4.7 Article

Assessment of Food By-Products' Potential for Simultaneous Binding of Aflatoxin B1 and Zearalenone

期刊

TOXINS
卷 13, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/toxins13010002

关键词

mycotoxins; food by-products; grape seed meal; seabuckthorn meal; waste recycling; decontamination; adsorption

资金

  1. Romanian Ministry of Research and Innovation [PN III-8PCCDI]

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This study found that grape seed meal (GSM) and seabuckthorn meal (SBM) exhibited the most promising binding capacity for AFB1 and ZEA among eight food-derived by-products investigated as biosorbent approaches. The optimal settings for experimental factors and different specificity for the binary-mycotoxin system were also determined. Overall, GSM showed higher binding capacity compared to SBM, suggesting that they are viable alternatives to commercial biosorbent products.
In this study, eight food by-products were investigated as biosorbent approaches in removing mycotoxin load towards potential dietary inclusion in animal feed. Among these food-derived by-products, grape seed (GSM) and seabuckthorn (SBM) meals showed the most promising binding capacity for Aflatoxin B1 (AFB1) and Zearalenone (ZEA), measured as percent of adsorbed mycotoxin. Furthermore, we explored the mycotoxin sequestering potential by screening the effect of time, concentration, temperature and pH. Comparative binding efficacy was addressed by carrying out adsorption experiments in vitro. The highest mycotoxin adsorption was attained using 30 mg of by-product for both GSM (85.9% AFB1 and 83.7% ZEA) and SBM (68% AFB1 and 84.5% ZEA). Optimal settings for the experimental factors were predicted employing the response surface design. GSM was estimated to adsorb AFB1 optimally at a concentration of 29 mg/mL, pH 5.95 and 33.6 degrees C, and ZEA using 28 mg/mL at pH 5.76 and 31.7 degrees C. Favorable adsorption of AFB1 was estimated at 37.5 mg of SBM (pH 8.1; 35.6 degrees C), and of ZEA at 30.2 mg of SBM (pH 5.6; 29.3 degrees C). Overall, GSM revealed a higher binding capacity compared with SBM. In addition, the two by-products showed different specificity for the binary-mycotoxin system, with SBM having higher affinity towards ZEA than AFB1 (K-f = 0.418 and 1/n = 0.213 vs. K-f = 0.217 and 1/n = 0.341) and GSM for AFB1 in comparison with ZEA (K-f = 0.367 and 1/n = 0.248 vs. K-f = 0.343 and 1/n = 0.264). In conclusion, this study suggests that GSM and SBM represent viable alternatives to commercial biosorbent products.

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