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早期在斑马鱼中接触土霉素可能导致成年斑马鱼出现神经行为异常。

Early environmental exposure to oxytetracycline in Danio rerio may contribute to neurobehavioral abnormalities in adult zebrafish.

机构信息

Department of Infectious Diseases, the Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou 310052, China; School of Life Sciences, Fudan University, Shanghai 200438, China.

Department of Infectious Diseases, the Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou 310052, China; Department of Infectious Diseases, Xinhua Children's Hospital, Xinhua Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200092, China.

出版信息

Sci Total Environ. 2023 Jul 15;882:163482. doi: 10.1016/j.scitotenv.2023.163482. Epub 2023 Apr 15.

Abstract

The common antibiotic oxytetracycline (OTC) is nowadays commonly found in natural aquatic environments. However, the underlying mechanisms of low-dose OTC exposure and its neurotoxic effects on aquatic animals remain unknown. In this study, we exposed zebrafish larvae to environmental concentrations of OTC in early life and performed neurobehavioral, 16S rRNA gene sequencing, and transcriptomic analyses. OTC exposure resulted in hyperactivity of larvae and a significant reduction in the number of neurons in the midbrain. The expression levels of 15 genes related to neural function changed. Additionally, the composition of 65 genera of the gut microbiota of larvae was altered, which may be one of the reasons for the abnormal neural development. We further studied the long-term outcomes among adult fish long after cessation of OTC exposure. OTC treatment caused adult fish to be depressive and impulsive, symbolizing bipolar disorder. Adult fish exposed to OTC had significantly fewer neurons and their gut bacteria composition did not recover 104 days after terminating OTC exposure. Finally, we analyzed the correlation between the gut microbiota of larvae, genes related to neural function, and metabolites of adult fish brain tissue. The results showed that the abundance of several members of the biome in larvae was related to the transcription levels of genes related to neural function, which were related to the metabolic levels in the adult brain. In conclusion, our study showed that early-life exposure to environmental concentrations of OTC can lead to persistent neurobehavioral abnormalities until adulthood through dysbiosis in the gut microbiota.

摘要

目前,普通抗生素土霉素(OTC)在自然水生环境中很常见。然而,低剂量 OTC 暴露及其对水生动物的神经毒性作用的潜在机制尚不清楚。在这项研究中,我们在早期生活中使斑马鱼幼虫暴露于环境浓度的 OTC 下,并进行了神经行为、16S rRNA 基因测序和转录组分析。OTC 暴露导致幼虫过度活跃,中脑神经元数量显著减少。与神经功能相关的 15 个基因的表达水平发生变化。此外,幼虫肠道微生物群的 65 个属的组成发生改变,这可能是神经发育异常的原因之一。我们进一步研究了 OTC 暴露停止后很长一段时间内成年鱼类的长期后果。OTC 处理导致成年鱼抑郁和冲动,象征着双相情感障碍。暴露于 OTC 的成年鱼神经元数量明显减少,并且在停止 OTC 暴露 104 天后其肠道细菌组成并未恢复。最后,我们分析了幼虫肠道微生物群、与神经功能相关的基因和成年鱼脑组织代谢物之间的相关性。结果表明,幼虫生物体内的几个成员的丰度与与神经功能相关的基因的转录水平相关,而这些基因与成年大脑的代谢水平相关。总之,我们的研究表明,早期生活中暴露于环境浓度的 OTC 可能会通过肠道微生物群失调导致持续的神经行为异常,直到成年。

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