Functional Plasticity in CD4+ CD25+ CD127- Treg Population in Primary Immune Thrombocytopenia

Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 3470-3470 ◽  
Author(s):  
Boting Wu ◽  
Yanxia Zhan ◽  
Feng Li ◽  
Luya Cheng ◽  
Shanhua Zou ◽  
...  

Abstract Background As the most prevalent acquired bleeding disorder in adults, primary immune thrombocytopenia (ITP) and its underlying immune aberrations have been intensely investigated. Beyond the previously described Th1/Th2 imbalance, the role of Th17/Treg dysregulation has become the focus of attention. It was reported by our group that Tregs from untreated ITP patients demonstrated decreased IL-10 secretion and compromised control upon over-activated T effector cells (Li et al. 2015). The mechanism of Treg dysregulation under autoimmunity conditions is yet to be revealed. It has been recently argued by several research groups that the functional plasticity of Treg cell linage is dynamically regulated under inflammation via instability of Foxp3 expression, which means that Tregs can lose Foxp3 expression to gain effector T cell function in inflammatory milieu. The present study evaluated phenotypic features and gene expression traits of purified CD4+ T helper cells from ITP patients before and after glycocorticoids treatment, thus intending to investigate Treg functional plasticity among ITP patients. Methods CD4+ T helper cells were obtained via magnetic activated cell sorting from peripheral blood of 8 primary ITP patients before and after glycocorticoids treatment and 4 healthy volunteers. The phenotypic features were determined by FACS Canto II system with surface staining of CD25 and CD127, as well as cytoplasmic staining of IFN-γ and IL-17. Gene expression profiling was performed via QIAGEN Human T Helper Cell Differentiation PCR Array. Results The pre-treatment platelet count was (7±7)*109/L among 8 ITP patients (2 males and 6 females, median age 57.0 years), and the post-treatment platelet count was restored to (158±63)*109/L after high-dose dexamethasone regimen (40mg/d*4d). Gene expression profiling revealed that Foxp3 (-2.8 folds, p=0.001), TNF (-4.0 folds, p=0.003), and Stat1 (-2.3 folds, p=0.001) levels were significantly down-regulated among untreated ITP patients, while IL-17A (3.6 folds, p=0.05) was up-regulated with marginal statistical significance. The percentage of CD25+ CD127- population in CD4+ cells was similar among 3 groups (pre-treatment ITP: 3.1±0.6%, post-treatment ITP: 3.2±0.7%, health control: 3.4±0.8%). Among CD4+ CD25+ CD127- population, the percentage of IL-17+ cells was elevated in pre-treatment ITP patients (2.9±1.8% vs. 1.4±0.2%, p=0.17), and significantly decreased after high-dose dexamethasone regimen (1.5±1.1% vs. 2.9±1.8%, p=0.035), while the percentage of IFN-γ+ cells was similar among 3 groups (pre-treatment ITP: 18.5±12.6%, post-treatment ITP: 11.1±9.5%, health control: 18.5±3.8%). Conclusions Among primary ITP patients, Foxp3 expression was significantly decreased in their CD4+ T helper cells, which was inconsistent with the almost stable CD4+ CD25+ CD127- percentages determined by flow cytometry between ITP patients and healthy volunteers. Within the Treg population, we demonstrated elevated IL-17 expressing cells in pre-treatment ITP patients, which could be restored after high-dose dexamethasone regimen. These findings favored the argument of the functional plasticity of Treg cell linage during autoimmunity, and corresponded to Th17 dysregulation previously described in primary ITP. Disclosures No relevant conflicts of interest to declare.

2018 ◽  
Vol 120 (4) ◽  
pp. 5343-5354
Author(s):  
Majid Kianmehr ◽  
Abdolrahim Rezaee ◽  
Mahmoud Mahmoudi ◽  
Vahideh Ghorani ◽  
Mohammad Hossein Boskabady

2016 ◽  
Author(s):  
Marissa Penna-Martinez ◽  
Helen Hess ◽  
Claudia Doring ◽  
Nojan Nejatian ◽  
Dimitra Bogdanou ◽  
...  

2021 ◽  
Vol 80 (Suppl 1) ◽  
pp. 443.1-443
Author(s):  
M. Hosonuma ◽  
T. Isozaki ◽  
H. Furuya ◽  
Y. Yamazaki ◽  
Y. Ikari ◽  
...  

Background:Eosinophilic fasciitis (EF) is a rare disease that causes inflammation and fibrosis mainly in the fascia of the extremities with eosinophilia. It has been reported that the hypertrophied fascia in EF shows inflammatory cell infiltration by the lymphocytes and eosinophils and increased expression of fibrosis-related cytokines genes in fibroblast [1]. However, its pathophysiology in the fascia remains unresolved.Objectives:Therefore, we focused on fascial fibroblasts and aimed to determine the role of interleukin-4 (IL-4) in eosinophil and helper T cell infiltration and fibrosis in fascial fibroblast in EF.Methods:Fascial fibroblasts were obtained from fascia biopsy of a patient with EF, and were stimulated with pre- and post-treatment serum of a patient with EF and healthy control, followed by microarray to analyze gene expression. Fascial fibroblasts were stimulated with IL-4 10 ng/mL, and gene expression of IL-4 receptor and CCR3 ligands, CCL7 and CCL11 were measured by qPCR. Transforming growth factor (TGF) -β and periostin in the pre- and post-treatment serum of a patient with EF and conditioned medium of fascial fibroblasts stimulated with IL-4 were measured by ELISA. To examine the role of IL-4 in proliferation, we performed in proliferation assays using fascial fibroblasts treated with IL-4. CCR3-positive T cells in the fascial tissue of EF, dermatomyositis, and polymyositis patients were evaluated by immunostaining.Results:By microarray analysis, CCL7 and CCL11 expression of fascial fibroblasts stimulated with pre-treatment EF serum was higher than that in post-treatment EF serum and control serum. CCL7 and CCL11 mRNA in IL-4 stimulated facial fibroblasts were increased by 5.1-fold and 7.3-fold, respectively. TGF-β and periostin in IL-4 stimulated facial fibroblast conditioned medium were also increased. In addition, TGF-β and periostin in EF serum were gradually decreased by treatment for 4 and 10 weeks, compared to before treatment. Finally, fascial fibroblast proliferation was significantly increased by stimulation with IL-4. Furthermore, infiltration of CCR3-positive T cells was specific to the fascial tissue of EF.Conclusion:In EF, IL-4 enhances the production of CCR3 ligands, TGF-β, and periostin from fascial fibroblasts. As a result, it promotes the migration of eosinophils and CCR3-positive T helper cells to the fascia and fibrosis. These results suggest that inhibition of IL-4 pathway could be a novel strategy for eosinophilic fasciitis.References:[1]Igarashi A, Nashiro K, Kikuchi K, et al. Connective tissue growth factor gene expression in tissue sections from localized scleroderma, keloid, and other fibrotic skin disorders. J Invest Dermatol. 1996 Apr;106(4):729-33.Disclosure of Interests:None declared


2019 ◽  
Author(s):  
S Ehrlich ◽  
K Wild ◽  
M Smits ◽  
K Zoldan ◽  
M Hofmann ◽  
...  

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