ArticleFEBS open bio2021
Differentiation between thyroid-associated orbitopathy and Graves' disease by iTRAQ-based quantitative proteomic analysis.
Article in FEBS open bio, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers, 2 of them syntheses that pooled it.
What it found
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Who cites it
6 citing papers in PubMed, 2 syntheses or guidelines pooled it, 7 citations in OpenAlex.
- Multi-Omics Approaches to Discover Biomarkers of Thyroid Eye Disease: A Systematic Review.International journal of biological sciences · 2024Pooled it
- A systematic review of multimodal clinical biomarkers in the management of thyroid eye disease.Reviews in endocrine & metabolic disorders · 2022Pooled it
- Bulk and Single-cell transcriptomic profiling identifies C1QA as an Immune-Associated hub genes in graves' ophthalmopathy.Endocrine · 2025Article
- Thyroid-associated ophthalmopathy: the role of oxidative stress.Frontiers in endocrinology · 2024Review
- Tears as a Source of Biomarkers in the Diagnosis of Graves' Orbitopathy.Biomolecules · 2022Review
- Tear-derived exosomal biomarkers of Graves' ophthalmopathy.Frontiers in immunology · 2022Article
Corrections and comments
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Authors and funding
4 authors at 3 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Graves' ophthalmopathy, also known as thyroid-associated orbitopathy (TAO), is the most common inflammatory eye disease in adults. The most common etiology for TAO is Graves' disease (GD); however, proteomic research focusing on differences between GD and TAO is limited. This study aimed to identify differentially expressed proteins between thyroid-associated orbitopathy (TAO) and GD. Furthermore, we sought to explore the pathogenesis of TAO and elucidate the differentiation process via specific markers. Serum samples of three patients with TAO, GD, and healthy controls, respectively, were collected. These samples were measured using the iTRAQ technique coupled with mass spectrometry. Differentially expressed proteins in TAO and GD were identified by proteomics; 3172 quantified proteins were identified. Compared with TAO, we identified 110 differential proteins (27 proteins were upregulated and 83 were downregulated). In addition, these differentially expressed proteins were closely associated with cellular processes, metabolic processes, macromolecular complexes, signal transduction, and the immune system. The corresponding functions were protein, calcium ion, and nucleic acid binding. Among the differential proteins, MYH11, P4HB, and C4A were markedly upregulated in TAO patients and have been reported to participate in apoptosis, autophagy, the inflammatory response, and the immune system. A protein-protein interaction network analysis was performed. Proteomics demonstrated valuable large-scale protein-related information for expounding the pathogenic mechanism underlying TAO. This research provides new insights and potential targets for studying GD with TAO.
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Registered trials
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