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In Silico and In Vitro Studies of Mycotoxins and Their Cocktails; Their Toxicity and Its Mitigation by Silibinin Pre-Treatment

机译:真菌毒素及其鸡尾酒的计算机和体外研究;水飞蓟宾预处理对它们的毒性及其缓解

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摘要

Mycotoxins found in randomly selected commercial milk thistle dietary supplement were evaluated for their toxicity in silico and in vitro. Using in silico methods, the basic physicochemical, pharmacological, and toxicological properties of the mycotoxins were predicted using ACD/Percepta. The in vitro cytotoxicity of individual mycotoxins was determined in mouse macrophage (RAW 264.7), human hepatoblastoma (HepG2), and human embryonic kidney (HEK 293T) cells. In addition, we studied the bioavailability potential of mycotoxins and silibinin utilizing an in vitro transwell system with differentiated human colon adenocarcinoma cells (Caco-2) simulating mycotoxin transfer through the intestinal epithelial barrier. The IC values for individual mycotoxins in studied cells were in the biologically relevant ranges as follows: 3.57–13.37 nM (T-2 toxin), 5.07–47.44 nM (HT-2 toxin), 3.66–17.74 nM (diacetoxyscirpenol). Furthermore, no acute toxicity was obtained for deoxynivalenol, beauvericin, zearalenone, enniatinENN-A, enniatin-A1, enniatin-B, enniatin-B1, alternariol, alternariol-9-methyl ether, tentoxin, and mycophenolic acid up to the 50 nM concentration. The acute toxicity of these mycotoxins in binary combinations exhibited antagonistic effects in the combinations of T-2 with DON, ENN-A1, or ENN-B, while the rest showed synergistic or additive effects. Silibinin had a significant protective effect against both the cytotoxicity of three mycotoxins (T-2 toxin, HT-2 toxin, DAS) and genotoxicity of AME, AOH, DON, and ENNs on HEK 293T. The bioavailability results confirmed that AME, DAS, ENN-B, TEN, T-2, and silibinin are transported through the epithelial cell layer and further metabolized. The bioavailability of silibinin is very similar to mycotoxins poor penetration.
机译:对随机选择的商业奶蓟类膳食补充剂中发现的霉菌毒素在计算机和体外进行了毒性评估。使用计算机方法,使用ACD / Percepta预测了霉菌毒素的基本理化,药理和毒理特性。在小鼠巨噬细胞(RAW 264.7),人肝母细胞瘤(HepG2)和人胚肾(HEK 293T)细胞中测定了个别真菌毒素的体外细胞毒性。此外,我们利用体外transwell系统模拟了霉菌毒素通过肠上皮屏障的转移,利用体外transwell系统研究了霉菌毒素和水飞蓟宾的生物利用度潜力,该系统具有分化的人结肠腺癌细胞(Caco-2)。被研究细胞中单个霉菌毒素的IC值在生物学上相关的范围如下:3.57–13.37 nM(T-2毒素),5.07–47.44 nM(HT-2毒素),3.66–17.74 nM(二乙酰氧基松柏醇)。此外,直至浓度为50 nM的脱氧雪腐烯酚,博韦霉素,玉米赤霉烯酮,烯丙胺酸ENN-A,烯丙胺酸-A1,烯丙胺酸-B,烯丙胺酸-B1,交替烯丙醇,交替烯丙醇-9-甲醚,腱毒素和霉酚酸均未获得急性毒性。 。这些真菌毒素的二元组合的急性毒性在T-2与DON,ENN-A1或ENN-B的组合中表现出拮抗作用,而其余的则表现出协同或累加作用。水飞蓟宾对三种真菌毒素(T-2毒素,HT-2毒素,DAS)的细胞毒性以及AME,AOH,DON和ENNs对HEK 293T的遗传毒性均具有显着的保护作用。生物利用度结果证实,AME,DAS,ENN-B,TEN,T-2和水飞蓟宾通过上皮细胞层转运并进一步代谢。水飞蓟宾的生物利用度与霉菌毒素渗透性差非常相似。

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