Yue Wu, Ziyang Zhang, Xiaojie Cai, Yang Sun, Fangzhou Lou, Zhikai Wang, Yan Li, Xichen Zheng, Xiuli Yang, Wenxiang Ding, Zilong Fang, Jing Zou, Zhenyao Xu, Siyu Deng, Aie Xu, Buwei Yu, Qifang Li, Honglin Wang
Psoriasis is a chronic inflammatory skin disease involving intricate neuroimmune crosstalk. However, the specific mechanisms and therapeutic targets remain elusive. In this study, a pilot clinical trial demonstrated that intravenous scopolamine, a muscarinic receptor antagonist, significantly ameliorated skin lesions in psoriasis patients. Consistently, scopolamine reduced inflammation in an imiquimod-induced mouse model. Metabolomic profiling identified acetylcholine (ACh) as a significantly upregulated neurotransmitter in psoriatic skin, and exogenous ACh exacerbated inflammatory phenotypes. To pinpoint the cellular target, single-cell RNA sequencing revealed that dendritic cells (DCs), unlike T cells or macrophages, uniquely coexpressed neurointeraction receptors and the pathogenic cytokine Il23a. Mechanistically, scopolamine competitively inhibited ACh binding to M1 muscarinic receptors (M1Rs) on DCs, suppressing interleukin (IL)-23 secretion. This therapeutic efficacy was recapitulated in mice with DC-specific M1R deletion. Crucially, the protective effect of M1R deficiency was abolished by recombinant IL-23 administration, whereas scopolamine failed to inhibit inflammation induced by direct IL-23 injection, confirming its action upstream of cytokine release. Collectively, our findings provide compelling evidence that scopolamine treats psoriasis by antagonizing elevated ACh and blocking M1 receptor-mediated IL-23 release in DCs.