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Prenatal iron exposure and childhood type 1 diabetes
Ketil Størdal1,2, Harry J McArdle3, Helen Hayes3
1Department of non-communicable diseases, Norwegian Institute of Public Health, Oslo, Norway. ketil.stordal@fhi.no.
Insights
Prenatal iron exposure, including maternal iron supplements, may increase the risk of type 1 diabetes in children. Genetic factors related to maternal iron stores also showed an association with offspring diabetes risk.
Area of Science:
- Environmental Health
- Pediatric Endocrinology
- Genetics
Background:
- Iron overload is linked to diabetes.
- Prenatal environmental exposures can impact childhood health outcomes.
- Type 1 diabetes (T1D) is an autoimmune disease with complex etiology.
Purpose of the Study:
- To investigate the association between prenatal iron exposure and the risk of childhood type 1 diabetes.
- To explore the role of maternal iron supplementation, iron biomarkers, and genetic factors in T1D development.
Main Methods:
- Utilized data from the Norwegian Mother and Child cohort study (n=94,209 pregnancies).
- Assessed incidence of T1D in relation to maternal iron supplementation, cord plasma iron biomarkers, and maternal/fetal HFE genotypes.
- Analyzed associations with cord blood DNA methylation and maternal cytokines.
Main Results:
- Maternal iron supplementation was associated with a higher incidence of T1D in offspring (aHR 1.33).
- Maternal HFE genotypes linked to higher iron stores were associated with increased offspring diabetes risk (OR 1.45).
- Cord plasma iron biomarkers and maternal anemia were not significantly associated with T1D risk.
Conclusions:
- Prenatal iron exposure, particularly maternal iron supplementation and specific maternal HFE genotypes, may represent a risk factor for type 1 diabetes in children.
- Further research is warranted to elucidate the mechanisms linking iron metabolism during pregnancy to T1D pathogenesis.
Abstract:
Iron overload due to environmental or genetic causes have been associated diabetes. We hypothesized that prenatal iron exposure is associated with higher risk of childhood type 1 diabetes. In the Norwegian Mother and Child cohort study (n = 94,209 pregnancies, n = 373 developed type 1 diabetes) the incidence of type 1 diabetes was higher in children exposed to maternal iron supplementation than unexposed (36.8/100,000/year compared to 28.6/100,000/year, adjusted hazard ratio 1.33, 95%CI: 1.06-1.67). Cord plasma biomarkers of high iron status were non-significantly associated with higher risk of type 1 diabetes (ferritin OR = 1.05 [95%CI: 0.99-1.13] per 50 mg/L increase; soluble transferrin receptor: OR = 0.91 [95%CI: 0.81-1.01] per 0.5 mg/L increase). Maternal but not fetal HFE genotypes causing high/intermediate iron stores were associated with offspring diabetes (odds ratio: 1.45, 95%CI: 1.04, 2.02). Maternal anaemia or non-iron dietary supplements did not significantly predict type 1 diabetes. Perinatal iron exposures were not associated with cord blood DNA genome-wide methylation, but fetal HFE genotype was associated with differential fetal methylation near HFE. Maternal cytokines in mid-pregnancy of the pro-inflammatory M1 pathway differed by maternal iron supplements and HFE genotype. Our results suggest that exposure to iron during pregnancy may be a risk factor for type 1 diabetes in the offspring.
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