A Cross-Species Analysis Reveals Dysthyroidism of the Ovaries as a Common Trait of Premature Ovarian Aging.
Marco ColellaDanila CuomoValeria NittoliAngela AmoresanoAlfonsina PorcielloCarla RealeLuca RobertoFilomena RussoNicola Antonino RussoMario De FeliceMassimo MallardoConcetta AmbrosinoPublished in: International journal of molecular sciences (2023)
Although the imbalance of circulating levels of Thyroid Hormones (THs) affects female fertility in vertebrates, its involvement in the promotion of Premature Ovarian Aging (POA) is debated. Therefore, altered synthesis of THs in both thyroid and ovary can be a trait of POA. We investigated the relationship between abnormal TH signaling, dysthyroidism, and POA in evolutionary distant vertebrates: from zebrafish to humans. Ovarian T3 signaling/metabolism was evaluated by measuring T3 levels, T3 responsive transcript, and protein levels along with transcripts governing T3 availability (deiodinases) and signaling (TH receptors) in distinct models of POA depending on genetic background and environmental exposures (e.g., diets, pesticides). Expression levels of well-known ( Amh , Gdf9 , and Inhibins) and novel ( miR143/145 and Gas5 ) biomarkers of POA were assessed. Ovarian dysthyroidism was slightly influenced by genetics since very few differences were found between C57BL/6J and FVB/NJ females. However, diets exacerbated it in a strain-dependent manner. Similar findings were observed in zebrafish and mouse models of POA induced by developmental and long-life exposure to low-dose chlorpyrifos (CPF). Lastly, the T3 decrease in follicular fluids from women affected by diminished ovarian reserve, as well as of the transcripts modulating T3 signaling/availability in the cumulus cells, confirmed ovarian dysthyroidism as a common and evolutionary conserved trait of POA.
Keyphrases
- genome wide
- low dose
- cell proliferation
- weight loss
- risk assessment
- dna methylation
- induced apoptosis
- gene expression
- polycystic ovary syndrome
- binding protein
- metabolic syndrome
- pregnant women
- air pollution
- small molecule
- oxidative stress
- rna seq
- endoplasmic reticulum stress
- mass spectrometry
- crispr cas
- copy number
- human health
- amino acid
- single molecule
- gas chromatography