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工程化钝顶螺旋藻用于治疗类风湿性关节炎和恢复骨稳态。

Engineered Spirulina platensis for treating rheumatoid arthritis and restoring bone homeostasis.

作者信息

Yang Xiao, Rong Kewei, Fu Shaotian, Yang Yangzi, Liu Shasha, Zhang Chenyu, Xu Kang, Zhang Kai, Zhu Yingchun, Hao Yongqiang, Zhao Jie, Fu Jingke

机构信息

Shanghai Key Laboratory of Orthopedic Implants, Department of Orthopedics, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, 639 Zhizaoju Road, 200011, Shanghai, China.

Department of Orthopedic Surgery, Spine Center, Changzheng Hospital, Navy Medical University, No. 415 Fengyang Road, 200003, Shanghai, China.

出版信息

Nat Commun. 2025 May 13;16(1):4434. doi: 10.1038/s41467-025-59579-4.

Abstract

Rheumatoid arthritis (RA) is characterized by massive intra-articular infiltration of pro-inflammatory macrophages, leading to articular immune dysfunction, severe synovitis, and ultimately joint erosion. Comprehensive remodeling of articular immune homeostasis and bone homeostasis is essential for alleviating RA. Here we report on Spirulina platensis (SP), a natural microorganism commercially farmed worldwide as a food, as an efficient regulator of both synovial inflammation and osteoclast differentiation in male RA mouse models. SP reduces excessive reactive oxygen species and downregulates pro-inflammatory cytokines in synovial macrophages. Moreover, SP reprograms pro-inflammatory M1-like macrophages to anti-inflammatory M2-like phenotype, suppressing synovitis and remodeling redox balance. Notably, SP inhibits osteoclast activation effectively and blocks the progression of bone erosion. SP is then engineered with macrophage membranes (SP@M) to enable immune evasion and RA-targeting in vivo. SP@M increases LC3-mediated autophagy as well as strengthens ubiquitin-mediated proteasomal degradation toward KEAP1, which promotes the expression and nuclear translocation of NRF2. The NRF2 further activates antioxidant enzymes to terminate macrophages-initiated pathological cascades and reestablish intra-articular immune homeostasis, conferring a bone recovery and chondroprotective effect in collagen-induced arthritis mouse models. This work shows the therapeutic activity of FDA-approved functional food of SP in suppressing synovial inflammation and osteoclast differentiation, offering an off-the-shelf strategy for RA treatment.

摘要

类风湿性关节炎(RA)的特征是促炎性巨噬细胞大量浸润关节内,导致关节免疫功能障碍、严重滑膜炎,并最终导致关节侵蚀。全面重塑关节免疫稳态和骨稳态对于缓解RA至关重要。在此,我们报道了钝顶螺旋藻(SP),一种在全球范围内作为食品进行商业养殖的天然微生物,它是雄性RA小鼠模型中滑膜炎症和破骨细胞分化的有效调节剂。SP可减少滑膜巨噬细胞中过量的活性氧,并下调促炎细胞因子。此外,SP将促炎性M1样巨噬细胞重编程为抗炎性M2样表型,抑制滑膜炎并重塑氧化还原平衡。值得注意的是,SP有效抑制破骨细胞活化并阻断骨侵蚀的进展。然后,用巨噬细胞膜对SP进行工程改造(SP@M),以实现体内免疫逃逸和靶向RA。SP@M增加LC3介导的自噬,并增强泛素介导的蛋白酶体对KEAP1的降解,从而促进NRF2的表达和核转位。NRF2进一步激活抗氧化酶,以终止巨噬细胞引发的病理级联反应,并重建关节内免疫稳态,在胶原诱导的关节炎小鼠模型中赋予骨恢复和软骨保护作用。这项工作展示了FDA批准的功能性食品SP在抑制滑膜炎症和破骨细胞分化方面的治疗活性,为RA治疗提供了一种现成的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b84/12075783/f1acb219d25a/41467_2025_59579_Fig1_HTML.jpg

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