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Fullerol C-60(OH)(24) nanoparticles and mycotoxigenic fungi: a preliminary investigation into modulation of mycotoxin production

机译:富烯醇C-60(OH)(24)纳米粒子和霉菌毒性真菌:对霉菌毒素生产调节的初步调查

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Increased use of fullerols in various fields and expected increase of their environmental spread impose the necessity for testing fullerol nanoparticles (FNP) effects on microbiota. There is little information available on the interaction of mycotoxigenic fungi and FNP, despite FNP having a great potential of modifying mycotoxin production. Namely, FNP exhibit both ROS-quenching and ROS-producing properties, while oxidative stress stimulates mycotoxin synthesis in the fungi. In order to shed some light on the extent of interaction between FNP and mycotoxigenic fungi, the effects of fullerol C-60(OH)(24) nanoparticles (10, 100, 1000 ng/mL) on mycelial growth, aflatoxin production and oxidative stress modulation in an aflatoxigenic strain of Aspergillus flavus (NRRL 3251) during 168 h of incubation in a liquid culture medium were examined. FNP slightly reduced mycelial biomass weight, but significantly decreased aflatoxin concentration in media. Lipid peroxide content, superoxide dismutase, catalase and glutathione peroxidase activities suggest that FNP treatments hormetically reduced oxidative stress within fungal cells in turn suppressing aflatoxin production. These findings contribute to the assessment of environmental risk and application potential of fullerols.
机译:在各个领域的富含富含溶胶的使用增加,预期的环境蔓延的增加施加了对微生物群进行测试的富勒醇纳米颗粒(FNP)作用的必要性。尽管FNP具有改性霉菌毒素的潜力有很大的潜力,但霉菌毒性真菌和FNP的相互作用很少有信息。即,FNP表现出ROS淬火和生产性质,而氧化应激刺激真菌中的霉菌毒素合成。为了在FNP和霉菌氧基真菌之间的相互作用程度上阐明,富勒醇C-60(OH)(24)纳米颗粒(10,100,100ng / mL)对菌丝生长,黄曲霉毒素产生和氧化应激的影响研究了在168小时内在液体培养基中孵育的168小时内曲霉毒素(NRRL 3251)中的调制。 FNP略微降低菌丝体体重,但在培养基中显着降低了黄曲霉毒素浓度。脂质过氧化物含量,超氧化物歧化酶,过氧化氢酶过氧化物酶活性表明,FNP治疗依次抑制真菌细胞内的氧化应激抑制抑制黄曲霉毒素的产生。这些调查结果有助于评估富集的环境风险和应用潜力。

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