School of Resources and Environment, Hunan University of Technology and Business, Changsha 410205, Hunan, PR China.
Hunan Province Cooperative Innovation Center for Molecular Target New Drug Study, Institute of Pharmacy & Pharmacology, Hengyang Medical School, University of South China, Hengyang, Hunan 421001, PR China.
J Hazard Mater. 2024 Feb 15;464:132986. doi: 10.1016/j.jhazmat.2023.132986. Epub 2023 Nov 11.
Laser desorption ionization mass spectrometry (LDI-MS) aroused intensive concerns for the merits of label-free and high-throughput analysis. Here, we designed a silver nanoparticles (AgNP)-modified indium vanadate nanosheets with doping samarium (AgNP@InVO:Sm) nanosheets. The developed AgNP@InVO:Sm nanosheets (AIVON) were synthesized based on the microemulsion-mediated solvothermal method and ultraviolet-assisted in situ formation of AgNP, then for the first time applied as a matrix in LDI-MS analysis. With the advantages including enhanced MS signal, little matrix-related background, high reproducibility, and good salt tolerance, AIVON exhibited much better prospect than non-modified indium vanadate nanosheets with doping samarium (IVON) and traditional organic matrix, thus allowing sensitive MS detection for a wide range of low-molecular-weight (LMW) molecules. Moreover, by coupling with headspace sampling thin-film microextraction (TFME), a kind of representative pollutant chlorophenols were identified and quantified via AIVON-assisted LDI-MS in environmental and biological samples. Volatile LMW pollutants could be preconcentrated after TFME, hence a sensitive and rapid assay with negligible sample matrix effect was realized by using AIVON-assisted LDI-MS. It is anticipated that this novel nano-matrix AIVON and the proposed TFME coupling detection strategy were of competitive merits for LDI-MS analysis in the fields of environment, biomedicine, and agriculture.
激光解吸电离质谱(LDI-MS)因其无标记和高通量分析的优点而引起了广泛关注。在这里,我们设计了一种具有掺杂钐的银纳米粒子(AgNP)修饰的钒酸铟纳米片(AgNP@InVO:Sm)纳米片。所开发的 AgNP@InVO:Sm 纳米片(AIVON)是基于微乳液介导的溶剂热法和紫外辅助原位形成 AgNP 合成的,然后首次将其作为基质应用于 LDI-MS 分析中。AIVON 具有增强的 MS 信号、较少的基质相关背景、高重现性和良好的耐盐性等优点,比具有掺杂钐的非修饰钒酸铟纳米片(IVON)和传统有机基质表现出更好的前景,从而能够对广泛的低分子量(LMW)分子进行敏感的 MS 检测。此外,通过与顶空采样薄膜微萃取(TFME)耦合,使用 AIVON 辅助 LDI-MS 在环境和生物样品中对代表性污染物氯酚进行了鉴定和定量。通过 TFME 可以预浓缩挥发性 LMW 污染物,因此,使用 AIVON 辅助 LDI-MS 实现了灵敏、快速且几乎没有样品基质效应的分析。预计这种新型纳米基质 AIVON 和提出的 TFME 耦合检测策略在环境、生物医学和农业领域的 LDI-MS 分析中具有竞争优势。