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免疫分析:与荧光光谱检测相比,SERS 检测的分析和临床性能、挑战及观点。

Immunoassays: Analytical and Clinical Performance, Challenges, and Perspectives of SERS Detection in Comparison with Fluorescent Spectroscopic Detection.

机构信息

Department of Chemistry, Nazarbayev University, Kabanbay Batyr Ave. 53, Astana 010000, Kazakhstan.

出版信息

Int J Mol Sci. 2024 Feb 8;25(4):2080. doi: 10.3390/ijms25042080.

Abstract

Immunoassays (IAs) with fluorescence-based detection are already well-established commercialized biosensing methods, such as enzyme-linked immunosorbent assay (ELISA) and lateral flow immunoassay (LFIA). Immunoassays with surface-enhanced Raman spectroscopy (SERS) detection have received significant attention from the research community for at least two decades, but so far they still lack a wide clinical commercial application. This review, unlike any other review that we have seen, performs a three-dimensional performance comparison of SERS IAs vs. fluorescence IAs. First, we compared the limit of detection (LOD) as a key performance parameter for 30 fluorescence and 30 SERS-based immunoassays reported in the literature. We also compared the clinical performances of a smaller number of available reports for SERS vs. fluorescence immunoassays (FIAs). We found that the median and geometric average LODs are about 1.5-2 orders of magnitude lower for SERS-based immunoassays in comparison to fluorescence-based immunoassays. For instance, the median LOD for SERS IA is 4.3 × 10 M, whereas for FIA, it is 1.5 × 10 M. However, there is no significant difference in average relative standard deviation (RSD)-both are about 5-6%. The analysis of sensitivity, selectivity, and accuracy reported for a limited number of the published clinical studies with SERS IA and FIA demonstrates an advantage of SERS IA over FIA, at least in terms of the median value for all three of those parameters. We discussed common and specific challenges to the performances of both SERS IA and FIA, while proposing some solutions to mitigate those challenges for both techniques. These challenges include non-specific protein binding, non-specific interactions in the immunoassays, sometimes insufficient reproducibility, relatively long assay times, photobleaching, etc. Overall, this review may be useful for a large number of researchers who would like to use immunoassays, but particularly for those who would like to make improvements and move forward in both SERS-based IAs and fluorescence-based IAs.

摘要

免疫分析(IA)与基于荧光的检测已经是成熟的商业化生物传感方法,例如酶联免疫吸附测定(ELISA)和侧向流动免疫分析(LFIA)。基于表面增强拉曼光谱(SERS)检测的免疫分析在研究界已经受到了至少二十年的关注,但到目前为止,它们仍然缺乏广泛的临床商业应用。与我们之前看到的任何其他综述不同,这篇综述对 SERS IA 与荧光 IA 的三维性能进行了比较。首先,我们比较了文献中报道的 30 种基于荧光和 30 种基于 SERS 的免疫分析的检测限(LOD)作为关键性能参数。我们还比较了可用的 SERS 与荧光免疫分析(FIAs)报告的临床性能。我们发现,与基于荧光的免疫分析相比,基于 SERS 的免疫分析的中位和几何平均 LOD 低约 1.5-2 个数量级。例如,SERS IA 的中位 LOD 为 4.3×10 M,而 FIA 的 LOD 为 1.5×10 M。然而,平均相对标准偏差(RSD)没有显著差异-两者均约为 5-6%。对发表的具有 SERS IA 和 FIA 的有限数量临床研究的灵敏度、选择性和准确性的分析表明,SERS IA 至少在所有三个参数的中位数方面优于 FIA。我们讨论了 SERS IA 和 FIA 性能的共同和特定挑战,同时为这两种技术提出了一些缓解这些挑战的解决方案。这些挑战包括非特异性蛋白质结合、免疫分析中的非特异性相互作用、有时重现性不足、相对较长的测定时间、光漂白等。总的来说,这篇综述可能对希望使用免疫分析的大量研究人员有用,特别是对那些希望在基于 SERS 的 IA 和基于荧光的 IA 方面进行改进和前进的研究人员。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c81/10889711/fb7f88161bff/ijms-25-02080-g001.jpg

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