首页> 外文期刊>Journal of Food Composition and Analysis >Influence of pro- and prebiotics on gastric, duodenal and colonic bioaccessibility of the mycotoxin beauvericin.
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Influence of pro- and prebiotics on gastric, duodenal and colonic bioaccessibility of the mycotoxin beauvericin.

机译:益生元和益生元对霉菌毒素金霉素的胃,十二指肠和结肠生物可及性的影响。

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摘要

Beauvericin (BEA) is a bioactive compound produced by the secondary metabolism of several Fusarium strains and known to have various biological activities. This study investigates the influence of several dietary fibers (galactomanan, glucomannan, citrus fiber, bamboo fiber, carrot fiber, pie fiber, beta -glucan, xilan, and cellulose) and probiotic strains (Lactobacillus animalis, Lb. casei, Lb. casei, Lb. plantarum, Lb. rhuminis, Lb. casei casei, Bifidobacterium breve, Bf. Adolescents, Bf. bifidum, Corynebacterium vitaeruminis, Streptococcus faecalis, Eubacterium crispatus, and Saccharomyces cerevisiae) on the minor Fusarium mycotoxin BEA bioaccessibility employing a model solution. The bioaccessibility was determined using a simulated gastrointestinal digestion that mimics the physiological conditions of the digestive tract until the colonic compartment. The determination of BEA in the intestinal fluids was carried out by liquid chromatography-mass spectrometry detection (LC-MS). The reduction of BEA bioaccessibility in the experiments carried out using the prebiotic compounds ranged from 60 to 80%, whereas in the trials carried out using the probiotic strains the bioaccessibility observed ranged from 30 to 85%. A BEA degradation product produced by colonic fermentation was identified using the technique of LC-MS-LIT.
机译:白霉素(BEA)是一种生物活性化合物,由几种镰刀菌菌株的二次代谢产生,并且已知具有多种生物活性。这项研究调查了几种膳食纤维(半乳聚糖,葡甘露聚糖,柑桔纤维,竹纤维,胡萝卜纤维,派纤维,β-葡聚糖,锡兰和纤维素)和益生菌菌株(动物乳酸杆菌,干酪乳杆菌,干酪乳杆菌,在次要镰刀菌真菌毒素模型BEA生物可及性上,在小镰刀菌上使用植物乳杆菌,大黄杆菌,干酪乳杆菌,短双歧杆菌,青少年Bf。使用模拟胃肠道直至结肠区室的生理条件的胃肠消化来确定生物可及性。通过液相色谱-质谱检测(LC-MS)进行肠液中BEA的测定。在使用益生元化合物进行的实验中,BEA的生物利用度降低了60%至80%,而在使用益生菌菌株进行的试验中,观察到的生物利用度在30%至85%的范围内。使用LC-MS-LIT技术鉴定了通过结肠发酵产生的BEA降解产物。

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