睾酮通过靶向RORγt功能抑制IL-17表达

IF 3.7 3区 医学 Q2 IMMUNOLOGY
Akshay Binayke, Rajdeep Dalal, Charu Suri, Jyotsna Dandotiya, Srikanth Sadhu, Yashwant Kumar, Shailendra Asthana, Deepak Kumar Rathore, Amit Awasthi
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引用次数: 0

摘要

Th17细胞在自身免疫性疾病发病机制中起着至关重要的作用。然而,免疫反应的性别差异背后的机制,特别是女性对自身免疫性疾病的更高易感性,仍不清楚。本研究探讨了睾酮在调节IL-17反应中的作用。比较男女间IL-17水平和IL-17表达细胞,评价睾酮对Th17分化的影响。在吡喹莫德诱导的牛皮癣小鼠模型中,睾酮补充剂减轻了雌性小鼠牛皮癣的严重程度,而雄性小鼠阉割则加重了牛皮癣。睾酮抑制体外Th17分化和体内IL-17表达,与减轻银屑病严重程度相关。分子研究表明,睾酮是相关孤儿受体γ (rorγ γ)的逆激动剂,是IL-17表达的关键转录因子。这些发现为睾酮如何限制银屑病组织炎症提供了机制见解,并为开发新的睾酮衍生物靶向RORγt和抑制th17介导的炎症提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Testosterone Suppresses IL-17 Expression by Targeting RORγt Functions

Testosterone Suppresses IL-17 Expression by Targeting RORγt Functions

Th17 cells play a crucial role in autoimmune disease pathogenesis. However, the mechanisms behind the sex differences in immune responses, particularly women's higher susceptibility to autoimmune diseases, remain unclear. This study investigated the role of testosterone in modulating the IL-17 response. IL-17 levels and IL-17-expressing cells were compared between males and females, and testosterone's effect on Th17 differentiation was evaluated. In an imiquimod-induced psoriasis mouse model, testosterone supplementation reduced psoriasis severity in female mice, whereas castration of male mice exacerbated psoriasis. Testosterone inhibited both in vitro Th17 differentiation and in vivo IL-17 expression, correlating with reduced psoriasis severity. Molecular studies indicated that testosterone is an inverse agonist of related orphan receptor gamma (RORγt), a key transcription factor for IL-17 expression. These findings offer mechanistic insights into how testosterone limits tissue inflammation in psoriasis and suggest a basis for developing novel testosterone derivatives to target RORγt and suppress Th17-mediated inflammation.

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来源期刊
CiteScore
8.30
自引率
3.70%
发文量
224
审稿时长
2 months
期刊介绍: The European Journal of Immunology (EJI) is an official journal of EFIS. Established in 1971, EJI continues to serve the needs of the global immunology community covering basic, translational and clinical research, ranging from adaptive and innate immunity through to vaccines and immunotherapy, cancer, autoimmunity, allergy and more. Mechanistic insights and thought-provoking immunological findings are of interest, as are studies using the latest omics technologies. We offer fast track review for competitive situations, including recently scooped papers, format free submission, transparent and fair peer review and more as detailed in our policies.
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