Ranveer Soniya A, Harshitha C G, Dasriya Vaishali, Tehri Nimisha, Kumar Naresh, Raghu H V
Microbial Biosensors Food Safety Lab, Dairy Microbiology Division, ICAR-National Dairy Research Institute, KArnal, 132001, Haryana, India.
Chemistry Section, National Referral Centre for Milk Quality and Safety, Dairy Chemistry Division, ICAR-National Dairy Research Institute, Karnal, 132001, Haryana, India.
Curr Res Food Sci. 2022 Dec 20;6:100416. doi: 10.1016/j.crfs.2022.100416. eCollection 2023.
According to the results of this study, the paper strip biosensor can detect pesticide at very low concentration like fungicide, organochlorine, organophosphate, carbamate, and herbicide group ranges from 1 to 10, 1-50, 250-500, 1-50, and 1 μg/L, respectively in animal feed, water, milk and soil. This is a significant improvement from the previous study, which found that the paper strip biosensor could only detect pesticide levels of up to 500 or 1000 μg/L. A total of 436 samples were collected from the dairy farm, including 58 samples of green feed, 54 samples of dry feed, 45 samples of concentrated feed, 41 samples of fermented feed, 49 samples of manure, 54 samples of soil, and 86 samples of milk. PSA (Primary Secondary Amine) and MgSO (1:2 ratio) were used to remove pigments from dairy farm samples to prevent the enzyme-pesticide interaction leading to colour development on the strip, which was successfully achieved. Using a strip-based test and an optimized extraction protocol, pesticides were detected in 38.49% in the samples. Limit of Detection of 15 pesticides from the organochlorine, organophosphate, carbamate, neonicotinoid, pyrethroid, ryanoid, strobilurins, and triazole groups recommended for use in dairy farms were evaluated in feed/fodder. Pesticides were being detected in various dairy farm matrices using the newly developed test. The developed technology can be used as a semi-quantitative test for pesticides monitoring in the dairy farm as well as for screening of primary produce under field condition for organic certification of various food/feed commodities.
根据本研究结果,纸条生物传感器能够检测低浓度的农药,如在动物饲料、水、牛奶和土壤中,杀菌剂、有机氯、有机磷、氨基甲酸酯和除草剂类农药的检测范围分别为1至10、1至50、250至500、1至50和1μg/L。这相较于之前的研究有显著改进,之前的研究发现纸条生物传感器只能检测高达500或1000μg/L的农药水平。总共从奶牛场采集了436个样本,包括58个青饲料样本、54个干饲料样本、45个浓缩饲料样本、41个发酵饲料样本、49个粪便样本、54个土壤样本和86个牛奶样本。使用PSA(伯仲胺)和MgSO(1:2比例)去除奶牛场样本中的色素,以防止酶与农药相互作用导致纸条显色,这一操作成功实现。采用基于纸条的检测方法和优化的提取方案,在38.49%的样本中检测到了农药。对奶牛场推荐使用的有机氯、有机磷、氨基甲酸酯、新烟碱、拟除虫菊酯、茚虫威、甲氧基丙烯酸酯和三唑类等15种农药在饲料/草料中的检测限进行了评估。使用新开发的检测方法在奶牛场的各种基质中检测到了农药。所开发的技术可作为奶牛场农药监测的半定量检测方法,也可用于田间条件下初级农产品的筛选,以进行各种食品/饲料商品的有机认证。