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首页> 外文期刊>Applied and Environmental Microbiology >Binding Rather Than Metabolism May Explain the Interaction of Two Food-Grade Lactobacillus Strains with Zearalenone and Its Derivative ɑ?-Zearalenol
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Binding Rather Than Metabolism May Explain the Interaction of Two Food-Grade Lactobacillus Strains with Zearalenone and Its Derivative ɑ?-Zearalenol

机译:结合而不是代谢可能解释了两个食品级乳酸菌菌株与玉米赤霉烯酮及其衍生物ɑ?-烯丙烯醇的相互作用

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The interaction between two Fusarium mycotoxins, zearalenone (ZEN) and its derivative ?-zearalenol (?-ZOL), with two food-grade strains of Lactobacillus was investigated. The mycotoxins (2 μg ml?1) were incubated with either Lactobacillus rhamnosus strain GG or L. rhamnosus strain LC705. A considerable proportion (38 to 46%) of both toxins was recovered from the bacterial pellet, and no degradation products of ZEN and ?-ZOL were detected in the high-performance liquid chromatograms of the supernatant of the culturing media and the methanol extract of the pellet. Both heat-treated and acid-treated bacteria were capable of removing the toxins, indicating that binding, not metabolism, is the mechanism by which the toxins are removed from the media. Binding of ZEN or ?-ZOL by lyophilized L. rhamnosus GG and L. rhamnosus LC705 was a rapid reaction: approximately 55% of the toxins were bound instantly after mixing with the bacteria. Binding was dependent on the bacterial concentration, and coincubation of ZEN with ?-ZOL significantly affected the percentage of the toxin bound, indicating that these toxins may share the same binding site on the bacterial surface. These results can be exploited in developing a new approach for detoxification of mycotoxins from foods and feeds.
机译:研究了两种镰刀菌霉菌毒素玉米赤霉烯酮(ZEN)及其衍生物β-玉米赤霉烯醇(β-ZOL)与两种食品级乳酸杆菌的相互作用。将霉菌毒素(2μg/ ml)与鼠李糖乳杆菌菌株GG或鼠李糖乳杆菌LC705一起温育。从细菌沉淀物中回收了相当大比例的两种毒素(38%至46%),并且在培养基和甲醇提取物上清液的高效液相色谱图中未检测到ZEN和β-ZOL的降解产物。颗粒。热处理细菌和酸处理细菌都能够去除毒素,这表明从培养基中去除毒素的机制是结合而不是代谢。冻干的鼠李糖乳杆菌GG和鼠李糖乳杆菌LC705与ZEN或β-ZOL的结合是快速反应:与细菌混合后立即结合约55%的毒素。结合取决于细菌的浓度,ZEN与β-ZOL的共孵育显着影响了结合毒素的百分比,表明这些毒素可能在细菌表面上共享相同的结合位点。这些结果可用于开发一种从食物和饲料中解毒真菌毒素的新方法。

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