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滤泡辅助性T细胞(Tfh)是近几年发现的一种新的T细胞亚群,与Th1细胞、Th2细胞、Th17细胞及调节性T细胞(Tr)相互促进或拮抗,维持免疫系统的正常生理功能,其主要功能是辅助B细胞分化、发育和促进体液免疫应答,当Tfh细胞数量或功能紊乱时可引起自身免疫病、免疫缺陷病、肿瘤或感染性疾病的发生或加重.  相似文献   

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《Immunobiology》2019,224(4):539-550
Autoimmune regulator (Aire), primarily expressed in medullary thymic epithelial cells (mTECs), maintains central immune tolerance through the clearance of self-reactive T cells. Aire can also be expressed in dendritic cells (DCs), and DCs can mediate T follicular helper (TFH) cell differentiation and self-reactive B cell activation through inducible costimulator molecule ligand (ICOSL) and interleukin 6 (IL-6), which can cause autoimmune diseases. To confirm whether Aire in DCs affects TFH cell differentiation and to determine the role of Aire in the maintenance of peripheral immune tolerance, this study observed the effects of Aire deficiency on TFH cells using Aire knockout mice. The results showed that Aire deficiency caused increased number of TFH cells, both in vivo and in vitro. Further studies showed that Aire deficiency promoted TFH differentiation through the upregulation of ICOSL and IL-6 in DCs. Thus Aire could suppress the expression of ICOSL and IL-6 to inhibit TFH cell differentiation.  相似文献   

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The interactions of CD4+ T cells and B cells are fundamental for the generation of protective antibody responses, as well as for the development of harmful autoimmune diseases. Recent studies of human tissues and blood samples have established a new subset of CD4+ B helper T cells named peripheral helper T (Tph) cells. Unlike T follicular helper (Tfh) cells, which interact with B cells within lymphoid organs, Tph cells provide help to B cells within inflamed tissues. Tph cells share many B helper-associated functions with Tfh cells and induce B cell differentiation toward antibody-producing cells. The differentiation mechanism is also partly shared between Tph and Tfh cells in humans, and both Tfh and Tph cells can be found within the same tissues, including cancer tissues. However, Tph cells display features distinct from those of Tfh cells, such as the expression of chemokine receptors associated with Tph cell localization within inflamed tissues and a low Bcl-6/Blimp1 ratio. Unlike that of Tfh cells, current evidence shows that the target of Tph cells is limited to memory B cells. In this review, we first summarize recent findings on human Tph cells and discuss how Tph and Tfh cells play shared and distinct roles in human diseases.  相似文献   

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《Immunology》2017,152(3):382-387
T follicular helper (Tfh) cells have the important function of providing B‐cell help for the induction of antigen‐specific antibody production. As such, it is important to determine the factors that regulate the development, differentiation and function of Tfh cells. This review highlights some of the recent advances in our understanding of Tfh cell migration, Tfh cell memory and the origins and fate of circulating Tfh cells in the blood, that have been revealed from studies in humans and mice.  相似文献   

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T follicular helper (Tfh) cells play a crucial role in orchestrating the humoral arm of adaptive immune responses. Mature Tfh cells localize to follicles in secondary lymphoid organs (SLOs) where they provide help to B cells in germinal centers (GCs) to facilitate immunoglobulin affinity maturation, class‐switch recombination, and generation of long‐lived plasma cells and memory B cells. Beyond the canonical GC Tfh cells, it has been increasingly appreciated that the Tfh phenotype is highly diverse and dynamic. As naive CD4+ T cells progressively differentiate into Tfh cells, they migrate through a variety of microanatomical locations to obtain signals from other cell types, which in turn alters their phenotypic and functional profiles. We herein review the heterogeneity of Tfh cells marked by the dynamic phenotypic changes accompanying their developmental program. Focusing on the various locations where Tfh and Tfh‐like cells are found, we highlight their diverse states of differentiation. Recognition of Tfh cell heterogeneity has important implications for understanding the nature of T helper cell identity specification, especially the plasticity of the Tfh cells and their ontogeny as related to conventional T helper subsets.  相似文献   

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T细胞辅助B细胞是适应性免疫和免疫记忆生成的基础.滤泡辅助性T细胞(Tfh)是辅助B细胞的主要T细胞亚群,其主要转录因子为Bcl6.Tfh细胞的明显特征为表达CXCR5、程序性死亡因子-1(PD-1)、IL-21和ICOS,同时Blimp-1表达下调.在HIV-1慢性感染过程中Tfh细胞累积增多,从而导致B细胞调节异常,发生功能性改变,这可能是HIV-1逃避体液免疫应答的根源.  相似文献   

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T follicular helper (Tfh) cells were discovered just over a decade ago as germinal centre T cells that help B cells make antibodies. Included in this role is affinity maturation and isotype switching. It is here that their functions become less clear. Tfh cells principally produce IL-21 which inhibits class switching to IgE. Recent studies have questioned whether the germinal centre is the main site of IgE class switching or IgE affinity maturation. In this review, I will examine the evidence that these cells are responsible for regulating IgE class switching and the relationship between Tfh cells and T helper 2 (Th2) effector cells.  相似文献   

