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Role of the Transcription Factor NFATc1 in Psoriasis and Psoriasis-like Skin Inflammation

Role of the Transcription Factor NFATc1 in Psoriasis and Psoriasis-like Skin Inflammation
转录因子 NFATc1 在银屑病和银屑病样皮肤炎症中的作用
批准号:
327393219
负责人:
Professor Dr. Matthias Goebeler
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2017
资助国家:
德国
项目状态:
已结题
起止时间:
2016-12-31 至 2019-12-31

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中文摘要
翻译
牛皮癣是一种常见的炎症性皮肤病,影响2- 3%的人口,严重影响生活质量。该疾病通常与(银屑病)关节炎、心血管、代谢和其他合并症有关。结垢、浸润和红斑是银屑病的临床特征,反映了角质形成细胞过度增殖和异常分化,以及真皮和表皮的白细胞浸润。目前,牛皮癣被认为是一种受遗传易感性和环境因素调节的T细胞控制的全身性炎症疾病。到目前为止,B淋巴细胞是一种在病理学上一直被忽视的细胞类型。使用广泛认可的牛皮癣样皮肤炎症小鼠模型,依赖于反复使用toll样受体(TLR)-7激动剂咪喹莫特(IMQ),我们最近发现B淋巴细胞的缺失导致皮肤炎症的严重加重。相比之下,B淋巴细胞选择性消融转录因子NFATc1的小鼠几乎没有发生牛皮癣样炎症(Alrefai等人,Nature Communications 7:11724, doi: 10.1038/ncomms11724(2016))。这些观察结果可能归因于nfatc1介导的B淋巴细胞中抗炎细胞因子白介素-10 (IL-10)的转录下调,而白细胞介素-10控制着Th1和th17驱动的炎症。本跨学科项目提案的目的是:(i)确定NFATc1调节小鼠皮肤炎症发展的B淋巴细胞的发育阶段和(亚)群体;(ii)阐明B细胞(包括产生il -10的调节性B细胞(Bregs))是否以及如何影响人类牛皮癣的发展和维持。此外,我们(iii)计划阐明NFATc1对B淋巴细胞代谢的影响,并研究其在皮肤炎症背景下的功能后果。工作计划将包括对转基因小鼠的细胞、分子和免疫学研究,以鉴定相关的B淋巴细胞亚群,并系统地表征nfatc1调节的基因表达程序。研究结果将随后在病变和非病变人类银屑病皮肤以及银屑病患者和健康对照者的循环淋巴细胞中得到验证。为了最终证明Bregs在人类银屑病中的预期作用,我们将对SCID小鼠进行人类银屑病皮肤的异种移植,然后进行人类淋巴细胞的自体适应性转移。最后,我们将研究NFATc1对淋巴细胞代谢的影响,为银屑病等慢性皮肤炎症的新治疗策略铺平道路。
英文摘要
Psoriasis is a common inflammatory skin disease affecting 2-3 % of the population that considerably impairs the quality of life. The disease is often associated with (psoriatic) arthritis, cardiovascular, metabolic and other co-morbidities. Scaling, infiltration and erythema are the clinical hallmarks of psoriasis, which reflect excessive proliferation and aberrant differentiation of keratinocytes as well as leukocyte infiltration of dermis and epidermis. Today, psoriasis is considered as a T cell-controlled systemic inflammatory disease that is modulated by genetic susceptibility and environmental factors. A cell type that -so far- has pathogenetically largely been neglected are B lymphocytes. Using a widely recognized mouse model of psoriasis-like skin inflammation that relies on the repetitive epicutaneous application of the Toll-Like Receptor (TLR)-7 agonist imiquimod (IMQ) we very recently showed that the absence of B lymphocytes resulted in a massive aggravation of skin inflammation. In contrast, mice with B lymphocyte-selective ablation of the transcription factor NFATc1 developed hardly any psoriasiform inflammation (Alrefai et al., Nature Communications 7:11724, doi: 10.1038/ncomms11724 (2016)). These observations could be attributed to the NFATc1-mediated transcriptional down-regulation of the anti-inflammatory cytokine interleukin-10 (IL-10) in B lymphocytes, which controlled Th1- and Th17-driven inflammation. The aim of this interdisciplinary project proposal is (i) to identify the developmental stages and (sub-) population(s) of B lymphocytes in which NFATc1 regulate(s) the development of murine skin inflammation and (ii) to elucidate whether and how B cells (including IL-10-producing regulatory B cells (Bregs)) affect the development and maintenance of psoriasis in humans. Moreover, we (iii) plan to elucidate the influence of NFATc1 on the metabolism of B lymphocytes and study its functional consequences in the context of skin inflammation. The work program will include cellular, molecular and immunological studies of genetically modified mice to identify relevant subpopulations of B lymphocytes and to systematically characterize NFATc1-regulated gene expression programs. Findings will be subsequently validated in lesional and non-lesional human psoriatic skin as well as in circulating lymphocytes of psoriasis patients and healthy controls. To finally proof the anticipated role of Bregs in human psoriasis, we will perform xenotransplantation of human psoriatic skin to SCID mice followed by the autologous adaptive transfer of human lymphocytes. Finally, we will study the effect of NFATc1 on the metabolism of lymphocytes to perspectively pave the way for novel therapeutic strategies for chronic skin inflammation such as psoriasis.
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NFAT Transcription Factors Control the Fate of Keratinocytes and Lymphocytes in Skin Homeostasis and Inflammatory Skin Diseases
Intrazelluläre Signalwege der Endothelzellaktivierung und ihre Bedeutung für die inflammatorische Leukozytenrekrutierung
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