PANoptosis Features, a Humanized NSG Murine Model of Sjogren's Syndrome.

Yiying Yang, Huali Zhang, Xiaoyu Xiao, Muyao Guo
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Abstract

Sjogren's syndrome (SS) is a complex systemic autoimmune disease. This study aims to elucidate a humanized NOD-PrkdcscidIl2rgem1/Smoc (NSG) murine model to better clarify the pathogenesis of SS. NSG female mice were adoptively transferred with 10 million peripheral blood mononuclear cells (PBMCs) through the tail vein from healthy controls (HCs), primary Sjogren's syndrome (pSS), and systemic lupus erythematosus (SLE) patients on D0. The mice were subcutaneously injected with C57/B6j submandibular gland (SG) protein or phosphate-buffered saline on D3, D17 and D31, respectively. NSG mice were successfully transplanted with human PBMCs. Compared with NSG-HC group, NSG-pSS and NSG-SLE mice exhibited a large number of lymphocytes infiltration in the SG, decreased salivary flow rate, lung involvement, decreased expression of genes related to salivary secretion, and the production of autoantibodies. Type I interferon-related genes were increased in the SG of NSG-pSS and NSG-SLE mice. The ratio of BAX/BCL2, BAX, cleaved caspase3, and TUNEL staining were increased in the SG of NSG-pSS and NSG-SLE mice. The expressions of p-MLKL and p-RIPK3 were increased in the SG of NSG-pSS and NSG-SLE mice. Increased expression of type I interferon-related genes, PANoptosis (apoptosis and necroptosis) were identified in the SG of this typical humanized NSG murine model of SS.
PANoptosis特征,一种人源化NSG小鼠Sjogren综合征模型。
斯约格伦综合征(SS)是一种复杂的全身性自身免疫性疾病。本研究旨在阐明人源化NOD-PrkdcscidIl2rgem1/Smoc(NSG)小鼠模型,以更好地阐明SS的发病机制。NSG雌性小鼠在D0日通过尾静脉从健康对照组(HC)、原发性Sjogren综合征(pSS)和系统性红斑狼疮(SLE)患者身上获得1000万个外周血单核细胞(PBMC)。小鼠分别于D3、D17和D31日皮下注射C57/B6j颌下腺(SG)蛋白或磷酸盐缓冲盐水。NSG 小鼠成功移植了人类 PBMCs。与NSG-HC组相比,NSG-pSS和NSG-SLE小鼠表现出SG内大量淋巴细胞浸润、唾液流量减少、肺受累、唾液分泌相关基因表达减少以及自身抗体产生。在NSG-pSS和NSG-SLE小鼠的SG中,I型干扰素相关基因增加。NSG-pSS和NSG-SLE小鼠上皮细胞中的BAX/BCL2比率、BAX、裂解的caspase3和TUNEL染色均有所增加。p-MLKL和p-RIPK3在NSG-pSS和NSG-SLE小鼠的上皮细胞中表达增加。在这种典型的人源化 NSG SS 小鼠模型中,I 型干扰素相关基因、PANoptosis(细胞凋亡和坏死)的表达增加。
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