| Literature DB >> 23770824 |
Céline Vellinger1, Eric Gismondi, Vincent Felten, Philippe Rousselle, Kahina Mehennaoui, Marc Parant, Philippe Usseglio-Polatera.
Abstract
This study aimed at investigating the individual and interactive effects of cadmium (Cd) and arsenate (AsV) in Gammarus pulex (Crustacea, Amphipoda) through the use of several biomarkers. Individuals were exposed for 240 h to two concentrations of AsV or Cd alone, and all the possible binary mixtures of these concentrations of AsV and Cd in a complete factorial design. The pattern of the biomarkers' responses to Cd and AsV alone or in mixture was similar in Gammarus pulex, even if the response intensity varied depending on the tested conditions. G. pulex responded to contamination with increased mobilization of the detoxification systems [i.e. γ-glutamyl-cystein ligase activity (GCL), reduced glutathione content (GSH) and metallothionein concentrations (MT)]. This response seems to imply changes in energy reserve utilization (total lipids and proteins are used prior to glycogen reserves), but also a possible energy reallocation from locomotion to detoxification processes. The observed increase in lipid peroxidation could be relied to the increasing gammarid mortality, despite the higher mobilization of detoxification systems. Even if the outcome of the complex interactions between AsV and Cd remains difficult to unravel, such studies are critically important for better assessing the effects of stressors on organisms, populations and communities in a multi-contamination context of ecosystems.Entities:
Keywords: Behaviour; Detoxification systems; Energy reserves; Gammarids; Interactive effects; Metal mixture
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Year: 2013 PMID: 23770824 DOI: 10.1016/j.aquatox.2013.05.010
Source DB: PubMed Journal: Aquat Toxicol ISSN: 0166-445X Impact factor: 4.964