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Updated: May 29, 2026

Ameliorating Osteoarthritis in Mice Using Silver Nanoparticles
Published on: June 2, 2023
Kartogenin-Loaded Selenium-Prussian Blue Nanogel through ROS scavenging and cartilage regeneration for the mitigation
Yuanxi Song1, Xiuzhen Zhu1, Na Yu2
1School of Pharmacy, Ningxia Medical University, Yinchuan, Ningxia 750004, China.
Abstract:
Osteoarthritis (OA), a degenerative joint disease driven by synovial inflammation, oxidative stress and progressive cartilage degradation, remains a major clinical challenge. While drug-loaded nanozymes offer an effective strategy for OA treatment by scavenging reactive oxygen species (ROS) and delivering therapeutics, their efficacy is limited by insufficient catalytic activity and poor drug retention capacity. Herein, we developed a specific matrix metalloproteinase (MMP) 13-responsive smart nanogel system (M-MA@KSPB) comprising a selenium-doped Prussian blue nanozyme (SPB) core loaded with kartogenin (KGN) and an MMP13-responsive peptide cross-linking hyaluronic acid methacryloyl (HAMA) shell. As MMP13 is a key biomarker of OA progression, the MMP13-triggered responsiveness of M-MA@KSPB enhanced its retention within the joint cavity through targeted structural changes, thereby enabling spatiotemporally precise KGN release for cartilage regeneration. Upon release, the SPB nanozyme exhibited catalase (CAT)-, superoxide dismutase (SOD)-, and glutathione reductase (GR)-like activities, potently scavenging ROS and mitigating oxidative stress. Furthermore, the M-MA@KSPB downregulated pro-inflammatory cytokines (TNF-α, IL-6), while enhancing collagen II synthesis and suppressing MMP13 expression in Lipopolysaccharide (LPS)-stimulated chondrocytes. In a post-traumatic OA rat model, this system inhibited joint inflammation and osteophyte formation, concurrently promoting cartilage regeneration and restoring anabolic/catabolic balance through KGN-mediated repair. This nanogel system offers a new OA treatment strategy by combining anti-oxidative stress therapy with cartilage repair.
Insights
A novel nanogel system effectively treats osteoarthritis by scavenging reactive oxygen species and delivering kartogenin for cartilage repair. This MMP13-responsive system enhances drug retention and promotes joint healing in a rat model.
Area of Science:
- Biomaterials Science
- Nanotechnology
- Osteoarthritis Research
Background:
- Osteoarthritis (OA) is a degenerative joint disease characterized by inflammation, oxidative stress, and cartilage breakdown.
- Current nanozyme treatments for OA face challenges with catalytic activity and drug retention.
- Matrix metalloproteinase-13 (MMP13) is a key biomarker and driver of OA progression.
Purpose of the Study:
- To develop a smart nanogel system (M-MA@KSPB) for enhanced osteoarthritis treatment.
- To improve drug retention and achieve spatiotemporally precise therapeutic release.
- To combine anti-oxidative stress therapy with cartilage repair mechanisms.
Main Methods:
- Fabrication of a selenium-doped Prussian blue nanozyme (SPB) core loaded with kartogenin (KGN).
- Development of an MMP13-responsive hyaluronic acid methacryloyl (HAMA) shell for targeted drug delivery.
- In vitro evaluation using LPS-stimulated chondrocytes and in vivo assessment in a post-traumatic OA rat model.
Main Results:
- The M-MA@KSPB system demonstrated MMP13-triggered responsiveness, enhancing retention and precise KGN release.
- SPB nanozymes exhibited potent ROS scavenging activities (CAT, SOD, GR-like).
- The nanogel downregulated pro-inflammatory cytokines, enhanced collagen II synthesis, and suppressed MMP13 expression in vitro. In vivo, it inhibited inflammation, osteophyte formation, and promoted cartilage regeneration.
Conclusions:
- The MMP13-responsive nanogel system offers a promising strategy for osteoarthritis treatment.
- This approach effectively combines anti-oxidative stress and cartilage repair functionalities.
- The developed system shows potential for improving therapeutic efficacy and patient outcomes in OA management.