更正:B7-H3 CAR T 细胞清除肝内胆管癌并诱导持久应答
Correction: B7-H3 CAR T cells eradicate intrahepatic cholangiocarcinoma and induce durable response.
英文原题:Flow Cytometry Assessment of Lymphocyte Populations Infiltrating Liver Tumors.
组织驻留和招募的免疫细胞是肝脏肿瘤自然及治疗诱导免疫监视的重要介质。
组织驻留和招募的免疫细胞是肝脏肿瘤自然免疫监视和治疗诱导免疫监视的重要介质。这一观点最近因免疫检查点抑制剂被临床批准用于肝细胞癌和胆管癌的免疫治疗而得到进一步强化。此类研究进展依赖于对癌前和肿瘤性肝脏病变中存在的免疫细胞群进行深入表征。高维细胞术是沿此路径推进的一种便捷技术。在本章中,我们介绍了一种通过多色免疫荧光染色和流式细胞术评估肝脏淋巴细胞群亚型和分化状态的方案。我们详细描述了通过表面和细胞内染色十多种目标标志物,对肝细胞单细胞悬液进行活力评估和免疫细胞表型分析所需的步骤。该方案不需要预先去除碎片和死细胞,并允许并行处理多个样本。该流程包括使用一种耐固定剂的活力染料,该染料允许在细胞表面染色后、细胞内染色前进行细胞固定和透化,并在流式细胞仪上获取数据。此外,我们提供了一组荧光染料标记的抗体,旨在表征淋巴细胞亚群,可适应不同的实验设置。最后,我们概述了染色后流程,包括在流式细胞仪上获取数据以及用于获取后分析的工具。
Tissue-resident and recruited immune cells are essential mediators of natural and therapy-induced immunosurveillance of liver neoplasia. This idea has been recently reinforced by the clinical approval of immune checkpoint inhibitors for the immunotherapy of hepatocellular carcinoma and cholangiocarcinoma. Such research progress relies on the in-depth characterization of the immune populations that are present in pre-neoplastic and neoplastic hepatic lesions. A convenient technology for advancing along this path is high-dimensional cytometry.In this chapter, we present a protocol to assess the subtype and differentiation state of hepatic lymphocyte populations by multicolor immunofluorescence staining and flow cytometry. We detail the steps required for viability assessment and immune cell phenotyping of single-cell suspensions of liver cells by means of surface and intracellular staining of more than a dozen markers of interest. This protocol does not require prior removal of debris and dead cells and allows to process multiple samples in parallel. The procedure includes the use of a fixative-resistant viability dye that allows cell fixation and permeabilization after cell surface staining and before intracellular staining and data acquisition on a flow cytometer. Moreover, we provide a panel of fluorochrome-labeled antibodies designed for the characterization of lymphocytic subsets that can be adapted to distinct experimental settings. Finally, we present an overview of the post-staining pipeline, including data acquisition on a flow cytometer and tools for post-acquisition analyses.
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