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Emerging single-cell technologies in immunology

机译:新兴的免疫单细胞技术

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摘要

During evolution, the immune system has diversified to protect the host from the extremely wide array of possible pathogens. Until recently, immune responses were dissected by use of global approaches and bulk tools, averaging responses across samples and potentially missing particular contributions of individual cells. This is a strongly limiting factor, considering that initial immune responses are likely to be triggered by a restricted number of cells at the vanguard of host defenses. The development of novel, single-cell technologies is a major innovation offering great promise for basic and translational immunology with the potential to overcome some of the limitations of traditional research tools, such as polychromatic flow cytometry or microscopy-based methods. At the transcriptional level, much progress has been made in the fields of microfluidics and single-cell RNA sequencing. At the protein level, mass cytometry already allows the analysis of twice as many parameters as flow cytometry. In this review, we explore the basis and outcome of immune-cell diversity, how genetically identical cells become functionally different, and the consequences for the exploration of host-immune defense responses. We will highlight the advantages, trade-offs, and potential pitfalls of emerging, single-cell-based technologies and how they provide unprecedented detail of immune responses.
机译:在进化过程中,免疫系统已经多样化,可以保护宿主免受各种可能的病原体的侵害。直到最近,免疫反应都通过使用整体方法和大量工具进行了剖析,平均了样本之间的反应,并可能缺少单个细胞的特定贡献。考虑到初始免疫反应很可能是由宿主防御先锋队中数量有限的细胞触发的,因此这是一个强烈的限制因素。新型单细胞技术的发展是一项重大创新,为基础免疫和翻译免疫学带来了广阔前景,并有望克服传统研究工具的某些局限性,例如多色流式细胞术或基于显微镜的方法。在转录水平上,微流体和单细胞RNA测序领域已取得了很大进展。在蛋白质水平,质谱分析已经可以分析两倍于流式细胞分析的参数。在这篇综述中,我们探讨了免疫细胞多样性的基础和结果,遗传上相同的细胞如何变得功能上不同,以及探索宿主免疫防御反应的后果。我们将重点介绍新兴的基于单细胞的技术的优势,取舍和潜在的陷阱,以及它们如何提供前所未有的免疫应答细节。

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