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Updated: Jun 2, 2025

Software-Assisted Quantitative Measurement of Osteoarthritic Subchondral Bone Thickness
Published on: March 18, 2022
MSAB limits osteoarthritis development and progression through inhibition of β-catenin-DDR2 signaling
Ke Lu1,2,3, Zhidong Liao1,2, Jingwen Li1,4
1Research Center for Computer-aided Drug Discovery, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, China.
Abstract:
The aberrant activation of the canonical Wnt/β-catenin signaling has been identified as a significant contributor to the pathogenesis of osteoarthritis (OA), exacerbating OA symptoms and driving OA progression. Despite its potential as a therapeutic target, clinical translation is impeded by the lack of a targeting delivery system and effective drug candidate that can modulate steady-state protein levels of β-catenin at post-translational level. Our study addresses these challenges by offering a new approach for OA treatment. To overcome these challenges, we introduced a novel delivery system using human serum albumin (HSA) to deliver a small molecule β-catenin inhibitor, Methyl-Sulfonyl AB (MSAB). This system is designed to enhance the bioavailability of MSAB, ensuring its accumulation inside the joint space, and facilitating the degradation of β-catenin protein. We have demonstrated that MSAB, when delivered via HSA, not only effectively inhibits cartilage damage but also ameliorates OA-related pain in an OA mouse model. We then performed proteomic analysis and biochemical studies to determine the molecular mechanisms underlying the therapeutic effects of MSAB. We identified that discoidin domain receptor 2 (DDR2), a critical mediator in OA pathology, is a downstream molecule of β-catenin signaling and β-catenin/TCF7 directly controls DDR2 gene transcription. MSAB suppressed the DDR2 expression in chondrocytes. MSAB ameliorated OA progression and OA-associated pain through inhibition of β-catenin-DDR2 signaling. This study underscores the efficacy of MSAB/HSA in OA treatment, providing new insights into its molecular mechanism of OA. It suggests that targeted therapies with MSAB/HSA could be a new OA management strategy.
Insights
A novel human serum albumin (HSA) delivery system for Methyl-Sulfonyl AB (MSAB) effectively treats osteoarthritis (OA) by inhibiting Wnt/β-catenin signaling and reducing pain and cartilage damage.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Aberrant Wnt/β-catenin signaling drives osteoarthritis (OA) pathogenesis and progression.
- Clinical application of Wnt/β-catenin inhibitors is limited by delivery challenges and lack of post-translational modulators.
- Targeting β-catenin is a promising therapeutic strategy for OA.
Purpose of the Study:
- To develop a novel delivery system for a β-catenin inhibitor to treat OA.
- To investigate the therapeutic efficacy and molecular mechanisms of a human serum albumin (HSA)-based delivery system for Methyl-Sulfonyl AB (MSAB) in OA.
- To explore the role of discoidin domain receptor 2 (DDR2) in OA and its regulation by Wnt/β-catenin signaling.
Main Methods:
- Development of a HSA-based delivery system for MSAB.
- In vivo studies using an OA mouse model to assess therapeutic effects on cartilage damage and pain.
- Proteomic analysis and biochemical assays to elucidate molecular mechanisms, including gene transcription regulation.
Main Results:
- The MSAB/HSA system enhanced MSAB bioavailability and joint accumulation, leading to β-catenin degradation.
- MSAB/HSA treatment significantly inhibited cartilage damage and ameliorated OA-related pain in mice.
- β-catenin/TCF7 directly controls DDR2 gene transcription, and MSAB suppressed DDR2 expression in chondrocytes, mediating therapeutic effects.
Conclusions:
- MSAB delivered via HSA is an effective treatment for OA, reducing cartilage damage and pain.
- The therapeutic mechanism involves the inhibition of β-catenin-DDR2 signaling pathway.
- Targeted therapy with MSAB/HSA represents a promising new strategy for OA management.
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