no. 2) was stronger when compared with the polyol method (method no. 3). Presented SERS results confirmed that the clearly resolved and high-intensity Raman spectra of cancer human breast tissue can be recorded using integration times of the order of fractional seconds and one milliwatt of the excitation laser power.
机译:乳腺癌以传统方式诊断使用乳房X线照相,计算机断层扫描,超声波,活检,最后,组织病理学分析。组织病理学分析是乳腺癌诊断中的金标准;但是,它是耗时和易于人类的解释。这就是为什么需要基于分析的人体组织样品的光学性质的新方法引入临床实践目标,性价比和快速诊断方案。如今,基于拉曼光谱的方法越来越重要。拉曼光谱和成像允许使用来自安全范围的电磁辐射和同时进行人体组织样品,并且需要最小的样品制备。在测量期间,组织成分散射横截面中的自然分化用于构建化学成分分布的2D和3D图。本文介绍了SERS(表面增强拉曼光谱)测量的应用,用于分析人乳腺癌(腺癌)。还讨论了SERS在癌症诊断中应用的优点。此外,介绍了基于DNA / RNA,氨基酸,脂质和蛋白质的拉曼带的人乳腺癌组织的详细化学组成。提出了三种不同的NP制剂方法,比较了通过这些方法合成的Ag纳米颗粒的拉曼信号增强的有效性。用硼氢化钠(方法No.1)和硝酸银硝酸银氧化银(方法NO.2)与多元醇法相比,通过减少硝酸银(方法NO.2)的增强效应(方法NO.2)(方法NO.3)。呈现的SERS结果证实,可以使用分数秒针和激励激光功率的一毫瓦的一体化时间来记录癌症人乳房组织的清晰分辨和高强度拉曼光谱。

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