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利用与基体匹配的外标法定量 LA-ICP-MS 对植物叶片进行原位元素定量成像。

In-situ elemental quantitative imaging in plant leaves by LA-ICP-MS with matrix-matching external calibration.

机构信息

Department of Chemistry, Wuhan University, Wuhan, 430072, China.

Department of Chemistry, Wuhan University, Wuhan, 430072, China.

出版信息

Anal Chim Acta. 2023 Sep 22;1275:341588. doi: 10.1016/j.aca.2023.341588. Epub 2023 Jul 5.

Abstract

Due to the enormous interest in plants related to bioscience, environmental and toxicological research, analytical methods are expected with the ability of getting information on elemental transfer, distribution and contents in plants. In this work, a mixture of gelatin (GA) and hydroxypropyl methyl cellulose (HPMC) was prepared to simulate plant matrix, a method based on laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) with matrix-matching external calibration was proposed for direct quantification of multiple elements in plants. The composition of GA&HPMC substrate was optimized, such as the concentration of spiked nitric acid, the mass fraction of both GA and HPMC in the substrate and the mass ratio of GA: HPMC. After spiking elemental solution, coating the mixture onto a glass slide and drying overnight at room temperature, GA&HPMC substrate was obtained. The substrate obtained with GA: HPMC of 8: 2 was used to fabricate the standard series, which exhibited good elemental homogeneity and similar elemental signal intensities in LA-ICP-MS detection to that obtained for plant Certified Reference Material (CRM). CRMs of different plants including Citrus leaf (GBW10019), Tea (GBW07605), Beans (GBW10021) and Scallions (GBW10049) were further pressed into pellets and subjected to the proposed method, and the quantification accuracy was demonstrated. The limits of detections of this method were found to be 0.003 (Ce)-104 (Ca) μg g, with a wide linear range (0.01-10000 μg g) for 17 target elements. The application potential of the method was further demonstrated by performing elemental imaging in Trigonotis peduncularis leaves. Rapid in-situ quantitative imaging of Zn, Cu, Sr and Mn was achieved, and the elemental quantitative distributions were discussed. The constructed substrate helped direct elemental quantification in plants. It provided a powerful and efficient tool for the investigation of the distribution and transfer of elements in plants, favoring further exploration of elemental bioavailability, transport and toxicity mechanisms.

摘要

由于人们对与生物科学、环境和毒理学研究相关的植物产生了浓厚的兴趣,因此需要能够提供有关元素在植物中迁移、分布和含量信息的分析方法。在这项工作中,制备了明胶(GA)和羟丙基甲基纤维素(HPMC)的混合物来模拟植物基质,提出了一种基于激光烧蚀电感耦合等离子体质谱(LA-ICP-MS)的方法,采用基体匹配外部校准,可直接定量分析植物中的多种元素。优化了 GA&HPMC 基质的组成,例如:基质中加标硝酸的浓度、GA 和 HPMC 的质量分数以及 GA:HPMC 的质量比。将元素溶液加标后,将混合物涂覆在载玻片上并在室温下干燥过夜,即可获得 GA&HPMC 基质。使用 GA:HPMC 为 8:2 的基质制备标准系列,其在 LA-ICP-MS 检测中表现出良好的元素均匀性和相似的元素信号强度,与植物标准参考物质(CRM)获得的结果相当。进一步将不同植物的 CRM(包括柑桔叶(GBW10019)、茶叶(GBW07605)、豆类(GBW10021)和葱(GBW10049))压制成颗粒,采用所提出的方法进行测试,证明了定量分析的准确性。该方法的检出限为 0.003(Ce)-104(Ca)μg g,对于 17 种目标元素,线性范围较宽(0.01-10000μg g)。该方法在 Trigonotis peduncularis 叶片中的元素成像中的应用进一步证明了其应用潜力。实现了 Zn、Cu、Sr 和 Mn 的快速原位定量成像,并讨论了元素的定量分布。所构建的基质有助于植物中元素的直接定量分析。为研究元素在植物中的分布和迁移提供了有力、高效的工具,有利于进一步探索元素的生物利用度、迁移和毒性机制。

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