Yifang Hu, Wenwen Feng, Huanhuan Chen, He Shi, Lin Jiang, Xuqin Zheng, Xiaoyun Liu, Wensong Zhang, Yaoqi Ge, Yun Liu, Dai Cui
Journal: Clinical and translational science 2022;14(4):1390-1402
PMID: 33650299
Hashimoto thyroiditis (HT) is the most common thyroid autoimmune disease. Multiple factors contribute to the development of the disease leading to immune system-mediated destruction of the thyroid gland. In the absence of specific therapeutic approaches that address the immunological activity, thyroid hormone replacement is the primary treatment. Selenium (Se) is an essential trace element for humans and the thyroid gland utilises high amounts of selenium for the production of enzymes and antioxidants. Supplementing Se has shown positive effects in HT, as demonstrated in some studies. Yet, there have been inconsistencies in the results and the understanding of the mechanisms involved are limited. The authors of this prospective, randomized controlled study tried to shed some light on the efficacy of Se supplementation and its mechanisms. 43 HT-patients on no thyroid medication, received 200mcg Se per day for 6 months. Various markers were assessed including antibodies, thyroid stimulating hormone (TSH), antioxidant enzymes and T-helper immune cells that regulate immunological activity, which were compared to the HT-control group (n=47) and healthy individuals (n=36). The outcome of the intervention showed that Se supplementation can reduce thyroid antibodies, and TSH and can increase antioxidant enzymes in patients with HT and along with the findings the authors discussed some potential mechanisms at play. This study suggests that supplementary Se can benefit HT, particularly subclinical HT.
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A prospective randomised controlled trial was conducted to investigate the effect of selenium (Se) supplementation in patients with Hashimoto’s thyroiditis (HT). The study also explored the potential mechanisms of action of Selenium in thyroid autoimmunity.
One hundred and twenty-six subjects (90 with HT and 36 healthy individuals) were included in the study. The patients with HT were randomly assigned into two groups. The Se-treated group (n=43) received 200ug of selenium in a selenious yeast tablet (SYT) per day for 6 months. No treatment was given to the control group (n=47). At the endpoint, 126/126 subjects completed the study.
Primary clinical outcomes were:
Secondary clinical outcomes were:

Selenium (Se) is an essential trace element in human. Recent studies of Se supplementation on the effect of Hashimoto's thyroiditis (HT) have been reported, but the exact benefit is unclear as well as the underlying immunologic mechanism. We aimed to evaluate the clinical effect of Se supplement in patients with HT, and explore the potential mechanism against thyroid autoimmunity. A prospective, randomized-controlled study was performed in patients with HT assigned to two groups. Se-treated group (n = 43) received selenious yeast tablet (SYT) for 6 months, whereas no treatment in control group (n = 47). The primary outcome is the change of thyroid peroxidase antibody (TPOAb) or thyroglobulin antibody (TGAb). Second, thyroid function, urinary iodine, Se, Glutathione peroxidase3 (GPx3), and Selenoprotein P1 (SePP1) levels were measured during the SYT treatment. Meanwhile, regulatory T cells (Tregs) and their subsets activated Tregs (aTregs), resting Tregs, and secreting Tregs, as well as Helios and PD-1 expression on these cells were also detected. The results showed that SYT treatment significantly decreased TPOAb, TGAb, and thyroid stimulating hormone (TSH) levels, accompanied with the increased Se, GPx3, and SePP1, compared with the control group. Subgroup analysis revealed that subclinical HT may benefit more from this treatment in the decrease of TSH levels by interaction test. Moreover, the percentage of aTregs, Helios/Tregs, and Helios/aTregs were significantly higher in the Se-treated group than control. In conclusion, Se supplementation may have a beneficial effect on thyroid autoantibodies and thyroid function by increasing the antioxidant activity and upregulating the activated Treg cells.
© 2021 The Authors. Clinical and Translational Science published by Wiley Periodicals LLC on behalf of the American Society for Clinical Pharmacology and Therapeutics.
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