Completed Pregnancy, Children & Inherited Conditions Diabetes, Hormones & Metabolism

Elucidating the genetic and environmental determinants of congenital hypothyroidism

In plain English

AI plain-English summary

A single genetic mutation in a thyroid cell's salt transporter can cause congenital hypothyroidism, but scientists do not yet understand how that transporter normally helps produce thyroid hormone. This matters because the number of babies born with congenital hypothyroidism—where the thyroid gland is present but not working—is rising, and doctors cannot explain why. The condition can be permanent or temporary, and its causes remain poorly defined. This research will investigate whether environmental factors such as iodine, selenium, and iron levels, alongside common pollutants like perchlorate and thiocyanate, trigger the disease in genetically susceptible children. If the study confirms that micronutrient deficiencies or endocrine disruptors contribute to congenital hypothyroidism, it could lead to public health interventions such as micronutrient supplementation during pregnancy to prevent or treat the condition. The work also examines whether mothers carrying one copy of a DUOX2 mutation—which impairs hydrogen peroxide production in the thyroid—develop hypothyroidism during pregnancy due to increased hormone demand. That finding would mandate future studies on whether levothyroxine treatment improves neurodevelopmental outcomes in their children.

View original technical description
I first identified mutations in the anion transporter SLC26A7 as a novel genetic cause of human and murine congenital hypothyroidism (CH), but its molecular role in thyroid hormonogenesis remains unclear. I will investigate SLC26A7 function in cultured primary thyrocytes, initially evaluating its role in pH regulation, seeking new insights into thyroid hormone biosynthesis. The incidence of CH with a normally-located gland-in-situ (GIS CH) is increasing, but its determinants are poorly defined. In a case-control study, I will investigate the roles of genetic variants, micronutrients (iodine, selenium, iron) and endocrine disruptors (perchlorate, thiocyanate and nitrate), in the pathogenesis of permanent and transient GIS CH. Confirmed involvement of environmental factors will have public health ramefications and mandate future trials of micronutrient supplementation for treatment or prevention of CH. The study will also provide insights into the aetiology of transient CH, a clinically important entity for which the cause is largely unknown. DUOX2/DUOXA2 mutations impair thyroidal H2O2 production, often causing transient CH. I will investigate whether maternal heterozygosity for DUOX2/DUOXA2 mutations in association with increased gestational demand for thyroid hormone biosynthesis, causes hypothyroidism during pregnancy. Gestational thyroid dysfunction would mandate future studies of childhood neurodevelopmental outcome and levothyroxine treatment in such patients.

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Researchers

Nadia Schoenmakers (EPMC Awardee)Stephen O'Rahilly (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

The genetic basis of congenital hypothyroidism
19BI05 - Investigating the Aetiology and Phenotypic Spectrum of Congenital Hypothyroidism
Investigating the Aetiology and Phenotypic Spectrum of Congenital Hypothyroidism
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Original classification

Senior Research Fellowship

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