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February 19, 2026Sustainability0 citationsOpen Access

Research on the Toxic Effects of Water Treatment By-Product N-Nitrosodimethylamine (NDMA) on Juvenile Crucian Carp

FXFei XuCLCuimei LiHWH. Wang

Key Points

  • This research aims to explore the toxic effects of NDMA on juvenile crucian carp, focusing on oxidative stress parameters.
  • Conducted semi-static acute toxicity tests on juvenile crucian carp.
  • Performed 5-day exposure experiments to measure toxicity effects.
  • Analyzed protein content, SOD, and CAT activities in response to NDMA exposure.
  • NDMA showed significant acute toxicity with LC50 values decreasing over time.
  • A safe concentration of NDMA was identified as 0.705 mg/L, classified as medium toxic.
  • SOD activity was induced at low NDMA concentrations but inhibited at higher concentrations.
  • CAT activity was primarily induced but inhibited in the highest concentration group.
  • Protein content consistently showed induction across various NDMA concentrations.

Abstract

N-nitrosodimethylamine (NDMA) is a relatively toxic and environmentally persistent carcinogen, posing potential threats to the sustainability of freshwater ecosystems, but relevant research on the toxic effects of NDMA in China is relatively scarce. Taking juvenile crucian carp, a key economic and ecological native fish species in China, as the experimental organism, this study explored the acute toxicity and oxidative stress effects of NDMA through semi-static acute toxicity tests combined with 5-day exposure experiments, determining the protein content, superoxide dismutase (SOD), and catalase (CAT) activities in fish. The study provides a reference for ecological risk assessments and pollution control of NDMA in freshwater environments. Results showed that NDMA exerted significant acute toxicity to juvenile crucian carp, with 24, 48, 72, and 96 h half lethal concentrations (LC50) of 9.83, 9.14, 8.11, and 7.05 mg/L, respectively, and a safe concentration (SC) of 0.705 mg/L (classified as medium toxic). NDMA exhibited distinct concentration- and time-dependent effects on the indicators. Protein content showed a consistent induction effect. Low concentrations (1.18, 1.76 mg/L) induced SOD activity, while high concentrations (3.68 mg/L) significantly inhibited it. CAT activity was mainly induced but inhibited in the 3.68 mg/L group at 3–5 days. The inhibition rate order of NDMA on the indicators was SOD > CAT > protein content. This study, through the aforementioned exploration, further supplements domestic toxicological research on NDMA regarding native freshwater fish, clarifies the key acute toxicity parameters and physiological-biochemical response patterns of NDMA on juvenile crucian carp, screens SOD and CAT as potential biomarkers for NDMA pollution monitoring in freshwater environments, and also provides basic data support for the sustainable management of disinfection by-products.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6996a7a5ecb39a600b3ed79chttps://doi.org/10.3390/su18042006
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