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为新型且具有挑战性的基质参考物质铺平道路——颗粒悬浮液处于材料加工的核心,为方法开发和方法验证提供参考物质。

Paving the way for new and challenging matrix reference materials-particle suspensions at the core of material processing providing RMs for method development and method validation.

作者信息

Emteborg Håkan, Seghers John, García-Ruiz Silvia, Elordui-Zapatarietxe Saioa, Breidbach Andreas, Labibes Kamel, Charoud-Got Jean, Koeber Robert

机构信息

European Commission, Joint Research Centre (JRC), Geel, Belgium.

Diputación Foral de Bizkaia, Bilbao, Spain.

出版信息

Anal Bioanal Chem. 2024 Apr;416(9):2079-2088. doi: 10.1007/s00216-023-05046-2. Epub 2023 Nov 21.

Abstract

Sufficient homogeneity of the certified parameter(s) over the whole fill series of a matrix reference material (RM) is a fundamental quality criterion. In practice, the heterogeneity of the target parameter is evaluated, whereby a relative value can be calculated of how much the target parameter is varying over the RM-batch. A high degree of homogeneity (low heterogeneity) is an inherent quality mark of a good RM. Here, we report how challenging matrix RMs were produced by using particle suspensions at the core of the material processing step. The examples of matrix RMs produced span from whole water reference materials for persistent organic pollutants, PM-like atmospheric dust certified for specific ions to microplastic RMs. Most of these RMs were subsequently used in different phases of analytical method development or for method validation. Common to all these matrices is that they cannot be easily mixed, handled, or dosed to prepare larger sample batches. In all cases, a continuously stirred suspension of particles was used during material processing. In general, relative between-bottle heterogeneities from 1.6 to 6% were achieved for the target parameters in these matrix presentations. Concerning developments of new CRMs in emerging fields, the co-dependence between the availability of validated analytical methods with good repeatability and testing materials with a known and high homogeneity of the target parameter(s) becomes particularly challenging. This situation is an RM/Method causality dilemma. To overcome that hurdle, strategies are proposed for stepwise processes where RM producers and a network of analytical method developers could work hand in hand. In addition, development of a portfolio of inexpensive and well-homogenised common samples coupled with a reporting interface is suggested. This would benefit method developers and RM producers alike. As more and more data is compiled for a specific matrix, it paves the way for new and challenging RMs that can later be used by a wider community.

摘要

在整个矩阵标准物质(RM)填充系列中,认证参数具有足够的均匀性是一项基本的质量标准。在实际操作中,需评估目标参数的异质性,从而可以计算出目标参数在RM批次中的变化程度的相对值。高度均匀性(低异质性)是优质RM的固有质量标志。在此,我们报告了如何通过在材料加工步骤的核心使用颗粒悬浮液来制备具有挑战性的矩阵RM。所生产的矩阵RM示例涵盖了用于持久性有机污染物的全水标准物质、针对特定离子认证的类似PM的大气尘埃,再到微塑料RM。这些RM中的大多数随后被用于分析方法开发的不同阶段或方法验证。所有这些基质的共同之处在于,它们不易混合、处理或计量以制备更大的样品批次。在所有情况下,材料加工过程中均使用了颗粒的连续搅拌悬浮液。一般来说,这些基质样品中目标参数的瓶间相对异质性在1.6%至6%之间。关于新兴领域中新CRM的开发,具有良好重复性的经过验证的分析方法的可用性与具有已知且高度均匀的目标参数的测试材料之间的相互依存关系变得特别具有挑战性。这种情况是RM/方法因果关系困境。为了克服这一障碍,提出了逐步流程的策略,RM生产者和分析方法开发者网络可以携手合作。此外,建议开发一系列价格低廉且均匀性良好的通用样品,并配备报告界面。这将使方法开发者和RM生产者都受益。随着针对特定基质汇编的数据越来越多,这为新的具有挑战性的RM铺平了道路,这些RM随后可供更广泛的群体使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5992/10950969/81774cf4ad95/216_2023_5046_Fig1_HTML.jpg

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