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单细胞功能蛋白质组学的高级细胞图谱可视化分析,实现患者分层。

Advanced Cell Mapping Visualizations for Single Cell Functional Proteomics Enabling Patient Stratification.

机构信息

IsoPlexis Corporation, Branford, CT, 06405, USA.

Kite Pharma, a Gilead Company, Santa Monica, CA, 90404, USA.

出版信息

Proteomics. 2020 Jul;20(13):e1900270. doi: 10.1002/pmic.201900270.

Abstract

Highly multiplexed single-cell functional proteomics has emerged as one of the next-generation toolkits for a deeper understanding of functional heterogeneity in cell. Different from the conventional population-based bulk and single-cell RNA-Seq assays, the microchip-based proteomics at the single-cell resolution enables a unique identification of highly polyfunctional cell subsets that co-secrete many proteins from live single cells and most importantly correlate with patient response to a therapy. The 32-plex IsoCode chip technology has defined a polyfunctional strength index (PSI) of pre-infusion anti-CD19 chimeric antigen receptor (CAR)-T products, that is significantly associated with patient response to the CAR-T cell therapy. To complement the clinical relevance of the PSI, a comprehensive visualization toolkit of 3D uniform manifold approximation and projection (UMAP) and t-distributed stochastic neighbor embedding (t-SNE) in a proteomic analysis pipeline is developed, providing more advanced analytical algorithms for more intuitive data visualizations. The UMAP and t-SNE of anti-CD19 CAR-T products reveal distinct cytokine profiles between nonresponders and responders and demonstrate a marked upregulation of antitumor-associated cytokine signatures in CAR-T cells from responding patients. Using this powerful while user-friendly analytical tool, the multi-dimensional single-cell data can be dissected from complex immune responses and uncover underlying mechanisms, which can promote correlative biomarker discovery, improved bioprocessing, and personalized treatment development.

摘要

高通量单细胞功能蛋白质组学已成为深入了解细胞功能异质性的下一代工具之一。与传统的基于群体的批量和单细胞 RNA-Seq 检测不同,基于微芯片的单细胞分辨率蛋白质组学能够独特地识别出具有高度多功能性的细胞亚群,这些细胞亚群能够从活的单细胞中共分泌多种蛋白质,最重要的是与患者对治疗的反应相关。32 重 IsoCode 芯片技术定义了输注前抗 CD19 嵌合抗原受体 (CAR)-T 产品的多功能强度指数 (PSI),与患者对 CAR-T 细胞治疗的反应显著相关。为了补充 PSI 的临床相关性,开发了一种蛋白质组学分析管道中 3D 均匀流形逼近和投影 (UMAP) 和 t 分布随机邻域嵌入 (t-SNE) 的综合可视化工具包,为更直观的数据可视化提供了更先进的分析算法。抗 CD19 CAR-T 产品的 UMAP 和 t-SNE 揭示了无反应者和有反应者之间不同的细胞因子特征,并证明了来自有反应患者的 CAR-T 细胞中抗肿瘤相关细胞因子特征的显著上调。使用这种强大而用户友好的分析工具,可以从复杂的免疫反应中剖析多维单细胞数据,并揭示潜在的机制,从而促进相关生物标志物的发现、改进的生物处理和个性化治疗的发展。

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