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iGATE 分析提高了流感感染单细胞免疫景观的可解释性。

iGATE analysis improves the interpretability of single-cell immune landscape of influenza infection.

机构信息

Department of Chemical Engineering.

Program in Immunology.

出版信息

JCI Insight. 2024 May 30;9(12):e172140. doi: 10.1172/jci.insight.172140.

Abstract

Influenza poses a persistent health burden worldwide. To design equitable vaccines effective across all demographics, it is essential to better understand how host factors such as genetic background and aging affect the single-cell immune landscape of influenza infection. Cytometry by time-of-flight (CyTOF) represents a promising technique in this pursuit, but interpreting its large, high-dimensional data remains difficult. We have developed a new analytical approach, in silico gating annotating training elucidating (iGATE), based on probabilistic support vector machine classification. By rapidly and accurately "gating" tens of millions of cells in silico into user-defined types, iGATE enabled us to track 25 canonical immune cell types in mouse lung over the course of influenza infection. Applying iGATE to study effects of host genetic background, we show that the lower survival of C57BL/6 mice compared with BALB/c was associated with a more rapid accumulation of inflammatory cell types and decreased IL-10 expression. Furthermore, we demonstrate that the most prominent effect of aging is a defective T cell response, reducing survival of aged mice. Finally, iGATE reveals that the 25 canonical immune cell types exhibited differential influenza infection susceptibility and replication permissiveness in vivo, but neither property varied with host genotype or aging. The software is available at https://github.com/UmichWenLab/iGATE.

摘要

流感在全球范围内造成持续的健康负担。为了设计在所有人群中都有效的公平疫苗,必须更好地了解宿主因素(如遗传背景和衰老)如何影响流感感染的单细胞免疫景观。飞行时间(CyTOF)细胞仪在这方面是一种很有前途的技术,但解释其庞大的高维数据仍然很困难。我们开发了一种新的分析方法,即基于概率支持向量机分类的计算门控注释训练阐明(iGATE)。通过快速准确地在计算中“门控”数以千万计的细胞到用户定义的类型中,iGATE 使我们能够在流感感染过程中跟踪小鼠肺部的 25 种典型免疫细胞类型。应用 iGATE 研究宿主遗传背景的影响,我们发现与 BALB/c 相比,C57BL/6 小鼠的存活率较低与炎症细胞类型的更快积累和 IL-10 表达的降低有关。此外,我们证明衰老最显著的影响是 T 细胞反应缺陷,降低了老年小鼠的存活率。最后,iGATE 揭示了 25 种典型免疫细胞类型在体内表现出不同的流感感染易感性和复制许可性,但这两个特性都不随宿主基因型或衰老而变化。该软件可在 https://github.com/UmichWenLab/iGATE 上获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2d3/11383363/bb9a8fe7c560/jciinsight-9-172140-g049.jpg

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