PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
October 16, 2025Nature Communications8 citationsOpen Access

Virus-inspired lipopeptide-derived nucleic acid delivery to cartilage for osteoarthritis therapy

YFYu FuYHYulan HuangYWYunjiao Wang

Key Result

The ROS-responsive nano-in-gel system si-VPN@HA effectively alleviated cartilage degeneration, reduced inflammation, and synergized with methylprednisolone to provide superior joint protection in murine osteoarthritis models.

Structured PICO

Does a virus-inspired lipopeptide-derived nucleic acid delivery system (si-VPN@HA) delivering MMP-13 siRNA alleviate cartilage degeneration in preclinical models of osteoarthritis?

P
Population
Preclinical study evaluating a virus-inspired lipopeptide-based nanoparticle for cartilage-targeted nucleic acid delivery in in vitro models and murine models of osteoarthritis.
I
Intervention
Virus-inspired lipopeptide-based nanoparticles (VPN) delivering MMP-13 siRNA (si-VPN-2), formulated into a ROS-responsive nano-in-gel system (si-VPN@HA). In the PTOA model, co-loaded with methylprednisolone (MP&si-VPN@HA).
C
Comparator
Conventional lipid nanoparticles (si-MC3-LNP), saline, sham, free siRNA, and methylprednisolone (MP) alone.
O
Outcome
Cartilage degeneration alleviation (OARSI score), MMP-13 silencing efficiency, cellular uptake, and lysosomal escape.surrogate

A novel virus-inspired lipopeptide-based nano-in-gel system delivering MMP-13 siRNA effectively penetrates cartilage, prolongs retention, and synergizes with methylprednisolone to alleviate osteoarthritis progression in preclinical models.

Abstract

Cartilage-targeted gene therapy is promising for osteoarthritis (OA) treatment, though its potency critically depends on the effectiveness of delivery vectors. Here, we modularly develop a series of non-pathogenic, virus-inspired lipopeptide-based nanoparticles (VPN) tailored to deliver nucleic acids to cartilage. The cationic moiety of lipopeptide with variable arginine and histidine residues is the key functional component, and screened by in vitro performance. The optimized VPN-2 with a moiety of –(R)5-(H)42- facilitates sufficient endocytosis and effective lysosomal escape, achieving about 2.5-fold improvement in transfection potency over conventional lipid nanoparticles. To address the tradeoff between penetration and retention within articular cartilage, si-VPN-2 is further formulated into ROS-responsive nano-in-gel system, which turns out to alleviate cartilage degeneration in surgical ACTL mice, and further synergizes with methylprednisolone to implement superior joint protection in PTOA mice. Our study underscores the platform’s potential of VPN as cartilage-targeted RNA delivery vector for innovative OA therapy. Cartilage-targeted gene therapy is dependent on delivery efficiency. Here, the authors develop non-pathogenic, virus-inspired lipopeptide-based nanoplatforms to deliver nucleic acids to cartilage with increased transfection efficiency over conventional lipid nanoparticles.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Fu et al. (2025) studied Osteoarthritis. si-VPN@HA vs. Saline, si-MC3-LNP, or methylprednisolone was evaluated on Cartilage degeneration (OARSI score) and MMP-13 expression. The ROS-responsive nano-in-gel system si-VPN@HA effectively alleviated cartilage degeneration, reduced inflammation, and synergized with methylprednisolone to provide superior joint protection in murine osteoarthritis models.

synapsesocial.com/papers/6aa3f9888cc5e72c23b71e70https://doi.org/10.1038/s41467-025-64212-5
Ask AI
Helpful
Bookmark
Share
View Full Paper