Matos Tiago R, Liu Hongye, Ritz Jerome
Division of Hematologic Malignancies, Dana-Farber Cancer Institute, Boston, Massachusetts, USA; Harvard Medical School, Boston, Massachusetts, USA; Academic Medical Center, Department of Dermatology, University of Amsterdam, Amsterdam, The Netherlands.
Division of Hematologic Malignancies, Dana-Farber Cancer Institute, Boston, Massachusetts, USA; Harvard Medical School, Boston, Massachusetts, USA.
J Invest Dermatol. 2017 Apr;137(4):e31-e38. doi: 10.1016/j.jid.2017.02.006.
Growing recognition of the complexity of interactions within cellular systems has fueled the development of mass cytometry. The precision of time-of-flight mass spectrometry combined with the labeling of specific ligands with mass tags enables detection and quantification of more than 40 markers at a single-cell resolution. The 135 available detection channels allow simultaneous study of additional characteristics of complex biological systems across millions of cells. Cutting-edge mass cytometry by time-of-flight (CyTOF) can profoundly affect our knowledge of cell population heterogeneity and hierarchy, cellular state, multiplexed signaling pathways, proteolysis products, and mRNA transcripts. Although CyTOF is currently scarcely used within the field of investigative dermatology, we aim to highlight CyTOF's utility and demystify the technique. CyTOF may, for example, uncover the immunological heterogeneity and differentiation of Langerhans cells, delineate the signaling pathways responsible for each phase of the hair cycle, or elucidate which proteolysis products from keratinocytes promote skin inflammation. However, the success of mass cytometry experiments depends on fully understanding the methods and how to control for variations when making comparisons between samples. Here, we review key experimental methods for CyTOF that enable accurate data acquisition by optimizing signal detection and minimizing background noise and sample-to-sample variation.
对细胞系统内相互作用复杂性的认识不断加深,推动了质谱流式细胞术的发展。飞行时间质谱的精确性与用质量标签标记特定配体相结合,能够以单细胞分辨率检测和定量40多种标志物。135个可用的检测通道允许同时研究数百万个细胞的复杂生物系统的其他特征。前沿的飞行时间质谱流式细胞术(CyTOF)能够深刻影响我们对细胞群体异质性和层级结构、细胞状态、多重信号通路、蛋白水解产物以及mRNA转录本的认识。尽管CyTOF目前在皮肤研究领域很少使用,但我们旨在强调CyTOF的实用性并揭开该技术的神秘面纱。例如,CyTOF可能揭示朗格汉斯细胞的免疫异质性和分化情况,描绘毛发周期各阶段的信号通路,或者阐明角质形成细胞的哪些蛋白水解产物会促进皮肤炎症。然而,质谱流式细胞术实验的成功取决于充分理解实验方法以及在样本间进行比较时如何控制变量。在此,我们回顾了CyTOF的关键实验方法,这些方法通过优化信号检测、最小化背景噪声和样本间差异来实现准确的数据采集。