Evaluation of UV-A LED technology on the reduction of spiked aflatoxin B1and aflatoxin M1in whole milk: toxicity analysis using liver hepatocellular cells

黄曲霉毒素 细胞毒性 辐照 化学 食品科学 致癌物 色谱法 体外 生物化学 物理 核物理学
作者
Anjali H. Kurup,Ankit Patras,Brahmaiah Pendyala,Matthew J. Vergne,Rishipal R. Bansode
出处
期刊: [Cold Spring Harbor Laboratory]
标识
DOI:10.1101/2021.03.14.435353
摘要

Abstract The effectiveness of a UV-A light emitting diode system (LED) to reduce the concentrations of aflatoxin B 1 , aflatoxin M 1 (AFB 1 , AFM 1 ) in whole milk (WM) was investigated. Irradiation experiments were conducted using an LED system operating at 365 nm. Known concentrations of aflatoxins were spiked in WM and irradiated at quantified UV doses which was calculated based on the average volumetric intensity. LC-MS/MS product ion scans were used to identify and semi-quantify photodegraded products of AFB 1 and AFM 1 . It was observed that UV irradiation significantly reduced aflatoxins in WM, p<0.05. In comparison to control, the maximum UV-A exposure reduced AFB 1 and AFM 1 concentrations to 78.2 ± 2.36 % (at 836 mJ/cm 2 ) and 65.7 ± 1.65% (at 857 mJ/cm 2 ), respectively. In cell culture studies, our results demonstrated that the increase of UV-A dosage decreased the aflatoxins-induced cytotoxicity in HepG2 cells, and no significant aflatoxin-induced cytotoxicity was observed at highest given UV-A irradiation of 777 (AFB 1 ), 838 (AFM 1 ), and 746 (total AFs) mJ/cm 2 . Sensory quality of product, cytotoxicity, and mutagenicity of UV exposed aflatoxins in WM using animal models is warranted in the future.
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