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Imbalance in the Blood Concentrations of Selected Steroids in Pre-pubertal Gilts Depending on the Time of Exposure to Low Doses of Zearalenone

机译:青春期前小母猪中某些类固醇的血药浓度不平衡取决于暴露于低剂量玉米赤霉烯酮的时间

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摘要

Zearalenone (ZEN) is a mycotoxin that not only binds to estrogen receptors, but also interacts with steroidogenic enzymes and acts as an endocrine disruptor. The aim of this study was to verify the hypothesis that low doses, minimal anticipated biological effect level (MABEL), no-observed-adverse-effect level (NOAEL) and lowest-adverse-effect level (LOAEL), of ZEN administered orally for 42 days can induce changes in the peripheral blood concentrations of selected steroid hormones (estradiol, progesterone and testosterone) in pre-pubertal gilts. The experiment was performed on 60 clinically healthy gilts with average BW of 14.5 ± 2 kg, divided into three experimental groups and a control group. Group ZEN5 animals were orally administered ZEN at 5 μg ZEN/kg BW, group ZEN10 — at 10 μg ZEN/kg BW, group ZEN15 — at 15 μg ZEN/kg BW, whereas group C received a placebo. Five gilts from every group were euthanized on analytical dates 1, 2 and 3 (days 7, 14 and 42 of the experiment). Qualitative and quantitative changes in the biotransformation of low ZEN doses were observed. These processes were least pronounced in group ZEN5 (MABEL dose) where ZEN metabolites were not detected on the first analytical date, and where β-ZEL was the predominant metabolite on successive dates. The above was accompanied by an increase in the concentration of estradiol (E ) which, together with “free ZEN”, probably suppressed progesterone (P ) and testosterone (T) levels.
机译:玉米赤霉烯酮(ZEN)是一种霉菌毒素,不仅与雌激素受体结合,而且还与类固醇生成酶相互作用,并充当内分泌干扰物。这项研究的目的是验证以下假设:低剂量,最低预期生物学效应水平(MABEL),无可观察到的不良反应水平(NOAEL)和最低不良反应水平(LOAEL),口服给予ZEN 42天可诱发青春期前小母猪所选类固醇激素(雌二醇,孕酮和睾丸激素)的外周血浓度变化。该实验在60头平均BW为14.5±2 kg的临床健康小母猪上进行,分为三个实验组和一个对照组。 ZEN5组动物以5μgZEN / kg BW口服ZEN,ZEN10组-以10μgZEN / kg BW进行口服,ZEN15组-以15μgZEN / kg BW进行口服,而C组接受安慰剂。在分析的第1、2和3天(实验的第7、14和42天)对每组五头小母猪实施安乐死。观察到低ZEN剂量生物转化的质和量变化。这些过程在ZEN5组(MABEL剂量)中最不明显,在第一个分析日期未检测到ZEN代谢物,而在连续数据中以β-ZEL为主要代谢物。上述情况伴随着雌二醇(E)浓度的增加,加上“游离ZEN”,可能抑制了孕酮(P)和睾丸激素(T)的水平。

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