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分散型 MoS 纳米片和纳米银共存对酵母代谢组的影响。

Effects of dispersible MoS nanosheets and Nano-silver coexistence on the metabolome of yeast.

机构信息

College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing 211800, China.

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing 211800, China.

出版信息

Chemosphere. 2018 May;198:216-225. doi: 10.1016/j.chemosphere.2018.01.140. Epub 2018 Feb 6.

Abstract

As a new rising star in the post-graphene two-dimensional materials (2DMs), molybdenum disulfide (MoS) attracts increasing attentions and is widely applied. However, the chemical and toxicological interaction between MoS and other co-contaminants is still poorly understood. Nano-silver (N-Ag) is the most commonly used nanomaterial in commercial products and distributed widely in the environment. Herein, we investigated the effects of chitosan functionalized MoS (CS-MoS) nanosheets, a water-dispersible form of MoS, on the microbial toxicity of N-Ag. We found that the incorporation of CS-MoS nanosheets attenuated the oxidative stress induced by N-Ag on yeast cells, while caused more membrane stress. In addition, the inhibition of N-Ag on the metabolic activities of yeast cells could be attenuated by CS-MoS nanosheets as well. The coexistence of N-Ag and CS-MoS nanosheets mainly perturbed the amino acid-related metabolic pathways in yeast cells, and phosphoric acid was a potential nanotoxicity biomarker. We further found that CS-MoS nanosheets dramatically absorbed the Ag ion released from N-Ag, which might be responsible for its attenuation effect on the microbial toxicity of N-Ag. Our findings provide more new insights for the ecotoxicity evaluation of MoS and other 2DMs.

摘要

作为后石墨烯二维材料(2DMs)中的一颗新星,二硫化钼(MoS)吸引了越来越多的关注,并得到了广泛的应用。然而,MoS 与其他共存污染物之间的化学和毒理学相互作用仍知之甚少。纳米银(N-Ag)是商业产品中最常用的纳米材料,广泛分布于环境中。在此,我们研究了壳聚糖功能化 MoS(CS-MoS)纳米片对 N-Ag 微生物毒性的影响,CS-MoS 纳米片是 MoS 的一种水分散形式。我们发现,CS-MoS 纳米片的加入减弱了 N-Ag 对酵母细胞的氧化应激,但引起了更多的膜应激。此外,CS-MoS 纳米片也能减弱 N-Ag 对酵母细胞代谢活性的抑制作用。N-Ag 和 CS-MoS 纳米片的共存主要扰乱了酵母细胞中与氨基酸相关的代谢途径,磷酸是一种潜在的纳米毒性生物标志物。我们进一步发现,CS-MoS 纳米片能显著吸附 N-Ag 释放的 Ag 离子,这可能是其减弱 N-Ag 微生物毒性的原因。我们的研究结果为 MoS 和其他 2DMs 的生态毒性评价提供了更多新的见解。

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