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胞外多聚物在厌氧颗粒污泥应对不同金属氧化物纳米颗粒毒性响应中的作用。

The Role of Extracellular Polymeric Substances in the Toxicity Response of Anaerobic Granule Sludge to Different Metal Oxide Nanoparticles.

机构信息

Tianjin Research Institute for Water Transport Engineering, M. O. T, Tianjin 300000, China.

College of Environment and Ecology, Chongqing University, Chongqing 400045, China.

出版信息

Int J Environ Res Public Health. 2022 Apr 28;19(9):5371. doi: 10.3390/ijerph19095371.

Abstract

Wastewater treatment plants (WWTP) are regarded as the last barriers for the release of incompletely separated and recycled nanoparticles (NPs) into the environment. Despite the importance and ubiquity of microbial extracellular polymeric substances (EPSs) in the complex wastewater matrix, the interaction between NPs and EPSs of anaerobic microflora involved in wastewater treatment and the resultant impact on the biomass metabolomics are unclear. Thus, the impacts of different metal oxide (TiO, ZnO, and CuO) NPs on functional bacteria in anaerobic granular sludge (AGS) and the possible toxicity mechanisms were investigated. In particular, the binding quality, enhanced resistance mechanism, and chemical fractional contribution of EPSs from AGS against the nanotoxicity of different NPs was assessed. The results showed that CuO NPs caused the most severe inhibition towards acetoclastic and hydrogenotrophic methanogens, followed by ZnO NPs, whereas TiO NPs caused no inhibition to methanogenesis. Excessive EPS production, especially the protein-like substances, was an effective strategy for reducing certain NPs' toxicity by immobilizing NPs away from AGS cells, whereas the metabolism restriction on inner microorganisms of AGS induced by CuO NPs can deteriorate the protective role of EPS, indicating that the roles of EPS may not be amenable to generalizations. Further investigations with lactate dehydrogenase (LDH) and reactive oxygen species (ROS) assays indicated that there are greatly essential differences between the toxicity mechanisms of metal NPs to AGS, which varied depending on the NPs' type and dosage. In addition, dynamic changes in the responses of EPS content to different NPs can result in a significant shift in methanogenic and acidogenic microbial communities. Thus, the production and composition of EPSs will be a key factor in determining the fate and potential effect of NPs in the complex biological matrix. In conclusion, this study broadens the understanding of the inhibition mechanisms of metal oxide NPs on the AGS process, and the influence of EPSs on the fate, behavior, and toxicity of NPs.

摘要

污水处理厂(WWTP)被认为是不完全分离和再循环的纳米颗粒(NPs)释放到环境中的最后一道屏障。尽管微生物胞外聚合物(EPS)在复杂的废水基质中具有重要性和普遍性,但涉及废水处理的厌氧微生物群落中 NPs 与 EPS 的相互作用以及对生物质代谢组学的影响尚不清楚。因此,研究了不同金属氧化物(TiO、ZnO 和 CuO) NPs 对厌氧颗粒污泥(AGS)中功能细菌的影响,以及可能的毒性机制。特别是,评估了 AGS 中 EPS 的结合质量、增强的抗性机制以及对不同 NPs 纳米毒性的化学分馏贡献。结果表明,CuO NPs 对产乙酸菌和氢营养型产甲烷菌的抑制作用最为严重,其次是 ZnO NPs,而 TiO NPs 对产甲烷作用没有抑制作用。过量的 EPS 产生,特别是蛋白样物质,是通过将 NPs 固定在 AGS 细胞之外来降低某些 NPs 毒性的有效策略,而 CuO NPs 对内 AGS 微生物的代谢限制会降低 EPS 的保护作用,表明 EPS 的作用可能不适用于一般化。进一步的乳酸脱氢酶(LDH)和活性氧(ROS)测定表明,金属 NPs 对 AGS 的毒性机制存在很大的差异,这取决于 NPs 的类型和剂量。此外,EPS 含量对不同 NPs 的响应的动态变化会导致产甲烷菌和产酸菌微生物群落的显著变化。因此,EPS 的产生和组成将是决定 NPs 在复杂生物基质中的命运和潜在影响的关键因素。总之,本研究拓宽了对金属氧化物 NPs 对 AGS 过程抑制机制的认识,以及 EPS 对 NPs 的命运、行为和毒性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c921/9100327/6fb7d38e713a/ijerph-19-05371-g001.jpg

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