Jiang Boxuan, Zhang Han, Wu Yingcheng, Shen Yu
Department of Dermatology, Third Affiliated Hospital of Nantong University, Nantong Third People's Hospital, Nantong, China.
School of Medicine, Nantong University, Nantong, China.
Ann Transl Med. 2022 Aug;10(15):837. doi: 10.21037/atm-22-1810.
A major challenge of psoriasis is its dysfunctional immune niche. Remarkable gaps remain in understanding how immune cell state transitions are linked to clinical outcomes in psoriasis. Thus, there is a pressing need to discover immunomodulatory programs governing psoriasis progression.
Here, by using the state-of-the-art single-cell RNA-sequencing (RNA-seq) data, we observed the unique immune cell profile inside the psoriasis niche compared with the normal skins.
In detail, the immunosuppressive T cells such as regulatory T (Treg) cells and CTLA4 CD8 T cells showed higher infiltration in the psoriasis niche, indicating the immunosuppressive state was imprinted by such disease. Interestingly, unbiased trajectory and pathway enrichment analysis showed that those suppressive T cells potentially showed developmental and metabolic abnormalities. Intercellular crosstalk modeling shows that exhausted CTLA4 CD8 T cells can send out cytokine signaling via utilizing CXCL13-CXCR3 ligand-receptor pair. We finally quantified the metabolism profile of T cells and strikingly observed their enhanced metabolic activity.
Taken together, these data highlight cell-type specific reprogramming within the psoriasis microenvironment and provide evidence for immune-related biomarkers of psoriasis clinical outcome. Our work not only revealed the unique immune ecosystem of psoriasis, but also opened new opportunities for targeting immunometabolism in treating such skin diseases.
银屑病的一个主要挑战是其功能失调的免疫微环境。在理解免疫细胞状态转变如何与银屑病的临床结果相关联方面仍存在显著差距。因此,迫切需要发现控制银屑病进展的免疫调节程序。
在此,通过使用最先进的单细胞RNA测序(RNA-seq)数据,我们观察了银屑病微环境与正常皮肤相比独特的免疫细胞谱。
具体而言,免疫抑制性T细胞,如调节性T(Treg)细胞和CTLA4 CD8 T细胞,在银屑病微环境中显示出更高的浸润,表明这种疾病赋予了免疫抑制状态。有趣的是,无偏轨迹和通路富集分析表明,这些抑制性T细胞可能存在发育和代谢异常。细胞间串扰建模显示,耗竭的CTLA4 CD8 T细胞可以通过利用CXCL13-CXCR3配体-受体对发出细胞因子信号。我们最终量化了T细胞的代谢谱,并惊人地观察到它们增强的代谢活性。
综上所述,这些数据突出了银屑病微环境中细胞类型特异性的重编程,并为银屑病临床结果的免疫相关生物标志物提供了证据。我们的工作不仅揭示了银屑病独特的免疫生态系统,还为靶向免疫代谢治疗此类皮肤病开辟了新机会。