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巨噬细胞免疫代谢重编程用于牙周炎治疗:纳米槲皮素对糖酵解和氧化磷酸化的调控作用

Immunometabolic rewiring in macrophages for periodontitis treatment nanoquercetin-mediated leverage of glycolysis and OXPHOS.

作者信息

Zhang Yi, Shi Junyu, Zhu Jie, Ding Xinxin, Wei Jianxu, Jiang Xue, Yang Yijie, Zhang Xiaomeng, Huang Yongzhuo, Lai Hongchang

机构信息

Department of Implant Dentistry, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, College of Stomatology, Shanghai Jiao Tong University, National Center for Stomatology, National Clinical Research Center for Oral Diseases, Shanghai Key Laboratory of Stomatology, Shanghai 200011, China.

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.

出版信息

Acta Pharm Sin B. 2024 Nov;14(11):5026-5036. doi: 10.1016/j.apsb.2024.07.008. Epub 2024 Aug 12.

Abstract

Periodontitis is a chronic inflammatory disease marked by a dysregulated immune microenvironment, posing formidable challenges for effective treatment. The disease is characterized by an altered glucose metabolism in macrophages, specifically an increase in aerobic glycolysis, which is linked to heightened inflammatory responses. This suggests that targeting macrophage metabolism could offer a new therapeutic avenue. In this study, we developed an immunometabolic intervention using quercetin (Q) encapsulated in bioadhesive mesoporous polydopamine (Q@MPDA) to treat periodontitis. Our results demonstrated that Q@MPDA could reprogram inflammatory macrophages to an anti-inflammatory phenotype (, from-M1-to-M2 repolarization). In a murine periodontitis model, locally administered Q@MPDA reduced the presence of inflammatory macrophages, and decreased the levels of inflammatory cytokines (IL-1 and TNF-) and reactive oxygen species (ROS) in the periodontium. Consequently, it alleviated periodontitis symptoms, reduced alveolar bone loss, and promoted tissue repair. Furthermore, our study revealed that Q@MPDA could inhibit the glycolysis of inflammatory macrophages while enhancing oxidative phosphorylation (OXPHOS), facilitating the shift from M1 to M2 macrophage subtype. Our findings suggest that Q@MPDA is a promising treatment for periodontitis immunometabolic rewiring.

摘要

牙周炎是一种慢性炎症性疾病,其特征是免疫微环境失调,给有效治疗带来了巨大挑战。该疾病的特点是巨噬细胞中的葡萄糖代谢发生改变,特别是有氧糖酵解增加,这与炎症反应增强有关。这表明针对巨噬细胞代谢可能提供一种新的治疗途径。在本研究中,我们开发了一种使用包裹在生物粘附性介孔聚多巴胺(Q@MPDA)中的槲皮素(Q)进行免疫代谢干预来治疗牙周炎。我们的结果表明,Q@MPDA可以将炎性巨噬细胞重编程为抗炎表型(从M1向M2极化)。在小鼠牙周炎模型中,局部施用Q@MPDA可减少炎性巨噬细胞的存在,并降低牙周组织中炎性细胞因子(IL-1和TNF-)和活性氧(ROS)的水平。因此,它减轻了牙周炎症状,减少了牙槽骨丢失,并促进了组织修复。此外,我们的研究表明,Q@MPDA可以抑制炎性巨噬细胞的糖酵解,同时增强氧化磷酸化(OXPHOS),促进从M1巨噬细胞亚型向M2巨噬细胞亚型的转变。我们的研究结果表明,Q@MPDA是一种有前途的牙周炎免疫代谢重塑治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5361/11628840/2ad941a1e509/ga1.jpg

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