Proteomics unveil candidate biomarkers and pathogenesis of subacute thyroiditis

蛋白质组学揭示亚急性甲状腺炎的候选生物标志物和发病机制

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Abstract

ABSTRACT: Subacute thyroiditis (SAT) is an inflammatory thyroid disease characterized by neck pain, tenderness, general symptoms and thyroid dysfunction. Despite gaining new insights into the epidemiology, pathogenesis and treatment of SAT in recent years, the exact pathogenesis and determinants of its clinical progression remain unclear. Here, we profiled thyroid in situ protein alterations in fine-needle aspiration biopsy samples from SAT patients using proteomic analysis and uncovered 57 differentially abundant proteins. Gene ontology and KEGG enrichment analyses identified that these proteins were enriched in processes involving infection, inflammatory response and cell adhesion and junction, which likely contribute to the pathogenesis. Moreover, the top three high-abundance proteins (nicotinamide N-methyltransferase (NNMT), FTL and thymidine phosphorylase (TYMP)) were further validated in the plasma from a larger SAT cohort using an enzyme-linked immunosorbent assay. After adjusting for sex, Spearman correlation analysis showed that NNMT, FTL and TYMP levels were positively correlated with FT3, FT4, T3, T4, Tg and erythrocyte sedimentation rate and negatively correlated with thyroid-stimulating hormone. Furthermore, binary logistic regression analyses revealed that NNMT, FTL and TYMP were independent factors of SAT. We also conducted a receiver operating characteristic curve analysis to assess the diagnostic accuracy of NNMT, FTL and TYMP for SAT. The results revealed that each factor demonstrated an area under the curve score above 0.8. Thus, these high-abundance proteins can potentially serve as biomarkers for SAT diagnosis and outcome prediction. Our findings provide valuable insights into SAT biomarkers and shed light on the potential pathogenesis and therapeutic targets of SAT. HIGHLIGHTS: Proteomic profiling identifies NNMT, FTL and TYMP as potential biomarkers for SAT.This study reveals significant enrichment of infection, inflammatory response and cell adhesion pathways in SAT pathogenesis.Elevated plasma NNMT, FTL and TYMP levels reflect SAT-related inflammatory and metabolic alterations.

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