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Selenium exerts protective effects against oxidative stress and cell damage in human thyrocytes and fibroblasts
- Source :
- Endocrine. 68:151-162
- Publication Year :
- 2019
- Publisher :
- Springer Science and Business Media LLC, 2019.
-
Abstract
- Selenium, incorporated into specific seleno-enzymes, is essential to proper thyroid function and protect cells from oxidative damage induced by H2O2 during thyroid hormone synthesis. Several studies indicated that low selenium levels are associated with thyroid autoimmunity and related disorders, but real effectiveness of selenium supplementation in such diseases is still controversial. We evaluated the effect of selenium on oxidative damage in human thyrocytes and thyroid fibroblasts in vitro. To induce oxidative stress, primary cultures were exposed to H2O2, in the presence or the absence of selenium, as either selenomethionine or selenite. We performed the following assays: cell viability, caspase-3 activity, BCL-2/BAX gene expression, DNA fragmentation, malondialdehyde levels, and glutathione peroxidase (GPx) activity measurements. Thyrocytes and thyroid fibroblasts exposed to H2O2 and preincubated with both selenocompounds displayed a significant dose-dependent increase in cell viability compared to cells incubated with H2O2 alone. Pretreatment with selenomethionine and selenite significantly reduced caspase-3 activity and BAX mRNA levels and increased BCL-2 mRNA levels in a dose-dependent manner. Accordingly, H2O2 induced a diffuse pattern of DNA degradation and an increase in malondialdehyde levels, which was prevented by the pretreatment with both selenomethionine and selenite. Both selenocompounds induced an increase in GPx activity, suggesting that these protective effects may be, almost in part, mediated by these selenoproteins. In human thyrocytes and fibroblasts in vitro, selenium exerts protective effects against H2O2 in a dose-dependent manner, being selenite effective at lower doses than selenomethionine.
- Subjects :
- inorganic chemicals
medicine.medical_specialty
Apoptosis, Autoimmunity, Fibroblasts, Oxidative stress, Selenium, Thyroid cells
Endocrinology, Diabetes and Metabolism
Apoptosis
Autoimmunity
Fibroblasts
Oxidative stress
Selenium
Thyroid cells
chemistry.chemical_element
030209 endocrinology & metabolism
medicine.disease_cause
03 medical and health sciences
chemistry.chemical_compound
0302 clinical medicine
Endocrinology
Internal medicine
medicine
Humans
Viability assay
Cell damage
chemistry.chemical_classification
Glutathione Peroxidase
Glutathione peroxidase
Hydrogen Peroxide
Malondialdehyde
medicine.disease
chemistry
Thyroid Epithelial Cells
030220 oncology & carcinogenesis
Thyroid function
Subjects
Details
- ISSN :
- 15590100 and 1355008X
- Volume :
- 68
- Database :
- OpenAIRE
- Journal :
- Endocrine
- Accession number :
- edsair.doi.dedup.....f8a845148fbe3750448aaa927357df76