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Measurement of urinary zearalenone concentrations for monitoring natural feed contamination in cattle herds: On-farm trials

机译:测量尿中玉米赤霉烯酮浓度以监测牛群中天然饲料的污染:农场试验

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摘要

The aims of the present study were to investigate the efficacy of measuring bovine urinary zearalenone (ZEN) concentrations by using a commercially available ELISA method in cattle kept under different feeding conditions to monitor the natural contamination of feeds at the farm level, and to investigate the effects of supplementation of a mycotoxin adsorbent (MA) product in the feed based on urinary ZEN concentration. First, Japanese Black cattle herds kept for breeding (4 herds) and fattening (4 herds) purposes were provided with similar feeding conditions. Then, urinary samples from 5 cows in each herd were collected and analyzed. Second, dairy cows from 1 herd fed with total mixed rations (TMR) were selected. After thorough mixing of the MA (40 g/d) with TMR, the supplemented TMR was fed according to the following schedule: with MA for 2 wk, without MA for 3 wk; then with MA for 2 wk and without MA for 6 wk. Urine samples were collected from cows (n = 6 to 7) and examined before and after each interval. Zearalenone concentrations were measured by the ELISA and liquid chromatography-tandem mass spectrometry methods. The concentration of ZEN and its metabolites was expressed after creatinine (Crea) correction [ ZEN or metabolites (pg/mL)/Crea (mg/dL); pg/mg of Crea]. In the first experiment, the urinary concentrations of ZEN and its metabolites were variable in all herds, and significant differences were observed between herds. In 1 fattening herd, in particular, urinary ZEN concentrations were greater (P < 0.001) than in the other 3 herds. This might reflect significant natural ZEN contamination of the feed at the farm level. In Exp. 2, urinary ZEN concentrations displayed peculiar trends after supplementation with MA. After 2 wk of supplementation, a significant decrease of ZEN (P < 0.05) was observed. Zearalenone concentrations remained at a reduced amount during 3 wk without MA supplementation and 2 wk with MA supplementation. When MA was not added to the feed for the next 6 wk, the concentrations increased to the original quantity. These findings indicate the usefulness of measuring concentrations of urinary ZEN and its metabolites not only for monitoring the natural ZEN contamination of cattle feed at the farm level but also for in vivo evaluation of MA function after supplementing feeds with MA.
机译:本研究的目的是研究使用市售ELISA方法在不同饲养条件下饲养的牛中测量牛尿玉米赤霉烯酮(ZEN)浓度的功效,以监测农场水平上饲料的自然污染,并调查尿中ZEN浓度的饲料中添加霉菌毒素吸附剂(MA)产品的效果。首先,为日本黑牛群饲养(4头)和育肥(4头)提供了相似的饲养条件。然后,收集并分析每组中5头母牛的尿液样本。其次,从饲喂了总混合日粮(TMR)的1个牛群中选择奶牛。在将MA(40 g / d)与TMR彻底混合后,根据以下时间表喂入补充的TMR:MA为2 wk,无MA为3 wk;然后使用MA 2周,不使用MA 6周。从奶牛(n = 6至7)收集尿液样本,并在每个间隔之前和之后进行检查。玉米赤霉烯酮浓度通过ELISA和液相色谱-串联质谱法测量。肌酐(Crea)校正后表示ZEN及其代谢物的浓度[ZEN或代谢物(pg / mL)/ Crea(mg / dL); pg / mg的Crea]。在第一个实验中,ZEN及其代谢物的尿液浓度在所有猪群中都是可变的,并且在各个猪群之间观察到显着差异。特别是在1个育肥猪群中,尿中的ZEN浓度高于其他3个育肥猪(P <0.001)。这可能反映了农场水平上饲料的天然ZEN大量污染。在实验中如图2所示,补充MA后尿ZEN浓度呈现出独特的趋势。补充2周后,ZEN显着下降(P <0.05)。在不添加MA的3周和添加MA的2周期间,玉米赤霉烯酮浓度保持降低的量。在接下来的6周内未将MA添加到饲料中时,浓度增加到原始量。这些发现表明,测量尿中ZEN及其代谢物的浓度不仅可用于监测农场水平上牛饲料的天然ZEN污染,而且还可用于在饲料中添加MA后体内评估MA功能。

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