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High‐dimensional single‐cell proteomics analysis identifies immune checkpoint signatures and therapeutic targets in ulcerative colitis

机译:高维度单一细胞蛋白质组学分析确定免疫签名和检查站治疗溃疡性结肠炎的目标

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Abstract Immune checkpoints are regulators of immune cells and play key roles in the modulation of immune responses. The role of checkpoints in autoimmune disease is poorly understood but likely to be central since checkpoint inhibition during cancer treatment can cause autoimmunity. We generated a high‐dimensional single‐cell proteomics data set from PBMCs of healthy individuals and patients with ulcerative colitis (UC) by mass cytometry, enabling systems‐wide analyses of immune cell frequencies and cell type‐specific expression patterns of 12 immune checkpoints. Subtle but significant changes in immune cell frequencies and checkpoint expression were observed between UC patients on different treatment regimens and between patients and healthy controls. Most strikingly, UC patients showed a reduced number of peripheral NK‐cells and those cells showed an altered phenotype including increased TIGIT expression. Based on these results, we modulated NK‐cell function ex vivo through targeting of TIGIT pathway members. In summary, we describe a pattern of changes in immune cell abundance and checkpoint expression as a basis for UC patient stratification and we show modulation of a corresponding immune cell subset through checkpoint targeting. Our approach can be used for the identification of pathogenic immune cell subsets and guide target selection in autoimmunity and chronic inflammation.
机译:摘要免疫检查点的监管机构免疫细胞和调制中扮演关键角色的免疫反应。自身免疫性疾病了解甚少可能是中央因为检查点抑制在癌症治疗可能会导致自身免疫。我们生成一个高维度单一细胞蛋白质组学数据集从PBMCs健康个人和溃疡性结肠炎患者(加州大学)质量血细胞计数,使系统的宽分析和细胞免疫细胞频率12的免疫类型地理表达模式检查点。免疫细胞频率和检查点的表情观察UC患者之间在不同治疗方案和病人之间健康对照组。显示数量减少的外围NK细胞和这些细胞表型的改变包括增加TIGIT表达式。这些结果,我们调节NK细胞功能的前女友体内通过TIGIT通路成员的目标。总之,我们描述一个模式的变化免疫细胞丰度和检查点表达式我们作为UC患者分层的基础显示出一个相应的免疫细胞的调制通过检查点定位子集。可用于病原的鉴定吗免疫细胞亚群和指导目标选择自身免疫和慢性炎症。

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