Literature identifier | Study type | Test dosage | Effective dosage | Endocrine-mediated endpoints | Systems-level perturbations |
---|---|---|---|---|---|
PMID:10641015 | IVR | 25 mg/kg | 25 mg/kg | Decreased prostate weights | Reproductive endocrine-mediated perturbations |
IVR | 25 mg/kg | 25 mg/kg | Decreased weights of seminal vesicles | Reproductive endocrine-mediated perturbations | |
PMID:11248141 | IVR | 20 mg/kg/day | 20 mg/kg/day | Alterations in preputial separation | Reproductive endocrine-mediated perturbations |
IVR | 20 mg/kg/day | 20 mg/kg/day | Decreased Dihydroxytestosterone (DHT) levels | Reproductive endocrine-mediated perturbations | |
IVR | 20 mg/kg/day | 20 mg/kg/day | Decreased weights of epididymis | Reproductive endocrine-mediated perturbations | |
IVR | 80 mg/kg/day | 80 mg/kg/day | Decreased prostate weights | Reproductive endocrine-mediated perturbations | |
IVR | 80 mg/kg/day | 80 mg/kg/day | Alterations in preputial separation | Reproductive endocrine-mediated perturbations | |
IVR | 80 mg/kg/day | 80 mg/kg/day | Decreased Dihydroxytestosterone (DHT) levels | Reproductive endocrine-mediated perturbations | |
IVR | 80 mg/kg/day | 80 mg/kg/day | Decreased weights of epididymis | Reproductive endocrine-mediated perturbations | |
IVR | 80 mg/kg/day | 80 mg/kg/day | Decreased weights of seminal vesicles | Reproductive endocrine-mediated perturbations | |
PMID:15013065 | IVR | 5 mg/kg/day | 5 mg/kg/day | Increased cowper's gland weights | Reproductive endocrine-mediated perturbations |
IVR | 5 mg/kg/day | 5 mg/kg/day | Increased prostate weights | Reproductive endocrine-mediated perturbations | |
IVR | 5 mg/kg/day | 5 mg/kg/day | Decreased weights of seminal vesicles | Reproductive endocrine-mediated perturbations | |
IVR | 1 mg/kg/day | 1 mg/kg/day | Increased prostate weights | Reproductive endocrine-mediated perturbations | |
IVR | 1 mg/kg/day | 1 mg/kg/day | Decreased weights of seminal vesicles | Reproductive endocrine-mediated perturbations | |
IVR | 1 mg/kg/day | 1 mg/kg/day | Increased cowper's gland weights | Reproductive endocrine-mediated perturbations | |
IVR | 0.2 mg/kg/day | - | No significant effects observed | - | |
IVR | 25 mg/kg/day | 25 mg/kg/day | Increased weights of penis | Reproductive endocrine-mediated perturbations | |
IVR | 25 mg/kg/day | 25 mg/kg/day | Increased cowper's gland weights | Reproductive endocrine-mediated perturbations | |
IVR | 25 mg/kg/day | 25 mg/kg/day | Increased prostate weights | Reproductive endocrine-mediated perturbations | |
IVR | 25 mg/kg/day | 25 mg/kg/day | Decreased weights of seminal vesicles | Reproductive endocrine-mediated perturbations | |
PMID:30768126 | IVR | 10 mg/kg/day | 10 mg/kg/day | Affects fatty acid metabolism | Metabolic endocrine-mediated perturbations |
IVR | 10 mg/kg/day | 10 mg/kg/day | Affects developmental process | Developmental endocrine-mediated perturbations | |
IVR | 10 mg/kg/day | 10 mg/kg/day | Affects calcium signaling | Metabolic endocrine-mediated perturbations | |
IVR | 10 mg/kg/day | 10 mg/kg/day | Affects anogenital distance in offspring | Developmental endocrine-mediated perturbations;Reproductive endocrine-mediated perturbations | |
IVR | 10 mg/kg/day | 10 mg/kg/day | Affects gluconeogenesis | Metabolic endocrine-mediated perturbations | |
IVR | 10 mg/kg/day | 10 mg/kg/day | Affects glucose metabolism | Metabolic endocrine-mediated perturbations | |
IVR | 10 mg/kg/day | 10 mg/kg/day | Exhibit sexual dimorphism | Neurological endocrine-mediated perturbations;Reproductive endocrine-mediated perturbations |
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.