Luo Xiaohu, Wang Ren, Wang Li, Li Yongfu, Wang Yong, Chen Zhengxing
State Key Laboratory of Food Science and Technology, National Engineering Laboratory for Cereal Fermentation Technology, School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu, 214122, China.
J Sci Food Agric. 2014 Aug;94(11):2253-8. doi: 10.1002/jsfa.6550. Epub 2014 Jan 24.
Corn, which is one of most important agricultural products worldwide, is prone to pollution by aflatoxins (AFs) in many areas, thus seriously jeopardizing human health and threatening economic growth. This study evaluated the effects of ozone on the detoxification of AFs in corn flour (CF) and the moisture content (MC) thereof.
The detoxifying effects of ozone on CF became more obvious as the ozone concentration and exposure time increased. After CF was treated with 75 mg L(-1) ozone for 60 min, the contents of AFB1 , AFG1 and AFB2 decreased from 53.60, 12.08 and 2.42 µg kg(-1) to 11.38, 3.37 and 0.71 µg kg(-1) , respectively, which are lower than the maximum limits of AFB1 , AFG1 , AFB2 and total AFs (20 µg kg(-1) ) for CF regulated by the Chinese government. Ozonation significantly affected the MC of CF, and ozone at a higher concentration decreased the MC more drastically. After CF was exposed to 15, 30, 45 and 75 mg L(-1) ozone for 60 min, the MC of CF decreased from 17.4% to below 15%, fulfilling the long-period storage requirements for CF.
Ozone is potentially applicable in effectively degrading the AFs in CF and in greatly decreasing the MC of CF.
玉米是全球最重要的农产品之一,在许多地区容易受到黄曲霉毒素(AFs)污染,从而严重危害人类健康并威胁经济增长。本研究评估了臭氧对玉米粉(CF)中AFs解毒作用及其水分含量(MC)的影响。
随着臭氧浓度和暴露时间增加,臭氧对CF的解毒作用愈发明显。CF用75 mg L(-1)臭氧处理60分钟后,AFB1、AFG1和AFB2的含量分别从53.60、12.08和2.42 µg kg(-1)降至11.38、3.37和0.71 µg kg(-1),均低于中国政府规定的CF中AFB1、AFG1、AFB2和总AFs的最大限量(20 µg kg(-1))。臭氧化显著影响CF的MC,较高浓度的臭氧更显著降低MC。CF暴露于15、30、45和75 mg L(-1)臭氧60分钟后,CF的MC从17.4%降至15%以下,满足CF的长期储存要求。
臭氧在有效降解CF中的AFs以及大幅降低CF的MC方面具有潜在应用价值。