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Published on: May 4, 2016
Cylindrospermopsin induces oxidative stress and genotoxic effects in the fish CLC cell line
Anna Sieroslawska1, Anna Rymuszka
1Department of Physiology and Ecotoxicology, The John Paul II Catholic University of Lublin, Konstantynów 1 I, 20-708, Lublin, Poland.
Abstract:
Cylindrospermopsin (CYN) is a cyanotoxin detected in water reservoirs worldwide. The toxin is a potent protein synthesis inhibitor capable of adversely influencing a wide range of cell functions. While data on the prooxidative potency of CYN are inconsistent, genotoxic effects towards certain mammalian cell types have been described. However, such a potential on fish cells has not yet been investigated. Hence, the aim of the study was to elucidate the prooxidative and genotoxic impact of CYN on a common carp (Cyprinus carpio L.) leucocyte cell line (CLC). The cells were incubated with the cyanotoxin at concentrations of 0.1, 0.5 or 1 µg ml⁻¹. After 24 h, cytotoxic activity of CYN at the highest used concentration was confirmed by decreased cell membrane integrity and inhibited cell proliferation. Additionally, CYN at 0.5 and 1 µg ml⁻¹ increased intracellular ATP levels and decreased the reduced to oxidized glutathione ratio. Furthermore, a significant increase in the reactive oxygen species (ROS) production with concomitant changes in superoxide dismutase activity was observed after a 3.5-h exposure of the cells to the toxin. Genotoxic activity of CYN, manifested as oxidative DNA damage and elevated number of micronuclei, was also detected in exposed cells. The obtained results indicate that CYN is able to exert a wide range of adverse effects, including oxidative stress and genotoxicity in fish leucocytes.
Insights
Cylindrospermopsin (CYN), a cyanotoxin found globally, causes oxidative stress and DNA damage in fish leucocytes. This study confirms CYN
Area of Science:
- Environmental toxicology
- Aquatic toxicology
- Cyanotoxin research
Background:
- Cylindrospermopsin (CYN) is a widespread cyanotoxin impacting water reservoirs.
- CYN inhibits protein synthesis and affects various cell functions.
- CYN's prooxidative effects are debated, and its genotoxicity in fish cells is unstudied.
Purpose of the Study:
- To investigate the prooxidative and genotoxic effects of CYN on common carp (Cyprinus carpio L.) leucocyte cell line (CLC).
Main Methods:
- Incubation of CLC cells with CYN (0.1, 0.5, 1 µg ml⁻¹).
- Assays for cell membrane integrity, proliferation, ATP levels, glutathione ratio, ROS production, and superoxide dismutase activity.
- Evaluation of oxidative DNA damage and micronuclei formation.
Main Results:
- CYN exhibited cytotoxicity at 1 µg ml⁻¹, reducing cell membrane integrity and proliferation.
- Increased intracellular ATP and decreased glutathione ratio observed at 0.5 and 1 µg ml⁻¹ CYN.
- Elevated ROS production, altered superoxide dismutase activity, oxidative DNA damage, and micronuclei formation in CYN-exposed cells.
Conclusions:
- CYN induces significant oxidative stress in fish leucocytes.
- CYN demonstrates genotoxic potential in fish cells, causing DNA damage and micronuclei formation.
- CYN poses a risk to aquatic organisms through its toxic effects on fish immune cells.

