Perchlorate


Literature identifierStudy typeTest dosageEffective dosageEndocrine-mediated endpointsSystems-level perturbations
PMID:12204829IVH0.02 mg/kg/day 0.02 mg/kg/dayAffects iodine uptake into thyroidMetabolic endocrine-mediated perturbations
IVH0.007 mg/kg/day -No significant effects observed-
IVH0.5 mg/kg/day 0.5 mg/kg/dayDecrease in TSH levelsMetabolic endocrine-mediated perturbations
IVH0.1 mg/kg/day 0.1 mg/kg/dayAffects iodine uptake into thyroidMetabolic endocrine-mediated perturbations
PMID:18560531IVR30 mg/L 30 mg/LDecrease in T4 levelsMetabolic endocrine-mediated perturbations
IVR30 mg/L 30 mg/LAffects neuronal signalingNeurological endocrine-mediated perturbations
IVR1000 mg/L 1000 mg/LDecrease in T4 levelsMetabolic endocrine-mediated perturbations
IVR1000 mg/L 1000 mg/LDecrease in T3 levelsMetabolic endocrine-mediated perturbations
IVR1000 mg/L 1000 mg/LIncrease in TSH levelsMetabolic endocrine-mediated perturbations
IVR1000 mg/L 1000 mg/LAffects neuronal signalingNeurological endocrine-mediated perturbations
IVR300 mg/L 300 mg/LAffects neuronal signalingNeurological endocrine-mediated perturbations
IVR300 mg/L 300 mg/LDecrease in T4 levelsMetabolic endocrine-mediated perturbations
PMID:20479570IVTH0.00000001 - 0.0001 M 0.0001 MAffects iodine uptake into thyroidMetabolic endocrine-mediated perturbations
PMID:29139221IVR35 mg/kg/day 35 mg/kg/dayIncrease in Thyrotropin-releasing hormone (TRH) levelsMetabolic endocrine-mediated perturbations
IVR35 mg/kg/day 35 mg/kg/dayDecrease in T4 levelsMetabolic endocrine-mediated perturbations
IVR35 mg/kg/day 35 mg/kg/dayIncrease in TSH levelsMetabolic endocrine-mediated perturbations
IVR35 mg/kg/day 35 mg/kg/dayAlters hypothalamic-pituitary-thyroid axisMetabolic endocrine-mediated perturbations;Neurological endocrine-mediated perturbations
IVR35 mg/kg/day 35 mg/kg/dayAffects cytokine signalingImmunological endocrine-mediated perturbations
IVR35 mg/kg/day 35 mg/kg/dayDecrease in T3 levelsMetabolic endocrine-mediated perturbations
IVR35 mg/kg/day 35 mg/kg/dayChanges in morphology of thyroid glandMetabolic endocrine-mediated perturbations

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We have built a comprehensive resource which compiles potential endocrine disrupting chemicals (EDCs) based on the observed adverse effects or endocrine-mediated endpoints in published experiments on humans or rodents to support basic research. We are not responsible for any errors or omissions in the published research articles or supporting literature on potential EDCs compiled in this resource. Users are advised to exercise their own judgement on the weight of evidence for potential EDCs compiled in this resource. Importantly, our sole goal to build this resource on potential EDCs is to enable future basic research towards better understanding of the systems-level perturbations upon chemical exposure rather than influencing regulatory advice on chemical use.