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首页> 外文期刊>Science Signaling >Impaired coordination between signaling pathways is revealed in human colorectal cancer using single-cell mass cytometry of archival tissue blocks
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Impaired coordination between signaling pathways is revealed in human colorectal cancer using single-cell mass cytometry of archival tissue blocks

机译:使用档案组织块的单细胞大规模细胞计数技术在人大肠癌中发现信号传导途径之间的协调性受损

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Cellular heterogeneity poses a substantial challenge to understanding tissue-level phenotypes and confounds conventional bulk analyses. To analyze signaling at the single-cell level in human tissues, we applied mass cytometry using cytometry time of flight to formalin-fixed, paraffin-embedded (FFPE) normal and diseased intestinal specimens. This technique, called FFPE-DISSECT (disaggregation for intracellular signaling in single epithelial cells from tissue), is a single-cell approach to characterizing signaling states in embedded tissue samples. We applied FFPE-DISSECT coupled to mass cytometry and found differential signaling by tumor necrosis factor-a in intestinal enterocytes, goblet cells, and enteroendocrine cells, implicating the downstream RAS-RAF-MEK pathway in determining goblet cell identity. Application of this technique and computational analyses to human colon specimens confirmed the reduced differentiation in colorectal cancer (CRC) compared to normal colon and revealed increased intratissue and intertissue heterogeneity in CRC with quantitative changes in the regulation of signaling pathways. Specifically, coregulation of the kinases p38 and ERK, the translation regulator 4EBP1, and the transcription factor CREB in proliferating normal colon cells was lost in CRC. Our data suggest that this single-cell approach, applied in conjunction with genomic annotation, enables the rapid and detailed characterization of cellular heterogeneity from clinical repositories of embedded human tissues. This technique can be used to derive cellular landscapes from archived patient samples (beyond CRC) and as a high-resolution tool for disease characterization and subtyping.
机译:细胞异质性对理解组织水平表型提出了重大挑战,并混淆了常规的大量分析。为了分析人体组织中单细胞水平的信号传导,我们应用了流式细胞术飞行时间对福尔马林固定,石蜡包埋(FFPE)正常和患病肠道标本进行大规模细胞计数。这项技术称为FFPE-DISSECT(用于组织中单个上皮细胞中细胞内信号的分解),是一种用于表征嵌入式组织样品中信号状态的单细胞方法。我们将FFPE-DISSECT应用于大规模流式细胞仪,并在肠肠上皮细胞,杯状细胞和肠内分泌细胞中发现肿瘤坏死因子-a的差异信号传导,这牵涉到下游RAS-RAF-MEK通路在确定杯状细胞身份方面。将该技术和计算分析应用于人结肠标本证实了与正常结肠相比,结肠直肠癌(CRC)的分化减少,并揭示了CRC中组织内和组织间异质性的增加,并且信号通路的调控发生了定量变化。具体而言,在增殖的正常结肠细胞中,激酶p38和ERK,翻译调节因子4EBP1和转录因子CREB的共调节在CRC中丢失。我们的数据表明,这种单细胞方法与基因组注释结合使用,能够从嵌入式人类组织的临床资料库中快速,详细地表征细胞异质性。此技术可用于从存档的患者样本(超出CRC)得出细胞分布图,并可作为疾病特征和亚型分析的高分辨率工具。

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