ArticleInternational dental journal2026
Dental Pulp Stem Cell-Derived Intracellular Vesicles Promote Cartilage Regeneration and Alleviate Pain in Temporomandibular Joint Osteoarthritis.
Article in International dental journal, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- MSC-EVs in Cartilage Regeneration and Immunomodulation: Mechanisms and Therapeutic Prospects for Osteoarthritis, Rheumatoid Arthritis and Intervertebral Disc Degeneration.International journal of molecular sciences · 2026Review
- Small intracellular vesicle-liposome fusogenic nanoplatform sIVs-LPs@Hes: Nebulized delivery targeting pulmonary inflammatory microenvironment to improve ALI.Materials today. Bio · 2026Article
- Dental Pulp Stem Cell-Derived Intracellular Vesicles Inhibit OSCC by Delivering PTEN to Suppress PI3K/AKT/mTOR Signalling Pathway.Cell proliferation · 2026Article
- Recent advances in the use of stem cell-derived exosomes for joint regeneration.Molecular biology reports · 2026Review
- Telomerase-mediated immortalization preserves the anti-inflammatory activity of dental pulp stem cell extracellular vesicles.Frontiers in immunology · 2026Article
- Mesenchymal stem cells and derived extracellular vesicles in major respiratory diseases: from multifaceted molecular mechanisms to clinical perspectives.Frontiers in cell and developmental biology · 2026Review
- Preclinical models of stem cell-mediated analgesia and tissue repair: mechanisms, challenges, and future directions.Frontiers in cellular neuroscience · 2026Review
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Authors and funding
11 authors.
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Abstract
INTRODUCTION AND
aimsTemporomandibular joint osteoarthritis (TMJ-OA) is characterized by cartilage destruction and pain. Although mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) have shown therapeutic efficacy, their clinical translation is hampered by low yield and batch-to-batch variability. Recent studies indicate that intracellular vesicles (IVs) can be harvested at markedly higher quantities than EVs while displaying comparable biological profiles. Therefore, this study directly compared high-yield dental pulp stem cell-derived intracellular vesicles (DPSC-IVs) with conventional dental pulp stem cell-derived extracellular vesicles (DPSC-EVs) in terms of their ability to regenerate cartilage matrix and relieve pain in TMJ-OA.
methodsFollowing characterization of DPSC-IVs and DPSC-EVs, we first evaluated their effects on the proliferation and migration of rat mandibular condylar chondrocytes (MCCs) using endocytic tracing, CCK-8 assays, and Transwell migration assays. Subsequently, an in vitro inflammation model was established using IL-1β, and Western blot analysis and RT-qPCR were employed to investigate their regulatory effects on cartilage matrix synthesis and inflammatory pathways. Next, an in vivo TMJ-OA model was constructed using sodium monoiodoacetate (MIA). The therapeutic efficacy of the two vesicles on subchondral bone remodelling and condylar cartilage matrix regeneration was multidimensionally validated through micro-CT, RT-qPCR, Western blotting, immunofluorescence and immunohistochemistry staining. Furthermore, their underlying molecular mechanisms for alleviating joint pain were elucidated.
resultsAt the same therapeutic concentration, both DPSC-IVs and DPSC-EVs markedly enhanced MCCs proliferation and migration and suppressed IL-1β-induced cartilage matrix breakdown and inflammatory gene expression. In a rat TMJ-OA model, they equivalently repaired MIA-induced subchondral bone and condylar cartilage damage and significantly attenuated pain via inhibition of the ERK-CREB-CGRP pathway.
conclusionDPSC-IVs, with higher yield and simpler extraction, deliver therapeutic efficacy comparable to DPSC-EVs, offering a more clinically feasible strategy for TMJ-OA treatment.
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