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Published on: February 5, 2020
Detection of microplastics in zebrafish housing systems: Can microplastic background contamination affect the final
Bence Prikler1, Gábor Bordós2, Balázs Kriszt3
1Eurofins Analytical Services Hungary Ltd., Budapest 1045, Hungary; Department of Environmental Safety, Institute of Aquaculture and Environmental Safety, Hungarian University of Agriculture and Life Sciences, Gödöllő 2100, Hungary.
Abstract:
Concentrations of microplastics (MPs) were determined in three commonly used zebrafish housing systems to see if their levels could affect the final results of laboratory microplastic-related toxicology tests. MPs have received notable attention in the last few years, and their toxicology tests have also come to the fore. Zebrafish (Danio rerio), kept in fish housing systems, are widely used as models for MPs studies. Most of these systems contain a significant number of parts made of different polymers. As usage and amortization can erode these parts, MPs might appear in the keeping water or the fish body, which may represent a background load and possibly influence the results of microplastic-related toxicological tests. To take representative water samples from systems, two in-situ filtration techniques, a newly developed peristaltic pump-, and a jet pump-driven method were applied. The collected MP particles were analyzed with a Fourier-transform infrared microscope (detection limit 50 μm), and their possible origin was also investigated. The newly developed technique was more sufficient for sampling as it had a higher MPs recovery, especially in the smaller size range. Polyester, polyethylene and polypropylene were the most frequently detected polymers in the examined fish housing systems, the highest detected concentration was 0.31±0.12 particles/liter (0.22±0.16 μg/liter). These values are negligible compared to the literature data reporting enormously high applied MPs concentrations (104 - 2.21 × 108 particles/liter) during toxicology tests. The results also show that some detected MPs did not originate from the systems, their origin was presumed to be external.
Insights
Microplastic (MP) concentrations in zebrafish housing systems are very low, suggesting they do not significantly impact laboratory toxicology tests. Further research is needed to identify external sources of microplastics.
Area of Science:
- Environmental Science
- Ecotoxicology
- Aquatic Toxicology
Background:
- Microplastics (MPs) are a growing environmental concern, with increasing use of zebrafish models for MP toxicology studies.
- Zebrafish housing systems, often made of polymers, may leach MPs into the water, potentially creating a background contamination.
- This background contamination could influence the results of microplastic-related toxicological tests.
Purpose of the Study:
- To quantify microplastic concentrations in common zebrafish housing systems.
- To assess the potential impact of these concentrations on microplastic toxicology test results.
- To investigate the origin of microplastics found in the housing systems.
Main Methods:
- Two in-situ filtration techniques (peristaltic pump and jet pump) were used for water sampling.
- Microplastics were analyzed using Fourier-transform infrared microscopy (detection limit 50 μm).
- Polymer types and concentrations were identified, and potential sources were investigated.
Main Results:
- The newly developed peristaltic pump method showed higher microplastic recovery, especially for smaller particles.
- Polyester, polyethylene, and polypropylene were the most common polymers detected.
- The highest measured concentration was 0.31±0.12 particles/liter, significantly lower than concentrations used in toxicology studies.
Conclusions:
- Microplastic levels in zebrafish housing systems are generally negligible compared to experimental exposure levels in toxicology studies.
- Detected microplastics may originate from sources external to the housing systems.
- The potential for background microplastic contamination in laboratory settings warrants consideration.
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