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单个斑马鱼胚胎中生物转化产物的快速平板内筛选。

Rapid in-plate screening of biotransformation products in single zebrafish embryos.

作者信息

Ribbenstedt Anton, Benskin Jonathan P

机构信息

Department of Environmental Science, Stockholm University Sweden

出版信息

RSC Adv. 2021 Aug 16;11(45):27812-27819. doi: 10.1039/d1ra01111a.

Abstract

A procedure was developed for rapid screening of xenobiotic biotransformation products (bioTPs) in single zebrafish (ZF; ) embryos. Exposure was carried out from 0-120 hours post fertilization (hpf) to 6 different concentrations of the model compound propranolol (PPL). Following in-plate extraction and non-target instrumental analysis by high resolution mass spectrometry, suspected bioTPs were identified using custom data filtration scripts and matching to structural predictions. A total of eight PPL bioTPs were identified (five at a level 1 confidence and one at a level 2-3 confidence). These findings supplement previously generated toxicometabolomic models derived from the same dataset, and were obtained without conducting additional exposure experiments. In addition to facilitating assessments of inter-individual variability in bioTP production in ZF embryos, we demonstrate that bioTPs can be elucidated using extremely small quantities of biomass ( ∼200 μg). To the best of our knowledge, this is the first time bioTP elucidation has been carried out in single ZF embryos.

摘要

我们开发了一种程序,用于快速筛选单个斑马鱼(ZF)胚胎中的外源生物转化产物(bioTPs)。在受精后0至120小时(hpf),将胚胎暴露于6种不同浓度的模型化合物普萘洛尔(PPL)中。经过板内萃取和高分辨率质谱的非靶向仪器分析后,使用定制的数据过滤脚本并与结构预测进行匹配,从而鉴定出可疑的bioTPs。总共鉴定出8种PPL的bioTPs(5种为1级置信度,1种为2-3级置信度)。这些发现补充了先前从同一数据集中生成的毒理代谢组学模型,并且无需进行额外的暴露实验即可获得。除了有助于评估ZF胚胎中bioTP产生的个体间变异性外,我们还证明可以使用极少量的生物量(约200μg)来阐明bioTPs。据我们所知,这是首次在单个ZF胚胎中进行bioTP阐明。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cb2/9038038/abb23107a76b/d1ra01111a-f1.jpg

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