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Exposure to low-dose arsenic in early life alters innate immune function in children
Faruque Parvez1, Evana Akhtar2, Lamia Khan2
1Department of Environmental Health Sciences, Mailman School of Public Health, Columbia University, New York, NY, USA.
Insights
Early-life arsenic exposure in children may weaken their immune systems, increasing susceptibility to infections. This study found that arsenic exposure is linked to reduced ability to fight bacteria like Streptococcus pneumoniae and Haemophilus influenzae type b.
Area of Science:
- Environmental Health
- Immunology
- Pediatrics
Background:
- Early-life exposure to arsenic (As) is linked to increased respiratory illness in children.
- Data on how arsenic affects the innate immune system's ability to combat respiratory bacterial infections in children is limited.
Purpose of the Study:
- To investigate the impact of persistent, low-dose arsenic exposure on the innate immune function of children under five years of age.
- To assess the relationship between arsenic exposure levels and key markers of innate immunity.
Main Methods:
- Recruited 51 mother-child pairs from the Health Effects of Arsenic Longitudinal Study (HEALS) cohort in Bangladesh.
- Measured household water arsenic, maternal and child urinary arsenic (U-As), and U-As metabolites.
- Assessed innate immune function through plasma cathelicidin LL-37, ex vivo macrophage-mediated killing of Streptococcus pneumoniae, serum bactericidal antibody responses against Haemophilus influenzae type b, and cytokine/chemokine production by PBMCs.
Main Results:
- Maternal and child U-As levels positively correlated with plasma LL-37.
- Increased fractions of mono-methylarsonic acid (MMA) in children were associated with decreased Streptococcus pneumoniae killing and Haemophilus influenzae type b antibody responses.
- Arsenic exposure was linked to altered production of key cytokines and chemokines (fractalkine, IL-7, IL-13, IL-17, MIP-1α).
Conclusions:
- Early-life arsenic exposure may disrupt crucial innate host defense pathways in children.
- These immune system alterations could have long-term health implications for affected children.
Abstract:
Early-life exposure to arsenic (As) increases risks of respiratory diseases/infections in children. However, data on the ability of the innate immune system to combat bacterial infections in the respiratory tracts of As-exposed children are scarce. To evaluate whether persistent low-dose As exposure alters innate immune function among children younger than 5 years-of-age, mothers and participating children (N = 51) that were members of the Health Effects of Arsenic Longitudinal Study (HEALS) cohort in rural Bangladesh were recruited. Household water As, past and concurrent maternal urinary As (U-As) as well as child U-As were all measured at enrollment. In addition, U-As metabolites were evaluated. Innate immune function was examined via measures of cathelicidin LL-37 in plasma, ex vivo monocyte-derived-macrophage (MDM)-mediated killing of Streptococcus pneumoniae (Spn), and serum bactericidal antibody (SBA) responses against Haemophilus influenzae type b (Hib). Cyto-/chemokines produced by isolated peripheral blood mononuclear cells (PBMC) were assayed using a Multiplex system. Multivariable linear regression analyses revealed that maternal (p < 0.01) and child (p = 0.02) U-As were positively associated with plasma LL-37 levels. Decreased MDM-mediated Spn killing (p = 0.05) and SBA responses (p = 0.02) were seen to be each associated with fractions of mono-methylarsonic acid (MMA; a U-As metabolite) in the children. In addition, U-As levels were seen to be negatively associated with PBMC formation of fractalkine and IL-7, and positively associated with that for IL-13, IL-17 and MIP-1α. These findings suggested that early-life As exposure may disrupt the innate host defense pathway in these children. It is possible that such disruptions may have health consequences later in life.
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