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镰刀菌霉菌毒素组合对Caco-2细胞中大分子合成的抑制、丙二醛水平、DNA甲基化与片段化以及细胞活力的影响。

Effects of combinations of Fusarium mycotoxins on the inhibition of macromolecular synthesis, malondialdehyde levels, DNA methylation and fragmentation, and viability in Caco-2 cells.

作者信息

Kouadio James H, Dano Sébastien D, Moukha Serge, Mobio Théophile A, Creppy Edmond E

机构信息

Departement of Toxicology, University of Bordeaux 2, 146, rue Léo Saignat, 33076 Bordeaux, France.

出版信息

Toxicon. 2007 Mar 1;49(3):306-17. doi: 10.1016/j.toxicon.2006.09.029. Epub 2006 Oct 11.

Abstract

We studied the interactive effects of either binary or tertiary mixtures of Fusarium mycotoxins, deoxynivalenol (DON), zearalenone (ZEA), and fumonisin B1 (FB1) on the human intestinal cell line, Caco-2, using the endpoints including malonedialdehyde (MDA) production, inhibition of protein and DNA syntheses, DNA methylation, DNA fragmentation, and cell viability as measured by the neutral red (NR) test. The mixtures of mycotoxins reduce cellular viability in increasing order: [FB1+ZEA]<[FB1+DON]<[ZEA+DON]<[FB1+DON+ZEA] in NR test. Because FB1 antagonizes the effects of estrogenic Zearalenone, FB1 was assayed against estradiol. In NR assay, mixture of FB1 and estradiol and/or ZEA improves Caco-2 cells viability in contrast to individual effects. Mixtures of ZEA or FB1 and DON, display synergistic effects in lipid peroxidation. The ability of the toxins to inhibit DNA synthesis is 45%, 70%, and 43% for 10 microM of ZEA, DON, and FBI, respectively. Their binary mixtures (at 10 microM each), inhibit DNA synthesis by 35%, 62%, and 65%, far less than additive effects. Surprisingly, the tertiary mixture (10 microM each) only inhibits DNA synthesis by 25%. ZEA, DON, and FB1 induce DNA fragmentation individually. However, mixtures of these mycotoxins always damage DNA to a greater extent. Each individual mycotoxin (10 microM) raises the percentage of 5-methylcytosine (m5dC) in DNA from 4.5% to 9%, while the combination does not increase this rate any further. Altogether, the data indicate that mixtures of Fusarium toxins are able to induce lipid peroxidation, DNA damage, DNA fragmentation, DNA methylation, and cytotoxicity in Caco-2 cells, and suggest a potential promoter effect in human intestinal cells.

摘要

我们使用包括丙二醛(MDA)生成、蛋白质和DNA合成抑制、DNA甲基化、DNA片段化以及通过中性红(NR)试验测定的细胞活力等终点指标,研究了镰刀菌霉菌毒素脱氧雪腐镰刀菌烯醇(DON)、玉米赤霉烯酮(ZEA)和伏马菌素B1(FB1)的二元或三元混合物对人肠道细胞系Caco-2的交互作用。在NR试验中,霉菌毒素混合物以递增顺序降低细胞活力:[FB1+ZEA]<[FB1+DON]<[ZEA+DON]<[FB1+DON+ZEA]。由于FB1拮抗雌激素性玉米赤霉烯酮的作用,因此对FB1与雌二醇进行了测定。在NR试验中,与单独作用相比,FB1与雌二醇和/或ZEA的混合物提高了Caco-2细胞的活力。ZEA或FB1与DON的混合物在脂质过氧化中表现出协同作用。对于10微摩尔的ZEA、DON和FBI,毒素抑制DNA合成的能力分别为45%、70%和43%。它们的二元混合物(各10微摩尔)抑制DNA合成的比例为35%、62%和65%,远低于加和效应。令人惊讶的是,三元混合物(各10微摩尔)仅抑制DNA合成25%。ZEA、DON和FB1单独诱导DNA片段化。然而,这些霉菌毒素的混合物总是在更大程度上损伤DNA。每种单独的霉菌毒素(10微摩尔)使DNA中5-甲基胞嘧啶(m5dC)的百分比从4.5%提高到9%,而组合并未进一步提高该比率。总体而言,数据表明镰刀菌毒素混合物能够在Caco-2细胞中诱导脂质过氧化、DNA损伤、DNA片段化、DNA甲基化和细胞毒性,并提示在人肠道细胞中可能存在促癌效应。

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