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使用流式细胞术检测微塑料和纳米塑料:荧光染料应用面临的挑战与方法学进展

Microplastics and nanoplastics detection using flow cytometry: Challenges and methodological advances with fluorescent dye application.

作者信息

Ainé Lucas, Jacquin Justine, Breysse Colette, Colin Catherine, Andanson Jean-Michel, Delor-Jestin Florence

机构信息

CT-IPC: CT-IPC 3 rue Emile Duclaux, Biopôle Clermont, Limagne, 63360 SAINT-BEAUZIRE.

Université Clermont Auvergne, Clermont Auvergne INP, CNRS, ICCF, F-63000 Clermont-Ferrand, France.

出版信息

MethodsX. 2025 Feb 4;14:103200. doi: 10.1016/j.mex.2025.103200. eCollection 2025 Jun.

Abstract

Flow cytometry (FC) enables the precise quantification of specific types of microparticles and larger nanoparticles (>200 nm) in liquid media. Initially developed for biological applications, this technique has recently been adapted to the environmental field for the measurement of microplastics and nanoplastics (MNPs). Nile Red, a fluorochrome extensively used in MNP analysis due to its effectiveness and accessibility, has been applied to significantly enhance the sensitivity and specificity of MNP detection of this technique. Additionally, flow cytometry offers the advantage of automated detection, allowing the quantification of smaller particles, including those under 1 µm, which are often missed by traditional spectroscopic methods. However, despite its promise, the presence of undissolved dye in aqueous media presents a significant challenge for accurate quantification. In recent years, various methodologies have been developed to overcome these limitations, including the use of co-solvents, surfactants, and pre-filtration or pre-sonication techniques to enhance quantification accuracy. This review examines recent literature on MNPs detection via FC, with a focus on technical improvements made and the remaining metrological challenges, offering insights into how this method can be further refined for future investigations.

摘要

流式细胞术(FC)能够精确量化液体介质中特定类型的微粒和较大的纳米颗粒(>200 nm)。该技术最初是为生物学应用而开发的,最近已应用于环境领域,用于测量微塑料和纳米塑料(MNPs)。尼罗红是一种由于其有效性和易获得性而广泛用于MNPs分析的荧光染料,已被应用于显著提高该技术检测MNPs的灵敏度和特异性。此外,流式细胞术具有自动检测的优势,能够对较小的颗粒进行量化,包括那些通常被传统光谱方法遗漏的1 µm以下的颗粒。然而,尽管它有前景,但水性介质中未溶解染料的存在对准确定量提出了重大挑战。近年来,已经开发了各种方法来克服这些限制,包括使用助溶剂、表面活性剂以及预过滤或预超声处理技术来提高定量准确性。这篇综述考察了最近关于通过FC检测MNPs的文献,重点关注已取得的技术改进和剩余的计量挑战,为如何在未来研究中进一步完善该方法提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b109/11870216/ac9905284821/ga1.jpg

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