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Recent Advances in Solid-Phase Extraction as a Platform for Sample Preparation in Biomarker Assay

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CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY
卷 53, 期 1, 页码 199-210

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/10408347.2021.1947771

关键词

Bioanalysis; biomarkers; magnetic solid phase extraction; solid-phase extraction

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The low levels of biomarkers and the complexity of bio samples pose challenges for their analysis. Solid-phase extraction (SPE) is a versatile and effective method for the sample preparation and analysis of biomarkers, with a wide range of applications. The use of SPE allows for high recovery and efficiency, and offers potential for further miniaturization and integration with other analytical steps.
Low levels of biomarkers and the complexity of bio sample make the analytical assay of several biomarkers a challenging issue. Suitable sample preparation run remain a vital part of the puzzle of diagnostic level. Enhancing the detection limit of bioanalytical methods start during the sample preparation procedure. A robust sample preparation method is needed to evaluate the number of biomarkers. As worldwide environmental issues attract expanding consideration, all the more harmless to the ecosystem investigations are liked. Solid-phase extraction (SPE) is an appealing strategy among the sample treatment methods due to the versatility of sorbent materials, less solvent consumption, and compatibility with analytical devices. Miniaturization of the SPE gives the chance to integrate the other analytical steps in a single run, known as an easy-to-use and effective method. SPE utilizes various SPE sorbent beds such as packed beads, porous polymer monoliths, molecularly imprinted polymers, membranes, or other magnetic form microstructures to achieve high surface-to-volume ratio and appropriate chemical properties effective extraction. Also, SPE is the methodology of interest to fulfill high recovery and efficiency demands. In this review, we intend to explain more recent methods for the rational design of SPE and miniaturized SPE to determine biomarkers from biological media. The headlines are subdivided into (1) packing materials in SPE, (2) setups for sample preparation by magnetic SPE, and (3) and future perspective for the application of SPE in sample preparation for analysis of biomarkers.

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