Pharmacological targeting of the IL-17/neutrophil axis attenuates calcific deposits in rat models of calciphylaxis.

IF 13.6 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Journal of Clinical Investigation Pub Date : 2025-08-15 eCollection Date: 2025-10-01 DOI:10.1172/JCI190369
Bo Tao, Edward Z Cao, James Hyun, Sivakumar Ramadoss, Juan F Alvarez, Lianjiu Su, Qihao Sun, Zhihao Liu, Linlin Zhang, Alejandro Espinoza, Yiqian Gu, Feiyang Ma, Shen Li, Matteo Pellegrini, Arjun Deb
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引用次数: 0

Abstract

Calciphylaxis is a rare but life-threatening disorder characterized by ectopic calcification affecting the subcutaneous tissues and blood vessels of the skin. Survival rates are less than a year after diagnosis, and yet despite the severity of the condition, the pathobiology of calciphylaxis is ill understood. Here, we created animal models of calciphylaxis that recapitulated many characteristics of the human phenotype. We demonstrate that cutaneous calcification is preceded by inflammatory cell infiltration. We show that increased local skin inflammation, regardless of the inciting cause, in the presence of hypercalcemia and hyperphosphatemia contributes to cutaneous ectopic calcification. Genetically modified rodents lacking immune activation of T and B cells or NK cells are resistant to developing cutaneous calcification. Consistent with this, administration of the immunosuppressive cyclophosphamide reduced calcific deposits, as did T cell suppression with cyclosporine. We demonstrate that IL-17 is upregulated in calcific skin and neutrophils are the predominant cell type expressing IL-17 and tissue-nonspecific alkaline phosphatase (TNAP) that are necessary for ectopic calcification. Targeting IL-17 with a monoclonal antibody or using a myeloperoxidase inhibitor to blunt neutrophil activation notably attenuated calcific deposits in vivo. Taken together, these observations provide fresh insight into the role of the immune system and the IL-17/neutrophil axis in mediating ectopic calcification in rodent models of calciphylaxis.

IL-17/中性粒细胞轴的药理靶向可减轻大鼠钙化反应模型中的钙化沉积。
钙化反应是一种罕见但危及生命的疾病,其特征是异位钙化影响皮下组织和皮肤血管。诊断后的生存率不到一年,尽管病情严重,但对钙化反应的病理生物学尚不清楚。在这里,我们创建了动物模型的钙化反应,概括了人类表型的许多特征。我们证明皮肤钙化发生在炎症细胞浸润之前。我们发现,在高钙血症和高磷血症存在的情况下,局部皮肤炎症的增加,无论刺激原因如何,都有助于皮肤异位钙化。缺乏T细胞和B细胞或NK细胞免疫激活的转基因啮齿动物对皮肤钙化具有抗性。与此一致的是,免疫抑制剂环磷酰胺减少了钙化沉积,环孢素抑制T细胞也是如此。我们证明IL-17在钙化皮肤中上调,中性粒细胞是表达IL-17和组织非特异性碱性磷酸酶(TNAP)的主要细胞类型,这是异位钙化所必需的。用单克隆抗体靶向IL-17或使用髓过氧化物酶抑制剂来钝化中性粒细胞活化,显著减少体内钙沉积。综上所述,这些观察结果为免疫系统和IL-17/中性粒细胞轴在钙化反应模型中介导异位钙化的作用提供了新的见解。
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来源期刊
Journal of Clinical Investigation
Journal of Clinical Investigation 医学-医学:研究与实验
CiteScore
24.50
自引率
1.30%
发文量
1034
审稿时长
2 months
期刊介绍: The Journal of Clinical Investigation, established in 1924 by the ASCI, is a prestigious publication that focuses on breakthroughs in basic and clinical biomedical science, with the goal of advancing the field of medicine. With an impressive Impact Factor of 15.9 in 2022, it is recognized as one of the leading journals in the "Medicine, Research & Experimental" category of the Web of Science. The journal attracts a diverse readership from various medical disciplines and sectors. It publishes a wide range of research articles encompassing all biomedical specialties, including Autoimmunity, Gastroenterology, Immunology, Metabolism, Nephrology, Neuroscience, Oncology, Pulmonology, Vascular Biology, and many others. The Editorial Board consists of esteemed academic editors who possess extensive expertise in their respective fields. They are actively involved in research, ensuring the journal's high standards of publication and scientific rigor.
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