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Updated: May 22, 2026

Formulating and Characterizing an Exosome-based Dopamine Carrier System
Published on: April 4, 2022
Auto-loaded polydopamine-M2 exosomes as an antioxidative nanoscavenger for lupus erythematosus therapy
Huiyuan Ye1, Shufan Hou1, Xingyu Li2
1Department of Rheumatology, Research Center of Clinical Medicine, Research Center of Immunology, Affiliated Hospital of Nantong University, Medical School of Nantong University, Nantong, 226001, China.
Abstract:
Systemic lupus erythematosus (SLE) is a chronic autoimmune disease characterized by multisystem inflammation and immune dysregulation, predominantly affecting women of reproductive age. Current treatments, including antimalarials, corticosteroids, and immunosuppressants, often entail long-term toxicity. To address this, we developed an auto-loaded polydopamine-M2 exosome system (M2/pEXO) as an antioxidative nanoscavenger for SLE therapy. Ultrasmall PDA nanoparticles facilitated M2 macrophage polarization and were autonomously encapsulated into exosomes during polarization, yielding M2/pEXO with enriched protein content and enhanced cellular uptake. Proteomic analysis indicated that M2/pEXO cargo proteins are involved in cellular energy metabolism and inflammatory regulation, underpinning its immunomodulatory and antioxidant functions. Compared with conventional M2 EXO, M2/pEXO exhibited superior antioxidative and anti-inflammatory effects, reducing M1 macrophage polarization and pro-inflammatory cytokine secretion while promoting regulatory T cell expansion. In a murine SLE model, M2/pEXO significantly alleviated lupus nephritis, attenuating renal immune infiltration, glomerular mesangial proliferation, proteinuria, serum creatinine, and anti-dsDNA autoantibody levels, without detectable toxicity. The platform elevates M2 EXO from mere anti-inflammatory carriers to an integrated nanoscavenger system capable of targeted delivery, oxidative stress scavenging, and immunomodulation. This auto-loaded, naturally engineered strategy presents a safe and effective therapeutic approach for SLE and potentially other chronic inflammatory diseases.

