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High-Resolution Mass Spectrometry Non-Targeted Detection of Per- and Polyfluoroalkyl Substances in Roe Deer (). | LitMetric

AI Article Synopsis

  • Roe deer are crucial indicators of environmental pollution, making them important for studying bioaccumulation of PFAS (poly- and perfluoro substances) in their liver and muscles.
  • A study identified 60 different PFAS compounds in 18 female roe deer using advanced mass spectrometry, revealing unique bioaccumulation patterns with specific compounds found only in the liver or muscles.
  • The findings highlight the liver and muscles' roles as significant sites for PFAS accumulation, prompting further investigation into the mechanisms behind this process.

Article Abstract

Among wildlife species, roe deer stands out as a valuable indicator of environmental pollution due to its ecological significance and role as a game animal. The assessment of poly- and perfluoro substances (PFASs) bioaccumulation is of the utmost importance, relying on the liver and muscles as the main organs of interest. The study concerned the identification of 60 PFAS through a non-target workflow analysis based on HPLC Q-Exactive Orbitrap High-Resolution Mass Spectrometry in a homogeneous group of 18 female roe deer species. The developed strategy allowed us to individuate the 60 PFAS compounds with different levels of confirmation. Apart from seven PFASs identified via analytical standards, the remaining fifty-three features were identified with CL 2 or 3. Moreover, by applying a differential statistic approach, it was possible to distinguish the bioaccumulation patterns in the liver and muscle, identifying 12 PFAS upregulated in the muscle and 20 in the liver. The analysis reveals that specific PFAS compounds present exclusively in either the muscle or in the liver. The study emphasises the specificity of the liver and muscle as significant bioaccumulation sites for PFAS, raising questions about the underlying mechanisms of this process. In conclusion, the presented non-targeted PFAS analysis workflow evidenced promising and reliable results, successfully demonstrating its feasibility in the field of environmental research.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10856453PMC
http://dx.doi.org/10.3390/molecules29030617DOI Listing

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