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3. [Untitled]

4. A developmental neurotoxicity adverse outcome pathway (DNT-AOP) with voltage gate sodium channel (VGSC) inhibition as a molecular initiating event (MiE).

5. Establishment of a human cell-based in vitro battery to assess developmental neurotoxicity hazard of chemicals.

6. Current status and future directions for a neurotoxicity hazard assessment framework that integrates in silico approaches.

7. Evaluating Confidence in Toxicity Assessments Based on Experimental Data and In Silico Predictions.

8. The Tox21 10K Compound Library: Collaborative Chemistry Advancing Toxicology.

9. Harmonized Cross-Species Assessment of Endocrine and Metabolic Disruptors by Ecotox FACTORIAL Assay.

10. Evaluating Chemicals for Thyroid Disruption: Opportunities and Challenges with in Vitro Testing and Adverse Outcome Pathway Approaches.

11. Limited Chemical Structural Diversity Found to Modulate Thyroid Hormone Receptor in the Tox21 Chemical Library.

12. International Regulatory and Scientific Effort for Improved Developmental Neurotoxicity Testing.

13. Corrigendum to Recommendation on test readiness criteria for new approach methods in toxicology: exemplified for developmental neurotoxicity.

14. Consensus statement on the need for innovation, transition and implementation of developmental neurotoxicity (DNT) testing for regulatory purposes.

15. Recommendation on test readiness criteria for new approach methods in toxicology: Exemplified for developmental neurotoxicity.

16. The US Federal Tox21 Program: A strategic and operational plan for continued leadership.

17. Effects of an environmentally-relevant mixture of pyrethroid insecticides on spontaneous activity in primary cortical networks on microelectrode arrays.

18. Towards a 21st-century roadmap for biomedical research and drug discovery: consensus report and recommendations.

19. FutureTox III: Bridges for Translation.

20. Comment on "On the Utility of ToxCast™ and ToxPi as Methods for Identifying New Obesogens".

21. OECD/EFSA workshop on developmental neurotoxicity (DNT): The use of non-animal test methods for regulatory purposes.

22. The Next Generation of Risk Assessment Multi-Year Study-Highlights of Findings, Applications to Risk Assessment, and Future Directions.

23. ToxCast Chemical Landscape: Paving the Road to 21st Century Toxicology.

24. Using ToxCast™ Data to Reconstruct Dynamic Cell State Trajectories and Estimate Toxicological Points of Departure.

25. Environmentally relevant pyrethroid mixtures: A study on the correlation of blood and brain concentrations of a mixture of pyrethroid insecticides to motor activity in the rat.

26. Tiered High-Throughput Screening Approach to Identify Thyroperoxidase Inhibitors Within the ToxCast Phase I and II Chemical Libraries.

27. Integrated Model of Chemical Perturbations of a Biological Pathway Using 18 In Vitro High-Throughput Screening Assays for the Estrogen Receptor.

28. Expanding the test set: Chemicals with potential to disrupt mammalian brain development.

29. Evaluation of the ToxRTool's ability to rate the reliability of toxicological data for human health hazard assessments.

30. International STakeholder NETwork (ISTNET): creating a developmental neurotoxicity (DNT) testing road map for regulatory purposes.

31. Putative adverse outcome pathways relevant to neurotoxicity.

32. The human toxome project.

33. Environmentally relevant mixing ratios in cumulative assessments: a study of the kinetics of pyrethroids and their ester cleavage metabolites in blood and brain; and the effect of a pyrethroid mixture on the motor activity of rats.

34. Development of a thyroperoxidase inhibition assay for high-throughput screening.

35. Pathways of Toxicity.

36. Cross-species analysis of thyroperoxidase inhibition by xenobiotics demonstrates conservation of response between pig and rat.

37. Evidence for triclosan-induced activation of human and rodent xenobiotic nuclear receptors.

38. Current perspectives on the use of alternative species in human health and ecological hazard assessments.

39. An empirical approach to sufficient similarity: combining exposure data and mixtures toxicology data.

40. Mechanism-based testing strategy using in vitro approaches for identification of thyroid hormone disrupting chemicals.

41. An animal model of marginal iodine deficiency during development: the thyroid axis and neurodevelopmental outcome.

42. In vitro perturbations of targets in cancer hallmark processes predict rodent chemical carcinogenesis.

43. Using in vitro high throughput screening assays to identify potential endocrine-disrupting chemicals.

44. Environmentally relevant mixtures in cumulative assessments: an acute study of toxicokinetics and effects on motor activity in rats exposed to a mixture of pyrethroids.

45. Juvenile toxicity testing protocols for chemicals.

46. Developmental triclosan exposure decreases maternal, fetal, and early neonatal thyroxine: a dynamic and kinetic evaluation of a putative mode-of-action.

47. Optimal design for the precise estimation of an interaction threshold: the impact of exposure to a mixture of 18 polyhalogenated aromatic hydrocarbons.

48. Developmental neurotoxicity testing: a path forward.

49. Developmental neurotoxicity guideline study: issues with methodology, evaluation and regulation.

50. Advancing the science of developmental neurotoxicity (DNT): testing for better safety evaluation.

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