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Studies on the Bioavailability of Deoxynivalenol (DON) and DON Sulfonate (DONS) 1 2 and 3 in Pigs Fed with Sodium Sulfite-Treated DON-Contaminated Maize

机译:用亚硫酸钠处理过的受DON污染的玉米饲喂的猪中脱氧雪腐酚(DON)和DON磺酸盐(DONS)1、2和3的生物利用度的研究

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摘要

Deoxynivalenol (DON) exposure of pigs might cause serious problems when critical dietary toxin concentrations are exceeded. As DON contamination of agricultural crops cannot be completely prevented, detoxification measures are needed. Wet preservation with sodium sulfite resulted in a significant DON reduction of naturally-contaminated maize in previous experiments. The preserved material had a characteristic DON sulfonates (DONS) pattern. DONS is known to be less toxic than DON but its stability was shown to depend on pH, which gives rise to the question if a back-conversion to DON occurs in vivo. Therefore, the toxicokinetics and bioavailability of DON and DONS were studied in pigs. After the administration of a single oral or intravenous bolus of DON or DONS, serial blood samples were collected and subsequently analyzed. DONS was not detectable after oral administration of DONS mixtures. The results showed further that the bioavailability of DONS as DON in pigs fed maize preserved wet with sodium sulfite was significantly decreased compared to untreated control maize (DON), indicating that DONS obviously did not convert back to DON to a large extent in vivo. Moreover, the fact that DONS was not detectable in systemic blood requires further investigations regarding their ingestive and/or metabolic fate.
机译:超过临界饮食毒素浓度时,暴露于猪中的脱氧雪腐烯醇(DON)可能会引起严重的问题。由于不能完全防止DON污染农作物,因此需要采取排毒措施。在先前的实验中,用亚硫酸钠湿润保存可显着减少自然污染玉米的DON含量。保存的材料具有特征性的DON磺酸盐(DONS)模式。已知DONS的毒性低于DON,但已证明其稳定性取决于pH值,这引发了一个问题,即体内是否发生向DON的反向转化。因此,研究了猪中DON和DONS的毒代动力学和生物利用度。在单次口服或静脉推注DON或DONS后,收集系列血样,然后进行分析。口服DONS混合物后无法检测到DONS。结果进一步表明,与未经处理的对照玉米(DON)相比,用亚硫酸钠湿润保存的玉米饲喂的猪中DONS作为DON的生物利用度显着降低,表明DONS在体内显然不会大量转化回DON。此外,在全身血液中无法检测到DONS的事实需要进一步研究其摄入和/或代谢命运。

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