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Pathogenic Implications of the THY1/NF-κB Feedback Relationship in Osteoarthritis and Its Potential as a Therapeutic Target
by
Ji, Entong
, Wang, Chen
, Yan, Yiqun
, Yu, Jiangqi
, Cheng, Wendan
, Zhang, Mingjun
in
berberine
/ NF-κB signaling
/ Original Research
/ Osteoarthritis
/ THY1
/ THY1;NF-κB signaling
2026
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Pathogenic Implications of the THY1/NF-κB Feedback Relationship in Osteoarthritis and Its Potential as a Therapeutic Target
by
Ji, Entong
, Wang, Chen
, Yan, Yiqun
, Yu, Jiangqi
, Cheng, Wendan
, Zhang, Mingjun
in
berberine
/ NF-κB signaling
/ Original Research
/ Osteoarthritis
/ THY1
/ THY1;NF-κB signaling
2026
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Do you wish to request the book?
Pathogenic Implications of the THY1/NF-κB Feedback Relationship in Osteoarthritis and Its Potential as a Therapeutic Target
by
Ji, Entong
, Wang, Chen
, Yan, Yiqun
, Yu, Jiangqi
, Cheng, Wendan
, Zhang, Mingjun
in
berberine
/ NF-κB signaling
/ Original Research
/ Osteoarthritis
/ THY1
/ THY1;NF-κB signaling
2026
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Pathogenic Implications of the THY1/NF-κB Feedback Relationship in Osteoarthritis and Its Potential as a Therapeutic Target
Journal Article
Pathogenic Implications of the THY1/NF-κB Feedback Relationship in Osteoarthritis and Its Potential as a Therapeutic Target
2026
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Overview
Osteoarthritis (OA) is a chronic inflammatory disease primarily characterized by cartilage damage, and its pathological mechanisms remain to be elucidated.
This study aimed to identify potential therapeutic targets for OA and to further explore their associated molecular mechanisms.
Candidate OA-associated genes were identified by integrating differential expression analysis, WGCNA, and PPI network analysis. Diagnostic marker genes were subsequently determined using machine-learning algorithms (RF, LASSO, and SVM-RFE) and further validated by ROC analysis and nomogram modeling. Single-cell sequencing analyses were conducted to characterize the temporal dynamics of these marker genes across the developmental trajectory of OA chondrocytes. Both in vitro and in vivo experiments were performed to confirm the expression of key molecules and the activation of relevant pathways. In addition, berberine, a natural isoquinoline alkaloid with anti-inflammatory potential, was selected as a candidate compound to evaluate its interaction with THY1 by molecular docking and molecular dynamics simulation.
A total of 19 candidate OA-associated hub genes were identified. By integrating three machine-learning algorithms, THY1 was determined as a diagnostic marker gene for OA, and ROC curves and a nomogram model confirmed its favorable diagnostic/predictive performance. Single-cell sequencing further suggested a gradual upregulation of THY1 during chondrocyte development in OA. Both in vitro and in vivo experiments supported the feasibility of THY1 as a potential therapeutic target. Computational simulations demonstrated favorable binding between berberine and THY1.
This study suggests that THY1 may serve as a diagnostic biomarker for OA and may be involved in disease progression through its association with the NF-κB signaling pathway. Moreover, our computational simulations provide preliminary and predictive structural insights into the potential interaction between berberine and THY1, thereby expanding possible research directions for berberine-based approaches in OA.
Publisher
Dove Press,Dove Medical Press
Subject
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