首页> 美国卫生研究院文献>Toxins >Tolerance and Excretion of the Mycotoxins Aflatoxin B1 Zearalenone Deoxynivalenol and Ochratoxin A by Alphitobius diaperinus and Hermetia illucens from Contaminated Substrates
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Tolerance and Excretion of the Mycotoxins Aflatoxin B1 Zearalenone Deoxynivalenol and Ochratoxin A by Alphitobius diaperinus and Hermetia illucens from Contaminated Substrates

机译:尿曲霉Alpertoius diaperinus和Hermetia illucens对霉菌毒素黄曲霉毒素B1玉米赤霉烯酮脱氧雪腐烯醇和O曲霉毒素A的耐受和排泄

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摘要

This study aimed to investigate the potential accumulation of mycotoxins in the lesser mealworm (Alphitobius diaperinus, LMW) and black soldier fly (Hermetia illucens, BSF) larvae. Feed was spiked with aflatoxin B1, deoxynivalenol (DON), ochratoxin A or zearalenone, and as a mixture of mycotoxins, to concentrations of 1, 10, and 25 times the maximum limits set by the European Commission for complete feed. This maximum limit is 0.02 mg/kg for aflatoxin B1, 5 mg/kg for DON, 0.5 mg/kg for zearalenone and 0.1 mg/kg for ochratoxin A. The mycotoxins and some of their metabolites were analysed in the larvae and residual material using a validated and accredited LC-MS/MS-based method. Metabolites considered were aflatoxicol, aflatoxin P1, aflatoxin Q1, and aflatoxin M1, 3-acetyl-DON, 15-acetyl-DON and DON-3-glycoside, and α- and β-zearalenol. No differences were observed between larvae reared on mycotoxins individually or as a mixture with regards to both larvae development and mycotoxin accumulation/excretion. None of the mycotoxins accumulated in the larvae and were only detected in BSF larvae several orders of magnitude lower than the concentration in feed. Mass balance calculations showed that BSF and LMW larvae metabolized the four mycotoxins to different extents. Metabolites accounted for minimal amounts of the mass balance, except for zearalenone metabolites in the BSF treatments, which accounted for an average maximum of 86% of the overall mass balance. Both insect species showed to excrete or metabolize the four mycotoxins present in their feed. Hence, safe limits for these mycotoxins in substrates to be used for these two insect species possibly could be higher than for production animals. However, additional analytical and toxicological research to fully understand the safe limits of mycotoxins in insect feed, and thus the safety of the insects, is required.
机译:这项研究旨在调查真菌毒素在小粉虫(Alphitobius diaperinus,LMW)和黑蝇(Hermetia illucens,BSF)幼虫中的潜在积累。饲料中添加了黄曲霉毒素B1,脱氧雪腐烯醇(DON),曲霉毒素A或玉米赤霉烯酮以及霉菌毒素的混合物,其浓度达到了欧盟委员会为完全饲料设定的最大限量的1、10和25倍。黄曲霉毒素B1的最大限量为0.02 mg / kg,DON为5 mg / kg,玉米赤霉烯酮为0.5 mg / kg,曲毒素A为0.1 mg / kg。使用幼虫和残留物质分析了真菌毒素及其某些代谢物一种经过验证和认可的基于LC-MS / MS的方法。所考虑的代谢产物为黄曲霉酚,黄曲霉毒素P1,黄曲霉毒素Q1和黄曲霉毒素M1、3-乙酰基DON,15-乙酰基DON和DON-3-糖苷以及α-和β-玉米赤霉烯醇。单独或混合使用霉菌毒素饲养的幼虫在幼虫发育和霉菌毒素积累/排泄方面均未见差异。没有一种真菌毒素在幼虫中积累,仅在比饲料中浓度低几个数量级的BSF幼虫中检测到。质量平衡计算表明,BSF和LMW幼虫在不同程度上代谢了四种霉菌毒素。代谢物占质量平衡的最少量,BSF处理中的玉米赤霉烯酮代谢物除外,后者占总体质量平衡的最大平均值为86%。两种昆虫都表明会排泄或代谢饲料中存在的四种霉菌毒素。因此,用于这两种昆虫物种的底物中这些霉菌毒素的安全极限可能高于生产动物。但是,还需要进行额外的分析和毒理学研究,以充分了解昆虫饲料中霉菌毒素的安全限量,从而保证昆虫的安全。

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