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Open Access Letter Issue
Runx2 controls the osteogenic fate of growth plate chondrocytes
Genes & Diseases 2025, 12(3): 101453
Published: 01 May 2025
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Open Access Review Article Issue
Development of novel osteoarthritis therapy by targeting AMPK-β-catenin-Runx2 signaling
Genes & Diseases 2025, 12(1): 101247
Published: 24 February 2024
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Osteoarthritis (OA) is a debilitating chronic joint disease affecting large populations of patients, especially the elderly. The pathological mechanisms of OA are currently unknown. Multiple risk factors are involved in OA development. Among these risk factors, alterations of mechanical loading in the joint leading to changes in biological signaling pathways have been known as a key event in OA development. The importance of AMPK-β-catenin-Runx2 signaling in the initiation and progression of OA has been recognized in recent years. In this review, we discuss the recent progress in understanding the role of this signaling pathway and the underlying interaction mechanisms during OA development. We also discuss the drug development aiming to target this signaling pathway for OA treatment.

Open Access Review Issue
Risk of metabolic abnormalities in osteoarthritis: a new perspective to understand its pathological mechanisms
Bone Research 2023, 11: 63
Published: 06 December 2023
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Although aging has traditionally been viewed as the most important risk factor for osteoarthritis (OA), an increasing amount of epidemiological evidence has highlighted the association between metabolic abnormalities and OA, particularly in younger individuals. Metabolic abnormalities, such as obesity and type Ⅱ diabetes, are strongly linked to OA, and they affect both weight-bearing and non-weight-bearing joints, thus suggesting that the pathogenesis of OA is more complicated than the mechanical stress induced by overweight. This review aims to explore the recent advances in research on the relationship between metabolic abnormalities and OA risk, including the impact of abnormal glucose and lipid metabolism, the potential pathogenesis and targeted therapeutic strategies.

Open Access Rapid Communication Issue
Deletion of Axin1 in aggrecan-expressing cells leads to growth plate cartilage defects in adult mice
Genes & Diseases 2024, 11(4): 101147
Published: 19 October 2023
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