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Johann, S.

Publications and source records attributed to Johann, S..

2 recordsLinked to original sources

Assessing the impact of carrier solvent and solid phase extraction blank toxicity on fish embryo testing

Bioassays are powerful tools to comprehensively understand the effects of complex environmental mixtures on humans and other animal species. In particular, the fish embryo test (FET) with zebrafish (Danio rerio) is one of the most used bioanalytical tools to test in vivo the effect of environmental extract. However, it is well known that the preparation technique of complex environmental samples for bioanalytical testing could have huge impact on the composition of exposure solutions and hence the corresponding toxicity Considering this, it is important to develop reliable environmental sample preparation procedures to obtain accurate and reproducible results in the zebrafish embryo toxicity studies. In the present study, we aimed to investigate how different experimental set-ups using a Solid Phase Extraction (SPE) extract of a complex water sample might influence the toxicity assessment using embryos of Danio rerio. Firstly, we assess the influence of two typical carrier solvents (methanol and dimethyl sulfoxide) for dosing environmental extracts. We further investigated the effect of increasing exposure media pH. Finally, we studied the effect of the SPE blank on lethal and sublethal effects in embryos of Danio rerio. Although no significant differences were observed for different solvents, we observed an adverse effect on hatching rate when testing the blank. This indicates the potential impact of background contamination in experimental setups, highlighting the need for appropriate blank correction methods. Furthermore, the differential effects observed with different pH correction methods highlight the importance of carefully selecting the appropriate pH adjustment strategy to accurately assess toxicity levels. Overall, our study enhances the knowledge base and methodology for accurate and comprehensive ecotoxicological assessments in aquatic ecosystems, aiding in the protection and conservation of these fragile environments.

developmental biology↗

Underlying molecular effects to behavioral consequences present line of evidence for zebrafish eye development and function alteration by crude oil exposure.

Crude oil can affect the normal eye development and swimming behavior of fish embryos. In this study 0-4 hours post fertilization (hpf) zebrafish (Danio rerio) embryos were exposed to low, sublethal concentrations of water-accommodated fractions (WAF) of a naphthenic North Sea crude oil alone and in combination with a third-generation chemical dispersant. Effects on eye development and function at the transcript, histological, morphological, and behavioral level were assessed relative to untreated control specimen at 119 hpf. Exposed embryos swam significantly less during the dark phases of the light/dark transition test. Eye size of zebrafish embryos was significantly smaller in groups exposed to crude oil WAFs. Zebrafish retina histology revealed that, among other structural alterations, the outer nuclear layer, containing photoreceptor cells relevant for normal visual functioning, was significantly thinner in exposed embryos. Transcriptome analysis revealed that several genes involved in eye development and function (opsins and crystallins) were dysregulated upon oil exposure. The molecular effects on gene expression and eye histology results form a novel line of evidence that explains the observed effects of crude oil on the swimming activity of exposed fish embryos. The present study is in line with recent findings highlighting the importance of ocular toxicity in developing embryos exposed to petroleum samples at environmentally relevant and non-lethal concentrations without visible malformations. The study suggests that oculotoxicity should be considered as a major toxicity pathway alongside to the well-established cardiotoxicity.

developmental biology↗