Abstract

Cyanobacteria (blue-green algae) have been present on Earth for over 2 billion years, and can produce a variety of bioactive molecules, such as cyanotoxins. Microcystins (MCs), the most frequently detected cyanotoxins, pose a threat to the aquatic environment and to human health. The classic toxic mechanism of MCs is the inhibition of the protein phosphatases 1 and 2A (PP1 and PP2A). Immunity is known as one of the most important physiological functions in the neuroendocrine-immune network to prevent infections and maintain internal homoeostasis in fish. The present review aimed to summarize existing papers, elaborate on the MC-induced immunotoxicity in fish, and put forward some suggestions for future research. The immunomodulatory effects of MCs in fish depend on the exposure concentrations, doses, time, and routes of exposure. Previous field and laboratory studies provided strong evidence of the associations between MC-induced immunotoxicity and fish death. In our review, we summarized that the immunotoxicity of MCs is primarily characterized by the inhibition of PP1 and PP2A, oxidative stress, immune cell damage, and inflammation, as well as apoptosis. The advances in fish immunoreaction upon encountering MCs will benefit the monitoring and prediction of fish health, helping to achieve an ecotoxicological goal and to ensure the sustainability of species. Future studies concerning MC-induced immunotoxicity should focus on adaptive immunity, the hormesis phenomenon and the synergistic effects of aquatic microbial pathogens.

Highlights

  • Cyanobacteria are the oldest known oxygenic photoautotroph on earth

  • Atencio et al [66] found that the levels of lipid peroxidation (LPO), GR, and glutathione peroxidase (GPx) exhibited a significant increase in kidney and liver of tilapia (Oreochromis niloticus) when exposed to an oral dose of 120 μg MC-LR/fish for 24 h, while CAT, system produces antioxidant (SOD) and GST showed a significant decrease

  • The alterations of PP1/PP2A activities are tightly associated with cellular cytotoxicity and cytoskeletal disruption caused by MCs, which reveal the importance of protein phosphatases in MC-induced immunotoxicity [104,105]

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Summary

A Scoping Review

Wang Lin 1,2,3 , Tien-Chieh Hung 2 , Tomofumi Kurobe 4 , Yi Wang 2 and Pinhong Yang 1, *.

Introduction
Impact
Characteristics of cyanobacterial bloomsDepartment and microcystins:
Immune System of Fish
Cyanobacteria Cells
Cyanobacteria Extracts
Pure Microcystins
In Vitro Studies
Potential Mechanism of MC-Induced Immunotoxicity
Adsorption and Accumulation of MCs
Inhibition of PP1 and PP2A
Oxidative Stress
Immune Cell Damages
Inflammation
Apoptosis
Adaptive Immunity
Multi-Omics Study
Hormesis Phenomenon
Variants Other than MC-LR
Microbial Pathogens in Aquatic Ecosystems
Findings
Conclusions

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