Institute of Veterinary Pathology at the Center for Clinical Veterinary Medicine, Ludwig-Maximilians-Universität München, Munich, Germany.
Unit 73 Aquatic Ecotoxicology, Microbial Ecology, Bavarian Environment Agency, Wielenbach, Germany.
PLoS One. 2023 Jul 13;18(7):e0288542. doi: 10.1371/journal.pone.0288542. eCollection 2023.
In ecotoxicology, evaluation of toxicities and no observed effect concentrations (NOEC) of test compounds in experimental fish is commonly based on molecular-, biochemical- and analytical chemistry analyses of organ/tissue samples and the assessment of (histo-) pathological lesions. Standardization of organ/tissue sampling locations, sample numbers, and sample processing contributes to warrant the reproducibility and inter- and intra-study comparability of analysis results. The present article provides the first comprehensive tissue sampling guidelines specifically adapted to rainbow trout (Oncorhynchus mykiss) as a frequently used fish species in ecotoxicological studies. A broad spectrum of 40 different organs and tissues is covered. Appropriate sampling locations, sample sizes and sample numbers for subsequent routine histopathological evaluation (all organs/tissue) and for molecular analyses (30 organs/tissues) are described in detail and illustrated with schematic drawings and representative macroscopic and histological images. These field-proven sampling guidelines were developed based on the pertinent literature and practical experience in ecotoxicological fish studies. They are intended to serve as a standard reference for any routine ecotoxicological study using rainbow trout as a test system. A broad application of the featured tissue sampling procedures will help to improve the reproducibility of analyses and to reduce inter- and intra-study variability induced by sampling bias and (normal) inter-sample morphological variation, and will therefore provide a robust basis for reliable characterization of toxicity and NOEC identification of diverse test substances and aquatic pollutants.
在生态毒理学中,通常基于对实验鱼类的器官/组织样本进行分子、生化和分析化学分析,并评估(组织学)病理损伤,来评估测试化合物的毒性和未观察到的效应浓度 (NOEC)。器官/组织样本采集位置、样本数量和样本处理的标准化有助于保证分析结果的重现性和研究间及研究内的可比性。本文提供了第一个专门针对虹鳟(Oncorhynchus mykiss)的综合组织采样指南,虹鳟是生态毒理学研究中常用的鱼类物种。涵盖了大约 40 种不同的器官和组织。详细描述了后续常规组织病理学评估(所有器官/组织)和分子分析(约 30 个器官/组织)的适当采样位置、样本大小和样本数量,并附有示意图和代表性的宏观和组织学图像。这些经过现场验证的采样指南是基于生态毒理学鱼类研究的相关文献和实践经验制定的。它们旨在作为使用虹鳟作为测试系统的任何常规生态毒理学研究的标准参考。广泛应用所描述的组织采样程序将有助于提高分析的重现性,并减少因采样偏差和(正常)样品间形态变化引起的研究间和研究内变异性,从而为可靠表征毒性和识别不同测试物质和水生污染物的 NOEC 提供坚实基础。