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7. Activation and inactivation of thyroid hormone by deiodinases: local action with general consequences

8. Sonic hedgehog-induced type 3 deiodinase blocks thyroid hormone action enhancing proliferation of normal and malignant keratinocytes

9. TSH Trajectories During Levothyroxine Treatment in the Brazilian Longitudinal Study of Adult Health (ELSA-Brasil) Cohort.

10. Treatment Preferences in Patients with Hypothyroidism: an Analysis of Eleven Randomized Controlled Trials.

11. Thyroid Hormone Homeostasis in Levothyroxine-treated Patients: Findings From ELSA-Brasil.

12. A Scholarly Dialog on Recent Trends in National Institutes of Health's Funding for the Thyroid Field.

13. Thr92Ala-DIO2 heterozygosity is associated with skeletal muscle mass and myosteatosis in patients with COVID-19.

15. The Musashi-1-type 2 deiodinase pathway regulates astrocyte proliferation.

16. Genetic Background Strongly Influences the Impact of Carrying the Thr92Ala-DIO2 Polymorphism in the Male Mouse.

17. Gene polymorphisms and thyroid hormone signaling: implication for the treatment of hypothyroidism.

18. A Cross-Sectional Analysis of Cardiovascular and Bone Health Care Utilization During Treatment With Thyroid Hormone.

19. Impaired T3 uptake and action in MCT8-deficient cerebral organoids underlie Allan-Herndon-Dudley syndrome.

20. Editorial: (Re)defining hypothyroidism: the key to patient-centered treatment.

21. Emerging Therapies in Hypothyroidism.

22. Localized T3 production modifies the transcriptome and promotes the hepatocyte-like lineage in iPSC-derived hepatic organoids.

23. Demographic, Healthcare Access, and Dietary Factors Associated With Thyroid Hormone Treatments for Hypothyroidism.

24. Sustained Pituitary T3 Production Explains the T4-mediated TSH Feedback Mechanism.

25. The Effects of Patient Characteristics on the Management of Subclinical Hypothyroidism: A Survey of Faculty and Trainees.

26. The D2D3 form of uPAR acts as an immunotoxin and may cause diabetes and kidney disease.

27. Levothyroxine Treatment Adequacy and Formulation Changes in Patients with Hypothyroidism: A Retrospective Study of Real-World Data from the United States.

28. Are We Restoring Thyroid Hormone Signaling in Levothyroxine-Treated Patients With Residual Symptoms of Hypothyroidism?

29. Axonal T3 uptake and transport can trigger thyroid hormone signaling in the brain.

30. Serum Thyrotropin and Triiodothyronine Levels in Levothyroxine-treated Patients.

31. Postpartum depression in rats causes poor maternal care and neurochemical alterations on dams and long-lasting impairment in sociability on the offspring.

32. Different Hypothalamic Mechanisms Control Decreased Circulating Thyroid Hormone Levels in Infection and Fasting-Induced Non-Thyroidal Illness Syndrome in Male Thyroid Hormone Action Indicator Mice.

33. T3 levels and thyroid hormone signaling.

35. Multisensory Stimulation Improves Cognition and Behavior in Adult Male Rats Born to LT4-treated Thyroidectomized Dams.

36. Suboptimal Thyroid Hormone Replacement Is Associated With Worse Hospital Outcomes.

37. Age Worsens the Cognitive Phenotype in Mice Carrying the Thr92Ala-DIO2 Polymorphism.

38. Selpercatinib-Induced Hypothyroidism Through Off-Target Inhibition of Type 2 Iodothyronine Deiodinase.

39. Heterozygote Advantage of the Type II Deiodinase Thr92Ala Polymorphism on Intrahospital Mortality of COVID-19.

40. The relevance of T 3 in the management of hypothyroidism.

41. Inactivation of Type 3 Deiodinase Results in Life-long Changes in the Brown Adipose Tissue Transcriptome in the Male Mouse.

42. Primary hypothyroidism and quality of life.

43. Brain Fog in Hypothyroidism: Understanding the Patient's Perspective.

45. Thyroid Hormone Levels During Hospital Admission Inform Disease Severity and Mortality in COVID-19 Patients.

46. Comparative Effectiveness of Levothyroxine, Desiccated Thyroid Extract, and Levothyroxine+Liothyronine in Hypothyroidism.

48. Assessment of children in the autistic spectrum disorder that carry the Thr92Ala-DIO2 polymorphism.

49. Deiodinases and the Metabolic Code for Thyroid Hormone Action.

50. Neonatal thyroxine activation modifies epigenetic programming of the liver.

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