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LC-MS法分析鸡肝中的玉米赤霉醇 被引量:1
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作者 曹莹 黄士新 +2 位作者 王蓓 孙亚云 王迪楼 《分析测试学报》 CAS CSCD 北大核心 2004年第z1期249-251,共3页
  玉米赤霉醇(Zeranol)是一种非甾体类激素,具有促进家畜蛋白质合成和增重的作用.由于其在动物组织中残留,目前在欧盟被禁用.2002年4月我国农业部第193号公告和2002年11月农业部、国家药品监督管理局第227号公告中规定禁止使用玉米赤...   玉米赤霉醇(Zeranol)是一种非甾体类激素,具有促进家畜蛋白质合成和增重的作用.由于其在动物组织中残留,目前在欧盟被禁用.2002年4月我国农业部第193号公告和2002年11月农业部、国家药品监督管理局第227号公告中规定禁止使用玉米赤霉醇,但由于玉米赤霉醇作为畜禽增重剂效果好、经济回报高,仍有一些不法饲养业主受利益驱使而违法使用.…… 展开更多
关键词 ZERANOL Chicken liver LC - MS
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Electrochemical Detection of Zeranol and Zearalenone Metabolic Analogs in Meats and Grains by Screen-Plated Carbon-Plated Disposable Electrodes
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作者 Ming-Kun Hsieh Huiru Chen +2 位作者 Jen-Lin Chang Wei-Shao She Chi-Chung Chou 《Food and Nutrition Sciences》 2013年第7期31-38,共8页
Zeranol (Z) is an estrogenic growth-promoting agent synthesized from mycotoxin zearalenone (Zen). Inadvertent consumption of Z and its structural analogs from meat or grain products remain a food safety concern. An ec... Zeranol (Z) is an estrogenic growth-promoting agent synthesized from mycotoxin zearalenone (Zen). Inadvertent consumption of Z and its structural analogs from meat or grain products remain a food safety concern. An economic and rapid high performance liquid chromatography method with electrochemical detection using disposable screen-printed carbon electrode is developed for determination of Z, Zen and 3 major metabolic analogs α-zearalenol (α-Ze), β-zearalenol (β-Ze), and β-zearalanol (β-Za). The electrochemical method was validated for application in food matrices including beef, pork, feed and cereal after optimized liquid and/or solid-phase extraction procedures. All 5 Z analogs were separated in 10 minutes with the limits of detection ranging from 15 ng/ml for α-Ze and 25 ng/ml for Z and Zen;the limit of quantitation ranged from 40 50 ng/ml. The recoveries were all above 75% regardless of matrix types and extraction procedures. The intra and inter day variations were both less than 6% at the nominal concentration of 1 μg/ml and less than 13% at 100 ng/ml level. Chromatographically time-matched peaks of Z, α-Ze and β-Za were observed in moldy feed, cereal and rice with high productivity, indicating possible grain-specific Zs exposure for animals and human. Proper exercise of preservative procedures for grain and grain products to prevent it from mold production is imperative. The simplicity and reproducibility of this method affords quick and reliable quantitation of multiple types of Z analogs in food products and can offer semi-confirmative information comparable to UV detection and supplementary to ELISA screening. 展开更多
关键词 ZERANOL Moldy Grain Electrochemical Carbon Electrode
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