Lima Gesiane da Silva, Pereira Igor, Maciel Lanaia Itala Louzeiro, Lima Nerilson Marques, Araujo Giovanna Lopes, de Aguiar Deborah Victória Alves, Dos Santos Gabriel Franco, Vaz Boniek Gontijo
Chemistry Institute, Federal University of Goiás, Goiánia, Goiás 74690-900, Brazil.
Department of Chemistry, Vancouver Island University, Nanaimo, British Columbia V9R 5S5, Canada.
J Am Soc Mass Spectrom. 2023 Nov 1;34(11):2461-2468. doi: 10.1021/jasms.3c00169. Epub 2023 Oct 7.
There is an increasing need for developing a strategy to analyze the penetration of pesticides in cultures during postharvest control with minimal or no sample preparation. This study explores the combined use of laser ablation electrospray ionization mass spectrometry imaging (LAESI imaging) and tissue spray ionization mass spectrometry (TSI-MS) to investigate the penetration of thiabendazole (TBZ) in fruits, simulating a postharvest procedure. Slices of guava and apple were prepared, and an infrared laser beam was used, resulting in the ablation of TBZ directly ionized by electrospray and analyzed by mass spectrometry. The experiments were conducted for 5 days of fruit storage after TBZ administration to simulate a postharvest treatment. During postharvest treatment, TBZ is applied directly to the fruit peel after harvesting. Consequently, TBZ residues may remain on the peel if the consumer does not wash the fruit properly before its consumption. To evaluate the effectiveness of household washing procedures, TSI-MS was employed as a rapid and straightforward technique to monitor the remaining amount of TBZ in guava and apple peels following fruit washing. This study highlights the advantages of LAESI imaging for evaluating TBZ penetration in fruits. Moreover, the powerful capabilities of TSI-MS are demonstrated in monitoring and estimating TBZ residues after pesticide application, enabling the comprehensive unveiling of pesticide contaminants in fruits.
在收获后控制过程中,对于开发一种在极少或无需样品制备的情况下分析农药在农产品中渗透情况的策略的需求日益增加。本研究探索了激光烧蚀电喷雾电离质谱成像(LAESI成像)和组织喷雾电离质谱(TSI-MS)的联合使用,以研究噻苯达唑(TBZ)在水果中的渗透情况,模拟收获后处理过程。制备了番石榴和苹果切片,并使用红外激光束,使TBZ被电喷雾直接电离并通过质谱分析进行烧蚀。在施用TBZ后对水果进行了5天的储存实验,以模拟收获后处理。在收获后处理过程中,收获后TBZ直接施用于水果果皮。因此,如果消费者在食用前没有正确清洗水果,TBZ残留物可能会残留在果皮上。为了评估家庭清洗程序的有效性,TSI-MS被用作一种快速且直接的技术,以监测水果清洗后番石榴和苹果果皮中TBZ的残留量。本研究突出了LAESI成像在评估TBZ在水果中渗透情况方面的优势。此外,TSI-MS在监测和估算农药施用后TBZ残留量方面的强大能力也得到了证明,能够全面揭示水果中的农药污染物。