MIF inhibition alleviates vitiligo progression by suppressing CD8+ T cell activation and proliferation

Author:

Chen Jianru1ORCID,Guo Weinan1ORCID,Du Pengran1ORCID,Cui Tingting1,Yang Yuqi1,Wang Yinghan1,Kang Pan1,Zhang Zhe1,Wang Qi1,Ye Zhubiao1,Liu Ling1,Jian Zhe1,Gao Tianwen1,Bian Huijie2,Li Shuli1ORCID,Li Chunying1ORCID

Affiliation:

1. Department of Dermatology, Xijing Hospital Fourth Military Medical University Xi'an PR China

2. National Translational Science Center for Molecular Medicine and Department of Cell Biology Fourth Military Medical University Xi'an PR China

Abstract

AbstractIn vitiligo, autoreactive CD8+ T cells have been established as the main culprit considering its pathogenic role in mediating epidermal melanocyte‐specific destruction. Macrophage migration inhibitory factor (MIF) is a pleiotropic molecule that plays a central role in various immune processes including the activation and proliferation of T cells; but whether MIF is intertwined in vitiligo development and progression and its involvement in aberrantly activated CD8+ T cells remains ill‐defined. In this study, we found that MIF was overabundant in vitiligo patients and a mouse model for human vitiligo. Additionally, inhibiting MIF ameliorated the disease progression in vitiligo mice, which manifested as less infiltration of CD8+ T cells and more retention of epidermal melanocytes in the tail skin. More importantly, in vitro experiments indicated that MIF‐inhibition suppressed the activation and proliferation of CD8+ T cells from the lymph nodes of vitiligo mice, and the effect extended to CD8+ T cells in peripheral blood mononuclear cells of vitiligo patients. Finally, CD8+ T cells derived from MIF‐inhibited vitiligo mice also exhibited an impaired capacity for activation and proliferation. Taken together, our results show that MIF might be clinically targetable in vitiligo treatment, and its inhibition might ameliorate vitiligo progression by suppressing autoreactive CD8+ T cell activation and proliferation. © 2023 The Pathological Society of Great Britain and Ireland.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Pathology and Forensic Medicine

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