Artemisinin analogue SM934 protects against lupus-associated antiphospholipid syndrome via activation of Nrf2 and its targets

被引:0
作者
Zemin Lin
Yuting Liu
Li Chen
Shiqi Cao
Yueteng Huang
Xiaoqian Yang
Fenghua Zhu
Wei Tang
Shijun He
Jianping Zuo
机构
[1] Chinese Academy of Sciences,Laboratory of Immunopharmacology, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica
[2] University of Chinese Academy of Sciences,Laboratory of Immunology and Virology
[3] Shanghai University of Traditional Chinese Medicine,undefined
来源
Science China Life Sciences | 2021年 / 64卷
关键词
artemisinin analog; antiphospholipid syndrome; antiphospholipid syndrome nephropathy associated lupus nephritis; oxidative stress; inflammation; Nrf2;
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学科分类号
摘要
Kidney is a major target organ in both antiphospholipid syndrome (APS) and systemic lupus erythematosus (SLE). The etiology of antiphospholipid syndrome nephropathy associated lupus nephritis (APSN-LN) is intricate and remains largely unrevealed. We proposed in present work, that generation of antiphospholipid antibodies (aPLs), especially those directed towards the oxidized neoepitopes, are largely linked with the redox status along with disease progression. Moreover, we observed that compromised antioxidative capacity coincided with turbulence of inflammatory cytokine profile in the kidney of male NZW×BXSB F1 mice suffered from APSN-LN. SM934 is an artemisinin derivative that has been proved to have potent immunosuppressive properties. In current study, we elaborated the therapeutic benefits of SM934 in male NZW×BXSB F1 mice, a murine model develops syndrome resembled human APS associated with SLE, for the first time. SM934 treatment comprehensively impeded autoantibodies production, inflammatory cytokine accumulation and excessive oxidative stress in kidney. Among others, we interpreted in present work that both anti-inflammatory and antioxidative effects of SM934 is closely correlated with the enhancement of Nrf2 signaling and expression of its targets. Collectively, our finding confirmed that therapeutic strategy simultaneously exerting antioxidant and anti-inflammatory efficacy provide a novel feasible remedy for treating APSN-LN.
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页码:1702 / 1719
页数:17
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