Associations of Serum Trace-Element Concentrations with Selected Blood Biomarkers: A Secondary Cross-Sectional Analysis of the SPES Cohort

Trace elements have nutritional and toxicological roles relevant to lipid metabolism and inflammation. In a secondary cross-sectional study, we examined 19 serum elements and blood biomarkers in 4026 adults from the SPES community biomonitoring programme in Campania, Italy. Low-density lipoprotein cholesterol (LDL-C) and neutrophil-to-lymphocyte ratio (NLR) were co-primary outcomes; systemic immune–inflammation index (SII) was secondary. Adjusted models used multiple imputation and false-discovery-rate (FDR) correction. Selenium, copper and zinc showed positive LDL-C associations among directly quantified concentrations, whereas the mercury association depended on assay availability and quantification. Models with untransformed LDL-C estimated differences of approximately 1–4 mg/dL per element-specific interquartile increase in log concentration. Copper and zinc estimates were smaller in an exploratory joint model. For mercury, LDL-C was higher with quantifiable rather than below-quantification concentrations, but the gradient within the quantified range was uncertain. All four primary-model LDL-C associations met both outcome-specific and combined co-primary FDR thresholds; no primary linear NLR association did. Copper, cobalt, molybdenum and antimony were associated with higher SII after outcome-specific FDR correction, with less consistent results across sensitivity analyses. These modest LDL-C differences warrant prospective investigation; the cross-sectional associations do not establish causal or individual clinical effects.

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Journal
Toxics
Published
2026-09-17
DOI
https://doi.org/10.3390/toxics14090824
Primary Topic
Trace Elements in Health
Type
article
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article

Associations of Serum Trace-Element Concentrations with Selected Blood Biomarkers: A Secondary Cross-Sectional Analysis of the SPES Cohort

Carlo Buonerba, Ernesto Esposito, Paolo Montuori, Maria Triassi et al.
Toxics
Trace Elements in Health
article

Associations of Serum Trace-Element Concentrations with Selected Blood Biomarkers: A Secondary Cross-Sectional Analysis of the SPES Cohort

Carlo Buonerba, Ernesto Esposito, Paolo Montuori, Maria Triassi, Pellegrino Cerino
article en

Abstract

Trace elements have nutritional and toxicological roles relevant to lipid metabolism and inflammation. In a secondary cross-sectional study, we examined 19 serum elements and blood biomarkers in 4026 adults from the SPES community biomonitoring programme in Campania, Italy. Low-density lipoprotein cholesterol (LDL-C) and neutrophil-to-lymphocyte ratio (NLR) were co-primary outcomes; systemic immune–inflammation index (SII) was secondary. Adjusted models used multiple imputation and false-discovery-rate (FDR) correction. Selenium, copper and zinc showed positive LDL-C associations among directly quantified concentrations, whereas the mercury association depended on assay availability and quantification. Models with untransformed LDL-C estimated differences of approximately 1–4 mg/dL per element-specific interquartile increase in log concentration. Copper and zinc estimates were smaller in an exploratory joint model. For mercury, LDL-C was higher with quantifiable rather than below-quantification concentrations, but the gradient within the quantified range was uncertain. All four primary-model LDL-C associations met both outcome-specific and combined co-primary FDR thresholds; no primary linear NLR association did. Copper, cobalt, molybdenum and antimony were associated with higher SII after outcome-specific FDR correction, with less consistent results across sensitivity analyses. These modest LDL-C differences warrant prospective investigation; the cross-sectional associations do not establish causal or individual clinical effects.

ToxicsVol. 14(9)
Accademia di Belle Arti di Catanzaro (IT), Directorate General of Health Services (BD), University of Naples Federico II (IT)
Zero hunger
Openalex Percentile: Top 12%
Trace Elements in Health
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