Department of Livestock Development, Veterinary Research and Development Center (Upper Northern Region), Lampang, 52190, Thailand.
Department of Chemistry, Center of Excellence for Innovation in Chemistry, and Material Science Research Center, Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand.
Mikrochim Acta. 2024 Apr 1;191(4):228. doi: 10.1007/s00604-024-06308-1.
A cutting-edge electrochemical method is presented for precise quantification of amitraz (AMZ), a commonly used acaricide in veterinary medicine and agriculture. Leveraging a lab-made screen-printed carbon electrode modified with a synergistic blend of perylene tetracarboxylic acid (PTCA), mesoporous carbon (MC), and Nafion, the sensor's sensitivity was significantly improved. Fine-tuning of PTCA, MC, and Nafion ratios, alongside optimization of the pH of the supporting electrolyte and accumulation time, resulted in remarkable sensitivity enhancements. The sensor exhibited a linear response within the concentration range 0.01 to 0.70 μg mL, boasting an exceptionally low limit of detection of 0.002 μg mL and a limit of quantification of 0.10 μg mL, surpassing maximum residue levels permitted in honey, tomato, and longan samples. Validation with real samples demonstrated high recoveries ranging from 80.8 to 104.8%, with a relative standard deviation below 10%, affirming the method's robustness and precision. The modified PTCA/MC/Nafion@SPCE-based electrochemical sensor not only offers superior sensitivity but also simplicity and cost-effectiveness, making it a pivotal tool for accurate AMZ detection in food samples. Furthermore, beyond the scope of this study, the sensor presents promising prospects for wider application across various electrochemical analytical fields, thereby significantly contributing to food safety and advancing agricultural practices.
一种前沿的电化学方法被提出,用于精确量化在兽医和农业中常用的杀螨剂——咪鲜胺(AMZ)。利用实验室制造的修饰有协同混合的苝四羧酸(PTCA)、介孔碳(MC)和 Nafion 的丝网印刷碳电极,传感器的灵敏度得到了显著提高。通过精细调整 PTCA、MC 和 Nafion 的比例,以及优化支持电解质的 pH 值和积累时间,实现了显著的灵敏度增强。该传感器在 0.01 至 0.70 μg mL 的浓度范围内呈现出线性响应,具有极低的检测限 0.002 μg mL 和定量限 0.10 μg mL,超过了蜂蜜、番茄和龙眼样本中允许的最大残留水平。通过实际样品的验证,回收率范围在 80.8 至 104.8%之间,相对标准偏差低于 10%,证明了该方法的稳健性和精密度。基于修饰的 PTCA/MC/Nafion@SPCE 的电化学传感器不仅提供了更高的灵敏度,而且具有简单性和成本效益,使其成为食品样品中准确检测 AMZ 的关键工具。此外,超出本研究范围,该传感器在各种电化学分析领域的更广泛应用中具有广阔的前景,为食品安全提供了重要贡献,并推动了农业实践的发展。