Performance Evaluation of Biochip Chemiluminescent Immunoassay for Screening Seven Mycotoxins in Wheat Flour Simultaneously

IF 1.8 4区 医学 Q3 PHARMACOLOGY & PHARMACY Iranian Journal of Pharmaceutical Research Pub Date : 2023-12-06 DOI:10.5812/ijpr-140356
M. Osouli, H. Yazdanpanah, J. Salamzadeh, S. Eslamizad
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Abstract

Background: Wheat grains are susceptible to mycotoxins, toxic natural secondary metabolites generated by certain fungi on agricultural produce in the field during growth, harvest, transportation, or storage. Therefore, wheat flour can be contaminated with mycotoxins, which seriously threaten human health. Methods: A rapid method for screening seven mycotoxins in wheat flour was validated in accordance with Commission Decision 2002/657/EC. With this multi-analytical screening method, 7 prevalent mycotoxins (fumonisin B1, ochratoxin A, aflatoxin G1, deoxynivalenol, T-2 toxin, aflatoxin B1, and zearalenone) can be determined simultaneously. The method’s applicability was demonstrated by screening 7 mycotoxins in 39 wheat flour samples collected from different bakeries in Tehran province, Iran. Results: The validation results indicated that for all 7 mycotoxins, the positivity threshold (T) was above the cut-off value (Fm), and no false positive results were obtained for any of the mycotoxins. The screening results of 12 packaged and 27 bulk wheat flour samples indicated that the concentrations of all mentioned mycotoxins were higher than the cut-off (in the relative light unit [RLU]), and all the samples were compliant. Conclusions: The present study revealed that the biochip-based technique is valid for identifying and assessing the levels of 7 mycotoxins in grain samples, such as wheat flour, at the measured validation concentrations. The method was simple, fast, and able to screen 7 mycotoxins simultaneously. The test process of the kit is easy to conduct, and the results are straightforward to interpret.
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生物芯片化学发光免疫分析法同时筛查小麦粉中七种霉菌毒素的性能评估
背景:小麦籽粒易受真菌毒素的影响,真菌毒素是田间农产品在生长、收获、运输或储存过程中由某些真菌产生的有毒天然次生代谢物。因此,小麦粉中可能含有真菌毒素,严重威胁人体健康。方法:根据欧盟委员会第2002/657/EC号决议,对小麦粉中7种真菌毒素的快速筛选方法进行了验证。该方法可同时检测出7种常见真菌毒素(伏马毒素B1、赭曲霉毒素A、黄曲霉毒素G1、脱氧雪腐菌素醇、T-2毒素、黄曲霉毒素B1、玉米赤霉烯酮)。通过筛选从伊朗德黑兰省不同面包店采集的39份小麦粉样品中的7种真菌毒素,证明了该方法的适用性。结果:验证结果表明,7种真菌毒素的阳性阈值(T)均高于临界值(Fm),均未出现假阳性结果。12个包装小麦粉和27个散装小麦粉样品的筛选结果表明,上述真菌毒素浓度均高于截止值(相对轻单位[RLU]),所有样品均符合要求。结论:本研究表明,基于生物芯片的技术可以有效地识别和评估谷物样品(如小麦粉)中7种真菌毒素在测定的验证浓度下的水平。该方法简便、快速,可同时筛选7种真菌毒素。该试剂盒的测试过程易于进行,结果易于解释。
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来源期刊
CiteScore
3.40
自引率
6.20%
发文量
52
审稿时长
2 months
期刊介绍: The Iranian Journal of Pharmaceutical Research (IJPR) is a peer-reviewed multi-disciplinary pharmaceutical publication, scheduled to appear quarterly and serve as a means for scientific information exchange in the international pharmaceutical forum. Specific scientific topics of interest to the journal include, but are not limited to: pharmaceutics, industrial pharmacy, pharmacognosy, toxicology, medicinal chemistry, novel analytical methods for drug characterization, computational and modeling approaches to drug design, bio-medical experience, clinical investigation, rational drug prescribing, pharmacoeconomics, biotechnology, nanotechnology, biopharmaceutics and physical pharmacy.
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