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Published on: February 23, 2019
Arsenic exposure and cell-mediated immunity in pre-school children in rural Bangladesh
Sultan Ahmed1, Sophie E Moore2, Maria Kippler3
1Institute of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden Centre for Vaccine Sciences, International Centre for Diarrheal Disease Research, Bangladesh (ICDDR,B), Dhaka, Bangladesh.
Insights
Childhood arsenic exposure weakens cell-mediated immunity, particularly in undernourished children. This immune impairment may be linked to reduced Th1 cytokines like IL-2 and TNF-α.
Area of Science:
- Environmental Health
- Immunology
- Pediatrics
Background:
- Prenatal arsenic exposure is linked to impaired infant immune function.
- Cell-mediated immunity is crucial for protecting children against infections.
Purpose of the Study:
- To investigate the effects of pre- and postnatal arsenic exposure on cell-mediated immunity in preschool-aged children.
- To identify specific immune markers affected by arsenic exposure.
Main Methods:
- A prospective mother-child cohort study in Bangladesh (n=577) assessed arsenic exposure via urine.
- Cell-mediated immunity was evaluated using a delayed type hypersensitivity (DTH) response to purified protein derivative (PPD).
- Plasma cytokine levels (including Th1 and Th2 cytokines) were analyzed using multiplex assays.
Main Results:
- Higher childhood arsenic exposure correlated with a weaker DTH response to PPD.
- Children in the highest arsenic quartile had a 1.37 times higher risk of not responding to PPD.
- Arsenic exposure was inversely associated with Th1 cytokines (IL-2 and TNF-α), especially in children with recent infections and undernourishment.
Conclusions:
- Elevated childhood arsenic exposure appears to suppress cell-mediated immunity.
- Reduced Th1 cytokine concentrations may underlie arsenic-induced immune dysfunction.
- Undernourished children and those with recent infections are more vulnerable to arsenic's immunotoxic effects.
Abstract:
Prenatal arsenic exposure has been associated with reduced thymic index and increased morbidity in infants, indicating arsenic-related impaired immune function. We aimed at elucidating potential effects of pre- and postnatal arsenic exposure on cell-mediated immune function in pre-school aged children. Children born in a prospective mother-child cohort in rural Bangladesh were followed up at 4.5 years of age (n = 577). Arsenic exposure was assessed by concentrations of arsenic metabolites (U-As) in child urine and maternal urine during pregnancy, using high-performance liquid chromatography online with inductively coupled plasma mass spectrometry. For assessment of delayed type hypersensitivity response, an intradermal injection of purified protein derivative (PPD) was given to Bacillus Calmette-Guerin vaccinated children. The diameter (mm) of induration was measured after 48-72 h. Plasma concentrations of 27 cytokines were analyzed by a multiplex cytokine assay. Children's concurrent, but not prenatal, arsenic exposure was associated with a weaker response to the injected PPD. The risk ratio (RR) of not responding to PPD (induration <5 mm) was 1.37 (95% confidence interval (CI): 1.07, 1.74) in children in the highest quartile of U-As (range 126-1228 microg/l), compared with the lowest (range 12-34 microg/l). The p for trend across the quartiles was 0.003. The association was stronger in undernourished children. Children's U-As in tertiles was inversely associated with two out of 27 cytokines only, i.e., IL-2 and TNF-α, both Th1 cytokines (in the highest tertile, regression coefficients (95% CI): -1.57 (-2.56, -0.57) and -4.53 (-8.62, -0.42), respectively), but not with Th2 cytokines. These associations were particularly strong in children with recent infections. In conclusion, elevated childhood arsenic exposure appeared to reduce cell-mediated immunity, possibly linked to reduced concentrations of Th1 cytokines.
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