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Deenick EK  Ma CS 《Immunology》2011,134(4):361-367
It is well established that the generation of a high-affinity long-lived antibody response requires the presence of T cells, specifically CD4+ T cells. These CD4+ T cells support the generation of a germinal centre (GC) response where somatic hypermutation and affinity maturation take place leading to the generation of memory B cells and plasma cells, which provide long-lasting protection. Greater insight into the nature of the CD4+ T cells involved in this process was provided by two studies in 2000 that described CD4+ T cells residing in the B cell follicle that expressed CXCR5. As a result these cells were named follicular B helper T cells, now more commonly known as T follicular helper (Tfh) cells. Since then there has been enormous growth in our understanding of these cells, now considered a distinct T helper (Th) cell lineage that can arise from naive CD4+ T cells following activation. This review summarizes some of the most recent work that has characterized Tfh cells and the pathways that lead to their generation.  相似文献   

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Yin Yao  Cai-Ling Chen  Di Yu  Zheng Liu 《Allergy》2021,76(2):456-470
Allergic diseases are characterized by overactive type 2 immune responses to allergens and immunoglobulin E (IgE)-mediated hypersensitivity. Emerging evidence suggests that follicular helper T (TFH) cells, rather than type 2 T-helper (TH2) cells, play a crucial role in controlling IgE production. However, follicular regulatory T (TFR) cells, a specialized subset of regulatory T (TREG) cells resident in B-cell follicles, restricts TFH cell-mediated help in extrafollicular antibody production, germinal center (GC) formation, immunoglobulin affinity maturation, and long-lived, high-affinity plasma and memory B-cell differentiation. In mouse models of allergic asthma and food allergy, CXCR5+ TFH cells, not CXCR5 conventional TH2 cells, are needed to support IgE production, otherwise exacerbated by CXCR5+ TFR cell deletion. Upregulation of TFH cell activities, including a skewing toward type 2 TFH (TFH2) and IL-13 producing TFH (TFH13) phenotypes, and defects in TFR cells have been identified in patients with allergic diseases. Allergen immunotherapy (AIT) reinstates the balance between TFH and TFR cells in patients with allergic diseases, resulting in clinical benefits. Collectively, further understanding of TFH and TFR cells and their role in the immunopathogenesis of allergic diseases creates opportunities to develop novel therapeutic approaches.  相似文献   

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《Immunity》2021,54(12):2740-2755.e6
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Type 1 diabetes is an autoimmune disease typically starting in childhood that culminates in the destruction of insulin-producing beta cells in the pancreas. Although type 1 diabetes is considered to be a primarily T cell–mediated disease, B cells clearly participate in the autoimmune process, as autoantibodies recognizing pancreatic islet antigen commonly appear in circulation before the onset of the disease. T cells providing helper functions to B cells have recently been shown to be involved in the pathogenesis of a wide range of antibody-associated immune disorders. These T cells include CXCR5-positive follicular T helper (Tfh) cells, and a recently described closely related CXCR5-negative subset coined peripheral T helper (Tph) cells. Here, we review the current state of knowledge on different B cell helper T cell subsets, focusing on their potential involvement in the development of type 1 diabetes.  相似文献   

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目的 观察类风湿关节炎(RA)患者外周血中滤泡辅助性T细胞(Tfh)及T辅助细胞9(Th9)的变化,并与病情活动性及脏器受累等临床资料进行相关性分析,探讨Tfh及Th9在RA发病过程中可能的免疫学发病机制.方法 选择36例RA患者和22例健康对照.根据病情活动度不同将病例组分为病情高度活动组(22例)、病情中度活动组(14例),流式细胞仪检测RA和正常对照组外周血单个核细胞( PBMCs)中CD4-FITC、CXCR5-PE、ICOS-APC标记的CD4+ CXCR5+ ICOS+(Tfh)及CD8-FITC、CD3-APC、IL9-PE标记的CD3+CD8-IL-9+( Th9)比例.分析Tfh及Th9与RA患者的血沉(ESR)、C反应蛋白(CRP)、类风湿因子(RF)、关节压痛数、肿胀数及骨质破坏等指标的相关性;分析Tfh与Th9的关系.结果 RA患者的Tfh表达率明显高于对照组(Z=-6.082,P=0.000),RA患者Th9的表达率亦高于对照组(0.989±0.498 vs 0.213 ±0.084,t=13.063,P=0.000);RA重度活动组Tfh表达率亦高于中度活动患者的表达率(3.880±1.255 vs 2.678±1.022,t=2.990,P=0.005),且两组Tfh的表达率均高于对照组(P均<0.01);RA重度活动患者Th9表达率高于中度患者(1.181±0.523 vs 0.686±0.254,t=4.043,P=0.000),且两组Th9的表达率亦均高于对照组(P均<0.01); Tfh 细胞数与RA患者DAS28(r=0.571,P=0.000)、ESR(r=0.375,P=0.029)、CRP(r=0.357,P=0.032)、关节压痛数(r=0.598,P=0.000)、RF(r=0.421,P=0.023)及抗CCP滴度(r=0.421,P=0.023)正相关;与病程、晨僵、关节肿胀数、骨质破坏、心电图异常无相关性.Th9表达的百分率与RA患者的DAS28( r=0.461,P=0.005)、ESR(r=0.347,P=0.042)、CRP(r=0.384,P=0210)、关节压痛数(r=0.341,P=0.042)、关节肿胀数(r=0.347,P=0.038)及RF(r=0.379,P=0.025)正相关,与病程、晨僵时间、抗CCP滴度、心电图异常及骨质破坏无相关性;Tfh与Th9在外周血中的表达率呈正相关(r=0.727,P=0.000).结论 RA患者外周血Tfh及Th9的比例显著升高,且与疾病活动度及相关炎症指标明显相关,提示Tfn及Th9可能参与RA的发病及病情发展.  相似文献   

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