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评估苯海拉明的毒性——其作用机制在人类和斑马鱼之间是否保守?

Assessment of diphenhydramine toxicity - Is its mode of action conserved between human and zebrafish?

机构信息

Department of Biology & CESAM, University of Aveiro, 3810-193 Aveiro, Portugal.

Department of Chemistry & CESAM, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Environ Int. 2022 Jun;164:107263. doi: 10.1016/j.envint.2022.107263. Epub 2022 Apr 25.

Abstract

The main aim of the study is to evaluate the effects of the pharmaceutical diphenhydramine (DPH) on embryo-larvae Danio rerio across distinct levels of organization - individual and subcellular - and correlate those effects with the DPH mode of action (MoA) assessed by in silico analysis. An embryos heartbeat rate reduction was observed at 10 mg/L DPH, but 0.001 to 10 mg/L did not significantly affect the zebrafish survival, hatching and morphology. Larvae swimming distance decreased (hypoactivity) at 1 and 10 mg/L DPH. Moreover, the straightforward movements decrease and the increase in the zigzag movements or movements with direction changes, shown an erratic swimming behavior. Energy budgets decreased for lipid (0.01 mg/L DPH) and carbohydrate (10 mg/L DPH) contents. Cholinesterase (neural function) and glutathione S-transferase (Phase II biotransformation/antioxidant processes) increased their activities at 10 mg/L DPH, where a decrease in the total glutathione content (antioxidant system) was observed. DNA damage was found at 0.01 and 10 mg/L DPH. However, a DNA repair occurred after subsequent 72 h in clean media. The in silico study revealed a relevant conservation between human and zebrafish DPH target molecules. These data provide a valuable ecotoxicological information about the DPH effects and MoA to non-target organisms.

摘要

本研究的主要目的是评估药物苯海拉明(DPH)对不同组织层次——个体和亚细胞层次——的斑马鱼胚胎-幼鱼的影响,并将这些影响与通过计算机模拟分析评估的 DPH 作用模式(MoA)相关联。在 10mg/L 的 DPH 下观察到胚胎心跳率降低,但 0.001 至 10mg/L 对斑马鱼的存活、孵化和形态没有显著影响。1 和 10mg/L 的 DPH 使幼鱼的游动距离减少(活动减少)。此外,直线运动减少,而曲折运动或有方向变化的运动增加,表现出不稳定的游动行为。脂质(0.01mg/L DPH)和碳水化合物(10mg/L DPH)含量的能量预算减少。10mg/L DPH 时,胆碱酯酶(神经功能)和谷胱甘肽 S-转移酶(第二期生物转化/抗氧化过程)的活性增加,而总谷胱甘肽含量(抗氧化系统)减少。在 0.01 和 10mg/L DPH 下发现了 DNA 损伤。然而,在后续的 72 小时清洁介质中,发生了 DNA 修复。计算机模拟研究显示,人类和斑马鱼 DPH 靶分子之间存在相关的保守性。这些数据为非靶标生物的 DPH 效应和 MoA 提供了有价值的生态毒理学信息。

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