Lupus nephritis (LN), a severe complication of systemic lupus erythematosus (SLE), is largely driven by dysregulated macrophage responses. However, the heterogeneity of macrophages hinders the development of targeted therapies for LN. Here, through single-cell analysis and clinical specimen validation, it is found that pro-inflammatory M2b macrophages are increased in the kidneys of patients with LN and are strongly associated with clinical indicators. To target and modulate M2b macrophages, mannose-functionalized selenium nanoparticles are engineered that can selectively suppress M2b polarization and activation by reducing reactive oxygen species (ROS), restoring mitochondrial function, and inducing selenoprotein glutathione peroxidase 1 (GPX1). In vivo, SeZM NPs accumulate in the kidneys of lupus mice and reduce M2b-derived pro-inflammatory cytokines, preserving renal structure and function. Together, these findings highlight pro-inflammatory M2b macrophages as pathogenic drivers of LN and demonstrate the translational potential of selenium-based nanotherapy.
Reprogramming M2b Macrophages via GPX1 Activation by Selenium Nanoparticles Attenuates Lupus Nephritis.
通过硒纳米颗粒激活GPX1重编程M2b巨噬细胞可减轻狼疮性肾炎。
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| 期刊: | Advanced Science | 影响因子: | 14.100 |
| 时间: | 2026 | 起止号: | 2026 Feb;13(12):e19981 |
| doi: | 10.1002/advs.202519981 | ||
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