Multi-Matrix Assessment of Potentially Toxic Elements Across Soil and Sambucus nigra Organs: Spatial Patterns, Regulatory Compliance, and Dietary Exposure of Edible Fruits

Urban environments may influence elemental exposure from wild edible fruits. This study evaluated spatial patterns, soil-to-organ concentration ratios, and food-safety implications of potentially toxic elements in soil and four Sambucus nigra organs collected from 94 sites across five ecological sectors in Oradea, Romania (470 samples). Elements were determined by ICP-MS, and the data were evaluated using soil-to-organ concentration ratios, multivariate analyses, regulatory assessment, dietary-exposure assessment, and non-carcinogenic risk analysis. Elemental profiles varied strongly by matrix and sector, with concentrations generally highest in the central urban sector (Z2) and lowest in the woodland-associated sector (Z4). Bark exhibited the highest soil-normalized concentration ratios for potentially toxic elements; however, because bark was analyzed unwashed, these values may include surface deposition and should not be interpreted as evidence of greater internal accumulation relative to the rinsed organs. In fruits, Cr and Ni were detected in 97.9% and 94.7% of samples; Pb, Cd, As, and Sb occurred mainly in Z2, while Hg remained below the detection limit. Z2 fruits contained 5.92 ± 1.10 detected potentially toxic elements per sample, compared with 1.61 ± 0.61 in Z4. No fruit sample exceeded the applicable EU maximum levels for Pb or Cd. For the additional elements evaluated through the screening-level dietary exposure assessment, all calculated THQs and partial HI values were below 1 under the adopted exposure assumptions. The results indicate a pronounced urban multi-element signal but no appreciable non-carcinogenic concern under the adopted assumptions.

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Journal
Foods
Published
2026-10-08
DOI
https://doi.org/10.3390/foods15193573
Primary Topic
Heavy metals in environment
Type
article
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article

Multi-Matrix Assessment of Potentially Toxic Elements Across Soil and Sambucus nigra Organs: Spatial Patterns, Regulatory Compliance, and Dietary Exposure of Edible Fruits

Adrian Tunduc, Voichița Timiș-Gânsac, Florin Dumitru Bora, Călin Gheorghe Pășcuț et al.
Foods
Heavy metals in environment
article

Multi-Matrix Assessment of Potentially Toxic Elements Across Soil and Sambucus nigra Organs: Spatial Patterns, Regulatory Compliance, and Dietary Exposure of Edible Fruits

Adrian Tunduc, Voichița Timiș-Gânsac, Florin Dumitru Bora, Călin Gheorghe Pășcuț, Praveen Pandey, Călin Ioan Iovan, Claudiu Ioan Bunea, Anamaria Călugăr, Petrică Tudor Moțiu, Ioana Andra Vlad, Szilárd Bartha
article en

Abstract

Urban environments may influence elemental exposure from wild edible fruits. This study evaluated spatial patterns, soil-to-organ concentration ratios, and food-safety implications of potentially toxic elements in soil and four Sambucus nigra organs collected from 94 sites across five ecological sectors in Oradea, Romania (470 samples). Elements were determined by ICP-MS, and the data were evaluated using soil-to-organ concentration ratios, multivariate analyses, regulatory assessment, dietary-exposure assessment, and non-carcinogenic risk analysis. Elemental profiles varied strongly by matrix and sector, with concentrations generally highest in the central urban sector (Z2) and lowest in the woodland-associated sector (Z4). Bark exhibited the highest soil-normalized concentration ratios for potentially toxic elements; however, because bark was analyzed unwashed, these values may include surface deposition and should not be interpreted as evidence of greater internal accumulation relative to the rinsed organs. In fruits, Cr and Ni were detected in 97.9% and 94.7% of samples; Pb, Cd, As, and Sb occurred mainly in Z2, while Hg remained below the detection limit. Z2 fruits contained 5.92 ± 1.10 detected potentially toxic elements per sample, compared with 1.61 ± 0.61 in Z4. No fruit sample exceeded the applicable EU maximum levels for Pb or Cd. For the additional elements evaluated through the screening-level dietary exposure assessment, all calculated THQs and partial HI values were below 1 under the adopted exposure assumptions. The results indicate a pronounced urban multi-element signal but no appreciable non-carcinogenic concern under the adopted assumptions.

FoodsVol. 15(19)
University of Oradea (RO), University of Agricultural Sciences and Veterinary Medicine of Cluj-Napoca (RO), Central Institute of Medicinal and Aromatic Plants (IN)
Openalex Percentile: Top 24%
Heavy metals in environment
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