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Identification and toxicological analysis of products of patulin degradation by Pichia caribbica

机译:Pichia Caribbica的鉴定产品鉴定和毒理学分析

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Increasing patulin contamination in fruits and fruit-derived products has become a major challenge for the food industry. Biological methods of patulin control have an important role to play owing to their safety and efficiency. In this study, we used the yeast Pichia caribbica to degrade patulin effectively. The intermediate degradation products of patulin by P. caribbica were identified as (E)- and (Z)-ascladiol using high performance liquid chromatography and liquid chromatography-tandem mass spectroscopy. Only (E)-ascladiol was detected in the products of patulin degradation by intracellular enzymes. Toxic analyses on Escherichia coli Top10 cells, Arabidopsis thaliana, and human esophageal epithelial cells (Het-1a) showed that the intermediate degradation product ascladiol and the final degradation products were significantly less toxic and almost non-toxic compared to patulin (p & 0.05), respectively. Furthermore, toxicological analysis revealed that ascladiol and the final degradation products induced very little reactive oxygen species accumulation in Het-la cells. Further toxicological analysis revealed that ascladiol and the final degradation products induced cell apoptosis to a lesser extent and did not significantly inhibit cell proliferation (p & 0.05) compared to patulin. Analysis of the characteristics and toxicity of the degradation products of patulin by P. caribbica demonstrate that ascladiol is less toxic and the final degradation products are not poisonous, therefore patulin detoxification strategies using P. caribbica are good approaches to limit the patulin risks.
机译:饲养水果和水果衍生产品中的参林污染增加已成为食品工业的主要挑战。由于它们的安全性和效率,Patulin控制的生物学方法具有重要作用。在这项研究中,我们使用酵母Pichia Caribbica能有效降解鉴定糖苷。通过高效液相色谱和液相色谱 - 串联质谱鉴定为(e) - 和(Z)-Ascladiol,鉴定P. Caribbica的中间降解产物。仅通过细胞内酶检测到髌粉酶劣化产品中的仅(e)-Ascladiol。对大肠杆菌TOP10细胞,拟南芥和人食管上皮细胞(HET-1A)的毒性分析表明,与鉴定(P& LT)相比,中间降解产物Ascladiol和最终降解产物显着降低且几乎无毒。 ; 0.05)分别。此外,毒理学分析表明,Ascladiol和最终降解产物诱导了HET-LA细胞中非常小的活性氧物质积累。进一步的毒理学分析表明,与鉴定相比,Ascladiol和最终降解产物诱导细胞凋亡并没有显着抑制细胞增殖(P& 0.05)。 P. Caribbica的鉴定产物的特性和毒性分析表明,Ascladiol对毒性较小,最终降解产物并不有毒,因此使用P. Caribbica的鉴定解毒策略是良好的方法,以限制鉴定鉴定性的良好方法。

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