ArticleArthritis & rheumatology (Hoboken, N.J.)2025
Targeting Long Noncoding RNA H19 in Subchondral Bone Osteocytes and the Alleviation of Cartilage Degradation in Osteoarthritis.
Article in Arthritis & rheumatology (Hoboken, N.J.), 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed.
- Tunnelling Nanotube-Mediated Lysosome Sharing Promotes Osteocyte Survival via Transcellular Autophagy.Cell proliferation · 2026Article
- Osteocyte Cell-Cell Communication Within and Beyond Bone.Current osteoporosis reports · 2026Review
- Review
- Antisense Oligonucleotide Therapeutics Targeting Age-Related Diseases.BioDrugs : clinical immunotherapeutics, biopharmaceuticals and gene therapy · 2026Review
- LINC00312 affects the progression of osteoarthritis by targeting miR-331-3p/DUSP5 axis.Journal of orthopaedic surgery and research · 2026Article
- PRKACB Attenuates Chondrocyte Loss and Inflammation in Osteoarthritis.Immunity, inflammation and disease · 2026Article
- Research hotspots and prospects on the correlation between subchondral bone and stem cells: bibliometrics and visual analysis.Frontiers in surgery · 2026Review
- Emerging roles of long non-coding RNAs in osteoarthritis: from molecular mechanisms to therapeutic opportunities.RNA biology · 2025Review
- Insights and advances of theranostic nanoscale metal-organic frameworks.Mikrochimica acta · 2025Review
- Engineered Anti-Senescence Trachea With Post-Transplanted Regenerative Homeostasis.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Two-dimensional nanomaterials for bone disease therapy: multifunctional platforms for regeneration, anti-infection and tumor ablation.Journal of nanobiotechnology · 2025Review
- Role of Pyroptosis in the Pathogenesis of Osteoarthritis: An Updated Review.Journal of inflammation research · 2025Review
Corrections and comments
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Authors and funding
18 authors.
Funding
Abstract
objectiveEmerging evidence suggests long noncoding RNA H19 is associated with osteoarthritis (OA) pathology. However, how H19 contributes to OA has not been reported. This study aims to investigate the biologic function of H19 in OA subchondral bone remodeling and OA progression.
methodsClinical joint samples and OA animal models induced by surgical destabilization of the medial meniscus (DMM) were used to verify the causal relationship between osteocyte H19 and OA subchondral bone and cartilage changes. MLO-Y4 osteocyte cells subjected to fluid shear stress were used to verify the mechanism underlying H19-mediated mechanoresponse. Finally, the antisense oligonucleotide (ASO) against H19 was delivered to mice knee joints by magnetic metal-organic framework (MMOF) nanoparticles to develop a site-specific delivery method for targeting osteocyte H19 for OA treatment.
resultsBoth clinical OA subchondral bone and wildtype mice with DMM-induced OA exhibit aberrant higher subchondral bone mass, with more H19 mice expressing osteocytes. On the contrary, mice with osteocyte-specific deletion of H19 are less vulnerable to DMM-induced OA phenotype. In MLO-Y4 cells, H19-mediated osteocyte mechanoresponse through PI3K/AKT/GSK3 signal activation by EZH2-induced H3K27me3 regulation on protein phosphatase 2A inhibition. Targeted inhibition of H19 (using ASO-loaded MMOF) substantially alleviates subchondral bone remodeling and OA phenotype.
conclusionIn summary, our results provide new evidence that the elevated H19 expression in osteocytes may contribute to aberrant subchondral bone remodeling and OA progression. H19 appears to be required for the osteocyte response to mechanical stimulation, and targeting H19 represents a new promising approach for OA treatment.
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