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靶向递送鞣花酸有效重塑促炎巨噬细胞的代谢,从而改善类风湿关节炎症状。

Metabolic reprogramming of proinflammatory macrophages by target delivered roburic acid effectively ameliorates rheumatoid arthritis symptoms.

机构信息

Key Laboratory of Drug Targeting and Drug Delivery Systems, Ministry of Education, West China School of Pharmacy, College of Polymer Science and Engineering, State key Laboratory of Polymer Materials Engineering, West China School of Public Health and West China Fourth Hospital, Sichuan University, Chengdu, 610041, P. R. China.

Department of Pharmacy, West China Hospital, Sichuan University, Chengdu, 610041, China.

出版信息

Signal Transduct Target Ther. 2023 Jul 28;8(1):280. doi: 10.1038/s41392-023-01499-0.

Abstract

Rheumatoid arthritis (RA) is a common chronic inflammatory disorder that usually affects joints. It was found that roburic acid (RBA), an ingredient from anti-RA herb Gentiana macrophylla Pall., displayed strong anti-inflammatory activity. However, its medical application is limited by its hydrophobicity, lack of targeting capability and unclear functional mechanism. Here, we constructed a pH responsive dual-target drug delivery system hitchhiking RBA (RBA-NPs) that targeted both CD44 and folate receptors, and investigated its pharmacological mechanism. In rat RA model, the nanocarriers effectively delivered RBA to inflammatory sites and significantly enhanced the therapeutic outcomes compared with free RBA, as well as strongly reducing inflammatory cytokine levels and promoting tissue repair. Following analysis revealed that M1 macrophages in the joints were reprogrammed to M2 phenotype by RBA. Since the balance of pro- and anti-inflammatory macrophages play important roles in maintaining immune homeostasis and preventing excessive inflammation in RA, this reprogramming is likely responsible for the anti-RA effect. Furthermore, we revealed that RBA-NPs drove M1-to-M2 phenotypic switch by down-regulating the glycolysis level via blocking ERK/HIF-1α/GLUT1 pathway. Thus, our work not only developed a targeting delivery system that remarkably improved the anti-RA efficiency of RBA, but also identified a potential molecular target to reversely reprogram macrophages though energy metabolism regulation.

摘要

类风湿性关节炎(RA)是一种常见的慢性炎症性疾病,通常会影响关节。研究发现,獐牙菜苦苷(RBA)是一种来自抗 RA 草药獐牙菜的成分,具有很强的抗炎活性。然而,由于其疏水性、缺乏靶向能力和功能机制不明确,其医学应用受到限制。在这里,我们构建了一种 pH 响应的双重靶向药物输送系统,将 RBA (RBA-NPs)靶向 CD44 和叶酸受体,并研究了其药理机制。在大鼠 RA 模型中,纳米载体有效地将 RBA 递送到炎症部位,与游离 RBA 相比,显著增强了治疗效果,同时强烈降低了炎症细胞因子水平并促进了组织修复。分析表明,RBA 将关节中的 M1 巨噬细胞重编程为 M2 表型。由于促炎和抗炎巨噬细胞的平衡在维持免疫稳态和防止 RA 中过度炎症方面起着重要作用,这种重编程可能是 RA 的抗作用机制。此外,我们发现 RBA-NPs 通过阻断 ERK/HIF-1α/GLUT1 通路来下调糖酵解水平,从而驱动 M1 向 M2 表型的转换。因此,我们的工作不仅开发了一种靶向输送系统,显著提高了 RBA 的抗 RA 效率,而且还通过能量代谢调节确定了一个潜在的分子靶点,来逆转巨噬细胞的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b8d/10374631/ca1ac5da0540/41392_2023_1499_Fig1_HTML.jpg

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