AI Article Synopsis

  • The Spanish Mediterranean basin is highly vulnerable to climate change and human activities, necessitating thorough water quality assessments.
  • Surface water samples from coastal lagoons and estuaries were analyzed for over 1,500 organic micropollutants, identifying 91 confirmed and 5 tentative contaminants, predominantly pharmaceuticals and pesticides.
  • A combination of chemical and bioanalytical data provided insights into the water quality, linking the presence of aromatic organic contaminants to aryl hydrocarbon receptor activation and estrogenic receptor inhibition.

Article Abstract

The Spanish Mediterranean basin is particularly susceptible to climate change and human activities, making it vulnerable to the influence of anthropogenic contaminants. Therefore, conducting comprehensive and exhaustive water quality assessment in relevant water bodies of this basin is pivotal. In this work, surface water samples from coastal lagoons or estuaries were collected across the Spanish Mediterranean coastline and subjected to target and suspect screening of 1,585 organic micropollutants by liquid chromatography coupled to ion mobility separation and high resolution mass spectrometry. In total, 91 organic micropollutants could be confirmed and 5 were tentatively identified, with pharmaceuticals and pesticides being the most prevalent groups of chemicals. Chemical analysis data was compared with data on bioanalysis of those samples (recurrent aryl hydrocarbon receptor (AhR) activation, and estrogenic receptor (ER) inhibition in wetland samples affected by wastewater streams). The number of identified organic contaminants containing aromatic rings could explain the AhR activation observed. For the ER antagonistic effects, predictions on estrogenic inhibition potency for the detected compounds were used to explain the activities observed. The integration of chemical analysis with bioanalytical observations allowed a comprehensive overview of the quality of the water bodies under study.

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Source
http://dx.doi.org/10.1016/j.envint.2022.107326DOI Listing

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