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September 29, 2025Nature Communications11 citationsOpen Access

Circular RNA-based protein replacement therapy mitigates osteoarthritis in male mice

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JSJinlong SuoLLLing LiWTWuyuan Tan

Key Points

  • Intra-articular delivery of ivcRNA encoding MSI2 mitigates osteoarthritis progression in male mice, restoring key protein levels.
  • Utilizing a destabilization of the medial meniscus model, the ivcRNA therapy effectively improved joint health indicators.
  • The approach shows that protein replacement via localized RNA delivery could lead to significant therapeutic advancements.
  • Results suggest that ivcRNA-based therapies may provide a new path for treating degenerative joint disorders like osteoarthritis.

Abstract

In vitro-transcribed and circularized RNAs (ivcRNAs) represent a robust platform for sustained protein translation, offering promising potential for localized therapeutic delivery in joint diseases. Osteoarthritis (OA), the most prevalent degenerative joint disorder, remains a major clinical challenge due to its progressive nature and the lack of disease-modifying treatments. In this study, we identify Musashi2 (Msi2) deficiency in articular chondrocytes as a key contributor to OA pathogenesis. To evaluate the efficacy of ivcRNA-mediated protein replacement therapy, we developed a localized delivery strategy that enables high-yield and prolonged protein expression in chondrocytes. Using a destabilization of the medial meniscus (DMM) mouse model, we demonstrate that intra-articular delivery of ivcRNA encoding MSI2 effectively mitigates OA progression in male mice. Furthermore, therapeutic supplementation of SOX5, a downstream effector of MSI2, via ivcRNA delivery further validates this approach. Our findings establish ivcRNA-based protein replacement as a potential RNA therapeutic strategy for osteoarthritis. In vitro transcribed circular RNAs (ivcRNAs) offer a stable and efficient platform for protein replacement therapy. Here, the authors show that localized ivcRNA delivery restores MSI2 and SOX5 expression in chondrocytes, mitigating osteoarthritis progression in mice.

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Cite This Study

Suo et al. (2025) studied this question.

synapsesocial.com/papers/68da63b65b96be28fdab9d27https://doi.org/10.1038/s41467-025-63343-z
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