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老年小鼠脾脏中的高代谢B细胞产生具有自身免疫特异性的抗体。

Hyper-metabolic B cells in the spleens of old mice make antibodies with autoimmune specificities.

作者信息

Frasca Daniela, Romero Maria, Garcia Denisse, Diaz Alain, Blomberg Bonnie B

机构信息

Department of Microbiology and Immunology, University of Miami Miller School of Medicine, RMSB 3146A, 1600 NW 10th Ave, FL, 33136, Miami, USA.

Sylvester Comprehensive Cancer Center, University of Miami Miller School of Medicine, Miami, FL, USA.

出版信息

Immun Ageing. 2021 Feb 27;18(1):9. doi: 10.1186/s12979-021-00222-3.

Abstract

BACKGROUND

Aging is associated with increased intrinsic B cell inflammation, decreased protective antibody responses and increased autoimmune antibody responses. The effects of aging on the metabolic phenotype of B cells and on the metabolic programs that lead to the secretion of protective versus autoimmune antibodies are not known.

METHODS

Splenic B cells and the major splenic B cell subsets, Follicular (FO) and Age-associated B cells (ABCs), were isolated from the spleens of young and old mice and left unstimulated. The RNA was collected to measure the expression of markers associated with intrinsic inflammation and autoimmune antibody production by qPCR. B cells and B cell subsets were also stimulated with CpG and supernatants collected after 7 days to measure autoimmune IgG secretion by ELISA. Metabolic measures (oxygen consumption rate, extracellular acidification rate and glucose uptake) were performed using a Seahorse XFp extracellular flux analyzer.

RESULTS

Results have identified the subset of ABCs, whose frequencies and numbers increase with age and represent the most pro-inflammatory B cell subset, as the cell type mainly if not exclusively responsible for the expression of inflammatory markers and for the secretion of autoimmune antibodies in the spleen of old mice. Hyper-inflammatory ABCs from old mice are also hyper-metabolic, as compared to those from young mice and to the subset of FO B cells, a feature needed not only to support their higher expression of RNA for inflammatory markers but also their higher autoimmune antibody secretion.

CONCLUSIONS

These results identify a relationship between intrinsic inflammation, metabolism and autoimmune B cells and suggest possible ways to understand cellular mechanisms that lead to the generation of pathogenic B cells, that are hyper-inflammatory and hyper-metabolic, and secrete IgG antibodies with autoimmune specificities.

摘要

背景

衰老与内在B细胞炎症增加、保护性抗体反应降低以及自身免疫性抗体反应增加有关。衰老对B细胞代谢表型以及导致保护性抗体与自身免疫性抗体分泌的代谢程序的影响尚不清楚。

方法

从小鼠脾脏中分离出脾脏B细胞以及主要的脾脏B细胞亚群,即滤泡(FO)B细胞和年龄相关B细胞(ABC),不进行刺激。收集RNA,通过qPCR测量与内在炎症和自身免疫性抗体产生相关的标志物的表达。还用CpG刺激B细胞和B细胞亚群,并在7天后收集上清液,通过ELISA测量自身免疫性IgG的分泌。使用海马XFp细胞外通量分析仪进行代谢测量(耗氧率、细胞外酸化率和葡萄糖摄取)。

结果

结果确定了ABC亚群,其频率和数量随年龄增长而增加,是最具促炎作用的B细胞亚群,是老年小鼠脾脏中主要(如果不是唯一)负责炎症标志物表达和自身免疫性抗体分泌的细胞类型。与年轻小鼠的ABC以及FO B细胞亚群相比,老年小鼠的高炎症ABC也是高代谢的,这一特征不仅是支持其炎症标志物RNA的更高表达所必需的,也是其更高的自身免疫性抗体分泌所必需的。

结论

这些结果确定了内在炎症、代谢和自身免疫性B细胞之间的关系,并提出了一些可能的方法来理解导致产生致病性B细胞的细胞机制,这些B细胞具有高炎症性和高代谢性,并分泌具有自身免疫特异性的IgG抗体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38c5/7916295/8b32978d2419/12979_2021_222_Fig1_HTML.jpg

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