C5a/C5aR1 mediates IMQ‐induced psoriasiform skin inflammation by promoting IL‐17A production from γδ‐T cells
Psoriasis is a chronic relapsing inflammatory skin disease, affecting up to 3% of the global population. Accumulating evidence suggests that the complement system is involved in its pathogenesis. Our previous study revealed that the C5a/C5aR1 pathway is crucial for disease development. However, the...
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Published in | The FASEB journal Vol. 34; no. 8; pp. 10590 - 10604 |
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Abstract | Psoriasis is a chronic relapsing inflammatory skin disease, affecting up to 3% of the global population. Accumulating evidence suggests that the complement system is involved in its pathogenesis. Our previous study revealed that the C5a/C5aR1 pathway is crucial for disease development. However, the underlying mechanisms remain largely unknown. To explore potential mechanisms, psoriatic skin lesions and histological changes were assessed following imiquimod (IMQ) cream treatment. Inflammatory cytokine expression was tested by real‐time RT‐PCR. Immunohistochemistry and flow cytometry were used to identify inflammatory cell infiltration and interleukin (IL‐17A) IL‐17A expression. A C5aR1 antagonist (C5aR1a) and PI3K inhibitor (wortmannin) were used for blocking experiments (both in vivo and in vitro) to explore the mechanism. C5a/C5aR1‐pathway inhibition significantly attenuated psoriasis‐like skin lesions with decreased epidermal hyperplasia, downregulated type 17‐related inflammatory gene expression, and reduced IL‐17A‐producing γδ‐T cell responses. Mechanistically, C5a/C5aR1 promoted the latter phenotype via PI3K‐Akt signaling. Consistently, C5aR1 deficiency clearly ameliorated IMQ‐induced chronic psoriasiform dermatitis, with a significant decrease in IL‐17A expression. Finally, blocking C5aR1 signaling further decreased psoriasiform skin inflammation in IL‐17‐deficient mice. Results suggest that C5a/C5aR1 mediates experimental psoriasis and skin inflammation by upregulating IL‐17A expression from γδ‐T cells. Blocking C5a/C5aR1/IL‐17A axis is expected to be a promising strategy for psoriasis treatment. |
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AbstractList | Psoriasis is a chronic relapsing inflammatory skin disease, affecting up to 3% of the global population. Accumulating evidence suggests that the complement system is involved in its pathogenesis. Our previous study revealed that the C5a/C5aR1 pathway is crucial for disease development. However, the underlying mechanisms remain largely unknown. To explore potential mechanisms, psoriatic skin lesions and histological changes were assessed following imiquimod (IMQ) cream treatment. Inflammatory cytokine expression was tested by real‐time RT‐PCR. Immunohistochemistry and flow cytometry were used to identify inflammatory cell infiltration and interleukin (IL‐17A) IL‐17A expression. A C5aR1 antagonist (C5aR1a) and PI3K inhibitor (wortmannin) were used for blocking experiments (both in vivo and in vitro) to explore the mechanism. C5a/C5aR1‐pathway inhibition significantly attenuated psoriasis‐like skin lesions with decreased epidermal hyperplasia, downregulated type 17‐related inflammatory gene expression, and reduced IL‐17A‐producing γδ‐T cell responses. Mechanistically, C5a/C5aR1 promoted the latter phenotype via PI3K‐Akt signaling. Consistently, C5aR1 deficiency clearly ameliorated IMQ‐induced chronic psoriasiform dermatitis, with a significant decrease in IL‐17A expression. Finally, blocking C5aR1 signaling further decreased psoriasiform skin inflammation in IL‐17‐deficient mice. Results suggest that C5a/C5aR1 mediates experimental psoriasis and skin inflammation by upregulating IL‐17A expression from γδ‐T cells. Blocking C5a/C5aR1/IL‐17A axis is expected to be a promising strategy for psoriasis treatment. |
Author | Li, Gui‐qing Xu, Gui‐lian Zheng, Quan‐you Xu, Feng Sun, Dao‐dong Gao, Wei‐wu Liang, Shen‐ju Zhong, Yu Wang, Tao Wu, Shun Yang, Yi |
Author_xml | – sequence: 1 givenname: Quan‐you surname: Zheng fullname: Zheng, Quan‐you organization: Army Medical University – sequence: 2 givenname: Feng surname: Xu fullname: Xu, Feng organization: Army Medical University – sequence: 3 givenname: Yi surname: Yang fullname: Yang, Yi organization: Army Medical University – sequence: 4 givenname: Dao‐dong surname: Sun fullname: Sun, Dao‐dong organization: Army Medical University – sequence: 5 givenname: Yu surname: Zhong fullname: Zhong, Yu organization: Army Medical University – sequence: 6 givenname: Shun surname: Wu fullname: Wu, Shun organization: Army Medical University – sequence: 7 givenname: Gui‐qing surname: Li fullname: Li, Gui‐qing organization: Army Medical University – sequence: 8 givenname: Wei‐wu surname: Gao fullname: Gao, Wei‐wu organization: Army Medical University – sequence: 9 givenname: Tao surname: Wang fullname: Wang, Tao organization: Army Medical University – sequence: 10 givenname: Gui‐lian surname: Xu fullname: Xu, Gui‐lian email: shenju7890@163.com, xuguilian@tmmu.edu.cn organization: Army Medical University – sequence: 11 givenname: Shen‐ju surname: Liang fullname: Liang, Shen‐ju email: shenju7890@163.com, xuguilian@tmmu.edu.cn organization: Army Medical University |
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Keywords | PI3K-Akt signaling complement system C5a C5aR1 imiquimod γδ-T cells |
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Notes | Funding information Quan‐you Zheng and Feng Xu contributed equally to this work. This work was supported by the National Natural Science Foundation of China (No. 81873881 and No. 81900628) and the Natural Science Foundation of Chongqing (cstc2018jcyjAX0260). The funders had no role in the design of the study, data collection and analysis, interpretation or the writing of this manuscript |
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SubjectTerms | Animals C5a C5aR1 complement system Cytokines - metabolism Down-Regulation - drug effects Down-Regulation - genetics Female Gene Expression - drug effects Gene Expression - physiology imiquimod Imiquimod - pharmacology Inflammation - drug therapy Inflammation - metabolism Interleukin-17 - metabolism Intraepithelial Lymphocytes - drug effects Intraepithelial Lymphocytes - metabolism Male Mice Mice, Inbred BALB C Mice, Inbred C57BL Phosphatidylinositol 3-Kinases - metabolism PI3K‐Akt signaling Proto-Oncogene Proteins c-akt - metabolism Psoriasis - drug therapy Psoriasis - metabolism Receptor, Anaphylatoxin C5a - metabolism Signal Transduction - drug effects Signal Transduction - physiology Skin - drug effects Skin - metabolism γδ‐T cells |
Title | C5a/C5aR1 mediates IMQ‐induced psoriasiform skin inflammation by promoting IL‐17A production from γδ‐T cells |
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