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April 4, 2026Journal of Xenobiotics0 citationsOpen Access

Monitoring Environmental Glyphosate in Northeastern Romania and Its Cytotoxic Impact on Human Fibroblasts

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ICIoana-Cezara CabaRŞRaluca ŞtefănescuABAlexandra-Andreea Botnaru

Key Points

  • This research aims to evaluate glyphosate contamination in water and soil in Romania and its cytotoxicity on human fibroblast cells.
  • Collected 40 water samples and 28 soil samples from northeastern Romania.
  • Quantified glyphosate concentrations using a spectrophotometric method.
  • Proposed a UHPLC-MS/MS method to confirm glyphosate presence in samples.
  • Assessed cytotoxicity of glyphosate and Roundup® in human gingival fibroblast cell lines.
  • Detected glyphosate in one water sample at above LOQ concentrations.
  • Roundup® exhibited similar cytotoxicity to glyphosate at low and intermediate doses.
  • Significant cytotoxic effects were observed at a maximum concentration of 1 mM with prolonged exposure.
  • Minimal cytotoxicity was demonstrated under examined conditions.

Abstract

Glyphosate is the most widely used pesticide globally, raising concerns about its environmental persistence and biological impacts. Therefore, monitoring pesticide use is essential for assessing agricultural practices and the risks to human health associated with chemical use. This research examined glyphosate contamination in water (40 samples) and soil (28 samples) from northeastern Romania, an important agricultural region. Glyphosate concentrations in environmental water and soil samples were quantified using a spectrophotometric method based on ninhydrin derivatization, with good linearity over the concentration range 1–30 µg/mL (R2 = 0.9981). Glyphosate was detected at concentrations above the LOQ in one water sample. Also, the study proposes a UHPLC-MS/MS method for the confirmation of glyphosate presence in the analyzed sample. Additionally, this study contributes to the characterization of the toxicity profiles of glyphosate and a commercial glyphosate-based formulation (Roundup®) in primary human gingival fibroblast (hGF) cell lines. The commercial product Roundup, containing glyphosate, exhibited cytotoxicity similar to that of the active compound at low and intermediate doses; a significant cytotoxic effect was observed at a maximum concentration of 1 mM, with prolonged exposure. These findings demonstrate minimal cytotoxicity under the examined conditions and underscore the need for dose- and time-dependent assessments to evaluate the biological impact of herbicide formulations.

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Cite This Study

Caba et al. (2026) studied this question.

synapsesocial.com/papers/69d0af68659487ece0fa5644https://doi.org/10.3390/jox16020061
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