lc-ms / ms法测定贡达镇市售小麦样品中的黄曲霉毒素

IF 0.4 Q4 CHEMISTRY, MULTIDISCIPLINARY
Siyum Fikadu, T. Molla, Shewarega Yared, Abraham A. Getahun
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引用次数: 1

摘要

小麦是世界上主要的谷类作物之一,其面积和产量在谷类中仅次于水稻,居世界第二位。就种植面积、产量和消费量而言,它也是埃塞俄比亚重要的谷类作物,是继苔麸、玉米和高粱之后种植最广泛的第四大作物。它在人类饮食中非常重要,是能量、蛋白质、维生素、矿物质和纤维的直接来源。然而,这种谷类作物很容易被黄曲霉毒素降解,主要是黄曲霉、寄生曲霉和牛曲霉,这些毒素对摄入受黄曲霉毒素污染的食品和饲料的人类和牲畜产生不利的健康影响。黄曲霉毒素的污染可通过其生长、收获、运输和储存发生。黄曲霉毒素是一种致癌物质,当食用受黄曲霉毒素污染的食物时,对人类具有极大的毒性。为此,本研究采用LC-MS/MS对贡达镇两个市场(Arada和Azezo)小麦样品中的黄曲霉毒素(B1、B2、G1和G2)进行了检测。提取溶剂为乙腈和水(84:16 v/v %)。黄曲霉毒素标准溶液在0.1 ~ 15 ng/mL范围内线性良好,回归系数(r2) > 0.999。黄曲霉毒素B1、B2、G1和G2的检出限分别为0.1208、0.0302、0.0328和0.1272µg/kg。加样回收率在70.80% ~ 77.23%之间。在收获前和收获后的小麦样品中均未检测到黄曲霉毒素
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DETERMINATION OF AFLATOXIN IN COMMERCIALLY AVAILABLE WHEAT SAMPLES FROM MARKETS OF GONDAR TOWN USING LC-MS/MS
: Wheat is one of the major cereal crops of the world ranking second after rice both in area coverage and production among cereal grains. It is also an important cereal crop in Ethiopia in terms of cultivated area, production and consumption, which is the fourth most widely grown crop after teff, maize, and sorghum. It has great importance in the human diet, contributing as a direct source of energy, protein, vitamins, minerals and fiber. However, this cereal crop is vulnerable to degradation by aflatoxins mainly by Aspergillus flavus, Aspergillus Parasiticus and Aspergillus nomius, which have adverse health effects on humans and livestock that ingest aflatoxin contaminated food products and feeds. The contamination of aflatoxins can occur through its growth, harvest, transport and storage. Aflatoxins are carcinogenic substances and are extremely toxic to humans when consuming aflatoxin contaminated foods. Therefore, this study has been undertaken to determine aflatoxin (B1, B2, G1 and G2) in wheat samples collected from two market places (namely, Arada and Azezo) of Gondar town, by using LC-MS/MS. The extraction solvents were acetonitrile and water (84:16 v/v %). Good linearity from the calibration curve was obtained in standard solution of aflatoxins in range between 0.1 and 15 ng/mL, with regression coefficient (R 2 ) values of > 0.999. Limit of detection of the aflatoxins were 0.1208, 0.0302, 0.0328 and 0.1272 µg/kg for aflatoxin B1, B2, G1 and G2, respectively. The average percentage recoveries of spiked samples were range between 70.80 and 77.23 %. Aflatoxins were not detected in both wheat samples from Arada and Azezo. 15 pre-harvest 15 post-harvest
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Acta Chemica Iasi
Acta Chemica Iasi CHEMISTRY, MULTIDISCIPLINARY-
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