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基于粪便代谢组学和宏基因组学的综合分析揭示了带不同电荷的纳米塑料对小鼠肠道微生物群相关代谢物的显著影响。

An integrated analysis of the fecal metabolome and metagenome reveals the distinct effects of differentially charged nanoplastics on the gut microbiota-associated metabolites in mice.

机构信息

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, China.

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, China.

出版信息

Sci Total Environ. 2024 Jan 1;906:167287. doi: 10.1016/j.scitotenv.2023.167287. Epub 2023 Sep 24.

Abstract

Whether nanoplastics with differential charges cause intestinal impairment via distinct mechanisms remains unclear. We investigated the relationship between fecal metabolites and the gut microbiome, and potential biomarkers thereof, in mice following exposure to differentially charged polystyrene nanoplastics (PS-NPs). Metagenomic analysis revealed that exposure to differentially charged PS-NPs resulted in alterations in the abundances of Bilophila_wadsworthia, Helicobacter apodemus, and Helicobacter typhlonius. A total of 237 fecal metabolites were significantly altered in mice that exhibited intestinal impairment, and these included 10 gut microbiota-related fecal metabolites that accurately discriminated impaired intestinal samples from the control. Additionally, the specific gut microbiome-related fecal metabolite-based model approach for the prediction of intestinal impairment in mice had an area under the curve (AUC) of 1.0 in the PS (without charge) group, an AUC of 0.94 in the PS-NH (positive charge) group, and an AUC of 0.86 in the PS-COOH (negative charge) group. Thus, the model showed promising evaluable accuracy for the prediction of intestinal impairment induced by nanoplastics in a charge-specific manner. Our study demonstrates that the fecal metabolome of mice with intestinal impairment following exposure to differentially charged nanoplastics is associated with changes in the gut microbiome. The identified biomarkers have potential application for the detection of intestinal impairment after exposure to negative, positive, or noncharged nanomaterials.

摘要

带不同电荷的纳米塑料是否通过不同的机制导致肠道损伤尚不清楚。我们研究了暴露于带不同电荷的聚苯乙烯纳米塑料(PS-NPs)后,小鼠粪便代谢物与肠道微生物组及其潜在生物标志物之间的关系。宏基因组分析显示,暴露于带不同电荷的 PS-NPs 导致 Bilophila_wadsworthia、Helicobacter apodemus 和 Helicobacter typhlonius 的丰度发生变化。肠道损伤小鼠的粪便代谢物共有 237 种发生显著改变,其中包括 10 种与肠道微生物群相关的粪便代谢物,这些代谢物可准确区分受损肠道样本和对照样本。此外,特定基于肠道微生物群相关粪便代谢物的模型方法可用于预测 PS(不带电荷)组小鼠的肠道损伤,其曲线下面积(AUC)为 1.0,PS-NH(带正电荷)组 AUC 为 0.94,PS-COOH(带负电荷)组 AUC 为 0.86。因此,该模型以特定的方式预测纳米塑料引起的肠道损伤具有有前途的评估准确性。我们的研究表明,暴露于带不同电荷的纳米塑料后肠道损伤小鼠的粪便代谢组与肠道微生物组的变化有关。所鉴定的生物标志物有可能用于检测暴露于负电荷、正电荷或非电荷纳米材料后肠道损伤。

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