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September 10, 2025Antioxidants36 citationsOpen Access

Oxidative Stress and Neurotoxicity Biomarkers in Fish Toxicology

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GFGrzegorz FormickiZGZofia GocBBBartosz Bojarski

Key Points

  • Oxidative stress is assessed through various biomarkers, revealing important biochemical changes in fish.
  • Acetylcholinesterase activity serves as a crucial biomarker, showing decreased levels with xenobiotic exposure.
  • Different types of neurotoxicity biomarkers—behavioral, histological, and molecular—provide insights into the toxicological effects on fish.
  • The relevance of oxidative stress and neurotoxicity parameters is emphasized for understanding fish response to toxic substances.

Abstract

Exposure to xenobiotics causes pathophysiological changes in fish, including oxidative stress and neurotoxicity. Here, we describe the biochemical mechanisms underlying oxidative stress (i.e., redox imbalance) and the biochemical markers commonly used to assess its level. Neurotoxicity biomarkers used in fish include behavioral, histological, molecular, neurotransmitter-related, and enzymatic parameters, among which acetylcholinesterase (AChE) activity is the most commonly measured. We therefore also review the changes in AChE activity in fish exposed to common xenobiotics. In most cases, AChE activity decreased in a concentration- and time-dependent manner, although some studies reported no change or even an increase. We emphasize the relevance of all the parameters discussed in the context of fish toxicology studies.

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Cite This Study

Formicki et al. (2025) studied this question.

synapsesocial.com/papers/68c19fa854b1d3bfb60db65chttps://doi.org/10.3390/antiox14080939
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