Chemical Element Mixtures and Kidney Function in Mining and Non-Mining Settings in Northern Colombia

Author:

Rodriguez-Villamizar Laura A.1ORCID,Medina Olga M.2ORCID,Flórez-Vargas Oscar2ORCID,Vilanova Eugenio3ORCID,Idrovo Alvaro J.1,Araque-Rodriguez Santiago A.4,Henao José A.5,Sánchez-Rodríguez Luz H.2

Affiliation:

1. Departamento de Salud Pública, Escuela de Medicina, Universidad Industrial de Santander, Bucaramanga 680002, Colombia

2. Escuela de Microbiología, Universidad Industrial de Santander, Bucaramanga 68002, Colombia

3. Instituto de Bioingeniería, Universidad Miguel Hernández de Elche, 03202 Elche, Spain

4. Facultad de Ciencias de la Salud Programa de Medicina, Universidad Autónoma de Bucaramanga, Bucaramanga 681003, Colombia

5. Escuela de Química, Universidad Industrial de Santander, Bucaramanga 680006, Colombia

Abstract

The exposure to chemical mixtures is a problem of concern in developing countries and it is well known that the kidney is the major target organ for toxic elements. This cross-sectional study aimed to estimate the individual and composite mixture effect of a large number of chemical elements on kidney function in gold-mining and surrounding non-mining populations in northeast Colombia. We measured concentrations of 36 chemical elements in hair as indicators of chronic exposure from 199 adult participants. We estimated the effect of exposure to mixtures of chemical elements on estimated glomerular filtration rate (eGFR) using weighted quantile sum regression (WQS). The WQS index of the mixture was associated with reduced eGFR (Coefficient −2.42; 95%CI: −4.69, −0.16) being Be, Cd, Pb, As, and Mn, the principal contributors of the toxic mixture. Mining activities and Hg concentration were not associated with decreased kidney function. Our results suggest that complex mixtures of chemical elements, mainly heavy metals, act as nephrotoxic in these populations and therefore the analysis of chemical element mixtures is a better approach to identify environmental and occupational chemical risks for kidney damage.

Funder

Universidad Industrial de Santander

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference69 articles.

1. National Kidney Foundation (2022, November 04). KDOQI Clinical Practice Guidelines for Chronic Kidney Disease: Evaluation, Classification, and Stratification. Available online: https://kidneyfoundation.cachefly.net/professionals/KDOQI/guidelines_ckd/p4_class_g1.htm.

2. Hill, N.R., Fatoba, S.T., Oke, J.L., Hirst, J.A., O’Callaghan, C.A., Lasserson, D.S., and Hobbs, F.D.R. (2016). Global Prevalence of Chronic Kidney Disease—A Systematic Review and Meta-Analysis. PLoS ONE, 11.

3. Orr, S.E., and Bridges, C.C. (2017). Chronic kidney disease and exposure to nephrotoxic metals. Int. J. Mol. Sci., 18.

4. Fowler, B.A. (2011). Metal Ions in Toxicology: Effects, Interactions, Interdependencies, Royal Society of Chemistry.

5. Toxicodynamics of Lead, Cadmium, Mercury and Arsenic- induced kidney toxicity and treatment strategy: A mini review;Rana;Toxicol. Rep.,2018

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