School of Food and Advanced Technology, Massey University, New Zealand.
School of Food and Advanced Technology, Massey University, New Zealand.
Food Chem. 2022 Aug 30;386:132814. doi: 10.1016/j.foodchem.2022.132814. Epub 2022 Mar 25.
Cold plasma has potential for the degradation of aflatoxins in corn and hazelnuts; however, this has not been demonstrated for aflatoxin in milk. In this study, the efficacy of high voltage atmospheric cold plasma (HVACP) on the reduction of aflatoxin M1 (AFM1) in skim milk improved with increasing treatment times (1-20 min), using gas containing 65% oxygen (MA65) rather than air, increasing voltage (60-80 kV) and reducing sample volume (30 mL-10 mL). Direct treatment was more effective than indirect treatment. AFM1 in milk was degraded by 65.0 % and 78.9 % by air and MA65 respectively in 20 min with no change in milk colour. The toxicity of AFM1 after treatment was assessed using a brine shrimp model. A five-minute HVACP treatment reduced the toxicity of AFM1 by 83.9 % based on the increase in brine shrimp survival. HVACP is a promising method to reduce AFM1 in milk.
冷等离子体有望降解玉米和榛子中的黄曲霉毒素;然而,这尚未在牛奶中的黄曲霉毒素中得到证实。在这项研究中,使用含 65%氧气(MA65)而不是空气的气体、增加电压(60-80kV)和减少样品体积(30mL-10mL),可以提高高压大气压冷等离子体(HVACP)对脱脂牛奶中黄曲霉毒素 M1(AFM1)减少的功效随着处理时间(1-20 分钟)的增加而增加。直接处理比间接处理更有效。在 20 分钟内,空气和 MA65 分别将牛奶中的 AFM1 降解了 65.0%和 78.9%,而牛奶颜色没有变化。采用盐水虾模型评估了处理后 AFM1 的毒性。基于盐水虾存活率的增加,HVACP 处理 5 分钟可将 AFM1 的毒性降低 83.9%。HVACP 是一种很有前途的降低牛奶中 AFM1 的方法。