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  4. Predicting Adult Fish Acute Lethality with the Zebrafish Embryo: Relevance of Test Duration, Endpoints, Compound Properties, and Exposure Concentration Analysis
 
research article

Predicting Adult Fish Acute Lethality with the Zebrafish Embryo: Relevance of Test Duration, Endpoints, Compound Properties, and Exposure Concentration Analysis

Knoebel, Melanie
•
Busser, Frans J. M.
•
Rico-Rico, Angeles
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2012
Environmental Science & Technology

The zebrafish embryo toxicity test has been proposed as an alternative for the acute fish toxicity test, which is required by various regulations for environmental risk assessment of chemicals. We. investigated the reliability of the embryo test by probing organic industrial chemicals with a wide range of physicochemical properties, toxicities, and modes of toxic action. Moreover, the relevance of using measured versus nominal (intended) exposure concentrations, inclusion of sublethal endpoints, and different exposure durations for the comparability with reported fish acute toxicity was explored. Our results confirm a very strong correlation of zebrafish embryo to fish acute toxicity. When toxicity values were calculated based on measured exposure concentration:;, the slope of the type II regression line was 1 and nearly passed through the origin (1 to 1 correlation). Measured concentrations also explained several apparent outliers. Neither prolonged exposure (up to 120 h) nor consideration of sublethal effects led to a reduced number of outliers. Yet, two types of compounds were less lethal to embryos than to adult fish: a neurotoxic compound acting via sodium channels (permethrin) and a compound requiring metabolic activation (allyl alcohol).

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Type
research article
DOI
10.1021/es301729q
Web of Science ID

WOS:000308260700059

Author(s)
Knoebel, Melanie
Busser, Frans J. M.
Rico-Rico, Angeles
Kramer, Nynke I.
Hermens, Joop L. M.
Hafner, Christoph
Tanneberger, Katrin
Schirmer, Kristin  
Scholz, Stefan
Date Issued

2012

Publisher

Amer Chemical Soc

Published in
Environmental Science & Technology
Volume

46

Issue

17

Start page

9690

End page

9700

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
TOX  
Available on Infoscience
February 27, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/89506
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