Elevated glucose metabolism driving pro-inflammatory response in B cells contributes to the progression of type 1 diabetes

胰岛炎 点头老鼠 免疫系统 细胞因子 生物 点头 T细胞 内分泌学 人口 内科学 免疫学 糖尿病 医学 环境卫生
作者
Zeying Li,Mingjiu Zhao,Jingyue Li,Wenjun Luo,Juan Huang,Gan Huang,Zhiguo Xie,Yang Xiao,Jiaqi Huang,Xia Li,Bin Zhao,Zhiguang Zhou
出处
期刊:Clinical Immunology [Elsevier]
卷期号:255: 109729-109729 被引量:5
标识
DOI:10.1016/j.clim.2023.109729
摘要

Type 1 diabetes (T1D) is an autoimmune disease characterized by the immune system's failure to maintain self-tolerance, resulting in the autoimmune destruction of pancreatic beta cells. Although T1D has conventionally been viewed as a T-cell-dominant disease, recent research has emphasized the contribution of B cells in the onset of the disease. However, the mechanism underlying aberrant B cell responses remains unknown. B cell metabolism is a crucial prerequisite for B cell function and the development of adaptive immune responses. Here, we investigated the metabolic features of B cells, first in a cross-sectional cohort and subsequently in non-obese diabetic (NOD) mice, and revealed that there is an increased frequency of high-glucose-avidity (2-NBDGhigh) B cell population that may contribute to T1D progression. Further characterization of the metabolic, transcriptional and functional phenotype of B cells in NOD mice found that elevated glucose avidity is associated with a greater capacity for co-stimulation, proliferation and inflammatory cytokine production. Mechanistically, elevated Myc signaling orchestrated the glucose metabolism and the pro-inflammatory response of B cells in T1D. In vitro experiments demonstrated that pharmacological inhibition of glucose metabolism using metformin and 2-DG reduced pro-inflammatory cytokine production and B cell proliferation. Moreover, the combination of these inhibitors successfully delayed insulitis development, onset of diabetes, and improved high blood glucose levels in streptozotocin (STZ)-induced diabetic mice model. Taken together, our work has uncovered these high-glucose-avidity B cells as novel adjuvant diagnostic and therapeutic targets for T1D.
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