Background: Perchlorate, thiocyanate, and nitrate can block iodide transport at the sodium iodide symporter (NIS) and this can subsequently lead to decreased thyroid hormone production and hypothyroidism. NIS inhibitor exposure has been shown to reduce iodide uptake and thyroid hormone levels; therefore we hypothesized that maternal NIS inhibitor exposure will influence both maternal and newborn thyroid function.Methods: Spot urine samples were collected from 185 lactating mothers and evaluated for perchlorate, thiocyanate, and nitrate concentrations. Blood and colostrum samples were collected from the same participants in the first 48 h after delivery. Thyroid hormones and thyroid-related antibodies (TSH, fT3, fT4, anti-TPO, anti-Tg) were ...
International audienceBackground: In vitro and toxicological studies have shown that non-persistent ...
Perchlorate, nitrate, and thiocyanate are well-known inhibitors of the sodium-iodide symporter and m...
<div><p>Perchlorate, nitrate, and thiocyanate are competitive inhibitors of the sodium iodide sympor...
AbstractBackgroundAdequate maternal thyroid function during pregnancy is necessary for normal fetal ...
BACKGROUND: Perchlorate and similar anions compete with iodine for uptake into the thyroid by the so...
This article is freely available via Open Access. Click on the Additional Link above to access the f...
Context: Thyroid hormone, requiring adequate maternal iodine intake, is critical for fetal neurodeve...
Perchlorate, nitrate, and thiocyanate are competitive inhibitors of the sodium iodide symporter of t...
BACKGROUND: At high medicinal doses perchlorate is known to decrease the production of thyroid hormo...
Objective: Thyroid dysfunction is associated with impaired cognitive development. Perchlorate decrea...
BackgroundPerchlorate is commonly found in the environment and known to inhibit thyroid function at ...
In sufficient amounts, perchlorate can inhibit iodine uptake by the thyroid, ultimately leading to d...
Background: Perchlorate-induced natrium-iodide symporter (NIS) interference is a well-recognized thy...
Background: Iodine is an essential micronutrient for thyroid hormone production. Adequate iodine int...
Perchlorate, nitrate, and thiocyanate are well-known inhibitors of the sodium-iodide symporter and m...
International audienceBackground: In vitro and toxicological studies have shown that non-persistent ...
Perchlorate, nitrate, and thiocyanate are well-known inhibitors of the sodium-iodide symporter and m...
<div><p>Perchlorate, nitrate, and thiocyanate are competitive inhibitors of the sodium iodide sympor...
AbstractBackgroundAdequate maternal thyroid function during pregnancy is necessary for normal fetal ...
BACKGROUND: Perchlorate and similar anions compete with iodine for uptake into the thyroid by the so...
This article is freely available via Open Access. Click on the Additional Link above to access the f...
Context: Thyroid hormone, requiring adequate maternal iodine intake, is critical for fetal neurodeve...
Perchlorate, nitrate, and thiocyanate are competitive inhibitors of the sodium iodide symporter of t...
BACKGROUND: At high medicinal doses perchlorate is known to decrease the production of thyroid hormo...
Objective: Thyroid dysfunction is associated with impaired cognitive development. Perchlorate decrea...
BackgroundPerchlorate is commonly found in the environment and known to inhibit thyroid function at ...
In sufficient amounts, perchlorate can inhibit iodine uptake by the thyroid, ultimately leading to d...
Background: Perchlorate-induced natrium-iodide symporter (NIS) interference is a well-recognized thy...
Background: Iodine is an essential micronutrient for thyroid hormone production. Adequate iodine int...
Perchlorate, nitrate, and thiocyanate are well-known inhibitors of the sodium-iodide symporter and m...
International audienceBackground: In vitro and toxicological studies have shown that non-persistent ...
Perchlorate, nitrate, and thiocyanate are well-known inhibitors of the sodium-iodide symporter and m...
<div><p>Perchlorate, nitrate, and thiocyanate are competitive inhibitors of the sodium iodide sympor...