ArticleJournal of nanobiotechnology2026
In-situ RhoA editing via heparinylated LNP-microsphere system for rheumatoid arthritis treatment.
Article in Journal of nanobiotechnology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Macrophages play a pivotal role in modulating inflammation and osteoclastogenesis during the progression of rheumatoid arthritis (RA). Although local mRNA-mediated gene editing offers high precision and efficiency, there remains a lack of robust strategies tailored for effective editing of synovial macrophages. Here, we identified RhoA as a macrophage target via bioinformatics, validated its therapeutic potential, and built a heparinylated LNP-microsphere system (hLNP-RhoA−/−@MS) to replace PEGylated LNPs for in situ RhoA editing. Specifically, a low-molecular weight heparin-cholesterol conjugate was employed in place of PEG during LNP formulation. Substituting PEG with heparin on the LNP surface markedly enhanced the transfection efficiency of delivered mRNA/sgRNA. In parallel, integration of the microsphere system substantially improved LNP stability and intra-articular retention. In vitro RNA-seq analysis revealed broad and significant suppression of multiple key inflammation-related signaling pathways following RhoA editing. In the RA mouse model in vivo, hLNP-RhoA−/−@MS conferred pronounced therapeutic benefits, including attenuation of joint inflammation, inhibition of cartilage and bone destruction, and remodeling of the immune microenvironment, thereby demonstrating strong anti-RA efficacy. Overall, we present a feasible, effective local mRNA editing strategy for precise modulation of synovial macrophages in RA.
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