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Surface-enhanced Raman spectroscopy of blood plasma and serum using Ag and Au nanoparticles: a systematic study

机译:使用Ag和Au纳米粒子对血浆和血清进行表面增强拉曼光谱分析:系统研究

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摘要

Surface-enhanced Raman spectroscopy (SERS) is a good candidate for the development of fast and easy-to-use diagnostic tools, possibly used on biofluids in point-of-care or screening tests. In particular, label-free SERS spectra of blood serum and plasma, two biofluids widely used in diagnostics, could be used as a metabolic fingerprinting approach for biomarker discovery. This study aims at a systematic evaluation of SERS spectra of blood serum and plasma, using various Ag and Au aqueous colloids, as SERS substrates, in combination with three excitation lasers of different wavelengths, ranging from the visible to the near-infrared. The analysis of the SERS spectra collected from 20 healthy subjects under a variety of experimental conditions revealed that intense and repeatable spectra are quickly obtained only if proteins are filtered out from samples, and an excitation in the near-infrared is used in combination with Ag colloids. Moreover, common plasma anticoagulants such as EDTA and citrate are found to interfere with SERS spectra;accordingly, filtered serum or heparin plasma are the samples of choice, having identical SERS spectra. Most bands observed in SERS spectra of these biofluids are assigned to uric acid, a metabolite whose blood concentration depends on factors such as sex, age, therapeutic treatments, and various pathological conditions, suggesting that, even when the right experimental conditions are chosen, great care must be taken in designing studies with the purpose of developing diagnostic tests.
机译:表面增强拉曼光谱仪(SERS)是开发快速且易于使用的诊断工具的良好候选者,该诊断工具可能用于即时医疗点或筛查测试中的生物流体。特别是,血清和血浆的无标记SERS光谱是诊断中广泛使用的两种生物流体,可以用作生物标记发现的代谢指纹方法。这项研究旨在使用各种Ag和Au水性胶体作为SERS底物,并结合从可见光到近红外的三种不同波长的激发激光,系统评估血清和血浆的SERS光谱。在各种实验条件下对20位健康受试者的SERS光谱进行分析后发现,只有从样品中滤出蛋白质,才能快速获得强烈且可重复的光谱,并且将近红外激发与Ag胶体结合使用。此外,发现常见的血浆抗凝剂(如EDTA和柠檬酸盐)会干扰SERS光谱;因此,过滤后的血清或肝素血浆是具有相同SERS光谱的选择样品。这些生物流体在SERS光谱中观察到的大多数谱带都属于尿酸,尿酸是一种血液代谢物,其血液浓度取决于诸如性别,年龄,治疗方法和各种病理状况等因素,这表明,即使选择了正确的实验条件,其效果也很好。在设计研究时必须注意开发诊断测试的目的。

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