Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway

Psoriasis is a chronic inflammatory disease that is considered by a network of immunocytes and cytokines. Among all, Th17 cells–derived IL-17 is a critical driving factor in the pathogenesis of psoriasis. Recently, disruption of the extracellular matrix was found to be related to psoriasis progressi...

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الحاوية / القاعدة:Indian Journal of Dermatology
المؤلفون الرئيسيون: Chengyao Zhu, Yunqin Ren, Hongliang Yao, Bo Feng, Lunfei Liu, Min Zheng
التنسيق: مقال
اللغة:الإنجليزية
منشور في: Wolters Kluwer Medknow Publications 2023-01-01
الموضوعات:
الوصول للمادة أونلاين:http://www.e-ijd.org/article.asp?issn=0019-5154;year=2023;volume=68;issue=1;spage=59;epage=66;aulast=Zhu
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author Chengyao Zhu
Yunqin Ren
Hongliang Yao
Bo Feng
Lunfei Liu
Min Zheng
author_facet Chengyao Zhu
Yunqin Ren
Hongliang Yao
Bo Feng
Lunfei Liu
Min Zheng
author_sort Chengyao Zhu
collection DOAJ
container_title Indian Journal of Dermatology
description Psoriasis is a chronic inflammatory disease that is considered by a network of immunocytes and cytokines. Among all, Th17 cells–derived IL-17 is a critical driving factor in the pathogenesis of psoriasis. Recently, disruption of the extracellular matrix was found to be related to psoriasis progression. In the present study, we aimed to investigate the role of heparanase (HPSE) in psoriasis and the crosstalk with the IL-17 signalling pathway. Skin tissues from non-affected areas and psoriatic lesion areas before and after 12 weeks of IL-17 monoclonal antibody treatment of 30 psoriasis patients were collected. HaCaT cells were treated with different concentrations of IL-17 antibody, and HPSE in cells and medium were measured with Western blotting assay as well as enzyme-linked immunosorbent assay (ELISA). In the imiquimod (IMQ)-induced psoriasis model, IL-17 protein and mRNA expression levels were measured, and changes in the proportion of Th17 cells were detected via flow cytometry. Our data showed that HPSE is upregulated in lesion tissues isolated from psoriasis patients, and was inhibited by anti-IL-17 treatment. In cutaneous cells and IMQ-induced psoriasis model, IL-17 promoted the synthesis of HPSE. Inversely, HPSE was also found to increase the percentage of Th17 cells derived from CD4+ T cells. Finally, we found that the combined treatments of HPSE inhibitor and IL-17 monoclonal antibody produced therapeutic effects on IMQ-induced psoriasis model. Our findings revealed the new role of HPSE in the pathogenesis of psoriasis and also provided a target for combined treatment of psoriasis.
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spelling doaj-art-8c31040d9bca4e95b37b7f1ddb95cc5c2025-08-19T21:48:12ZengWolters Kluwer Medknow PublicationsIndian Journal of Dermatology0019-51541998-36112023-01-01681596610.4103/ijd.ijd_641_22Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathwayChengyao ZhuYunqin RenHongliang YaoBo FengLunfei LiuMin ZhengPsoriasis is a chronic inflammatory disease that is considered by a network of immunocytes and cytokines. Among all, Th17 cells–derived IL-17 is a critical driving factor in the pathogenesis of psoriasis. Recently, disruption of the extracellular matrix was found to be related to psoriasis progression. In the present study, we aimed to investigate the role of heparanase (HPSE) in psoriasis and the crosstalk with the IL-17 signalling pathway. Skin tissues from non-affected areas and psoriatic lesion areas before and after 12 weeks of IL-17 monoclonal antibody treatment of 30 psoriasis patients were collected. HaCaT cells were treated with different concentrations of IL-17 antibody, and HPSE in cells and medium were measured with Western blotting assay as well as enzyme-linked immunosorbent assay (ELISA). In the imiquimod (IMQ)-induced psoriasis model, IL-17 protein and mRNA expression levels were measured, and changes in the proportion of Th17 cells were detected via flow cytometry. Our data showed that HPSE is upregulated in lesion tissues isolated from psoriasis patients, and was inhibited by anti-IL-17 treatment. In cutaneous cells and IMQ-induced psoriasis model, IL-17 promoted the synthesis of HPSE. Inversely, HPSE was also found to increase the percentage of Th17 cells derived from CD4+ T cells. Finally, we found that the combined treatments of HPSE inhibitor and IL-17 monoclonal antibody produced therapeutic effects on IMQ-induced psoriasis model. Our findings revealed the new role of HPSE in the pathogenesis of psoriasis and also provided a target for combined treatment of psoriasis.http://www.e-ijd.org/article.asp?issn=0019-5154;year=2023;volume=68;issue=1;spage=59;epage=66;aulast=Zhuheparanaseil-17psoriasisth17 cells
spellingShingle Chengyao Zhu
Yunqin Ren
Hongliang Yao
Bo Feng
Lunfei Liu
Min Zheng
Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway
heparanase
il-17
psoriasis
th17 cells
title Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway
title_full Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway
title_fullStr Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway
title_full_unstemmed Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway
title_short Heparanase contributes to psoriatic lesions through crosstalk with IL-17 pathway
title_sort heparanase contributes to psoriatic lesions through crosstalk with il 17 pathway
topic heparanase
il-17
psoriasis
th17 cells
url http://www.e-ijd.org/article.asp?issn=0019-5154;year=2023;volume=68;issue=1;spage=59;epage=66;aulast=Zhu
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AT yunqinren heparanasecontributestopsoriaticlesionsthroughcrosstalkwithil17pathway
AT hongliangyao heparanasecontributestopsoriaticlesionsthroughcrosstalkwithil17pathway
AT bofeng heparanasecontributestopsoriaticlesionsthroughcrosstalkwithil17pathway
AT lunfeiliu heparanasecontributestopsoriaticlesionsthroughcrosstalkwithil17pathway
AT minzheng heparanasecontributestopsoriaticlesionsthroughcrosstalkwithil17pathway