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肿瘤相关髓样细胞为T细胞急性淋巴细胞白血病提供关键支持。

Tumor-associated myeloid cells provide critical support for T-ALL.

作者信息

Lyu Aram, Triplett Todd A, Nam Seo Hee, Hu Zicheng, Arasappan Dhivya, Godfrey Wesley H, Ames Rachel Y, Sarang Adviti, Selden Hilary J, Lee Chang-Han, Georgiou George, Horton Terzah M, Ehrlich Lauren I R

机构信息

Department of Molecular Biosciences, Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, TX.

Department of Oncology, Livestrong Cancer Institutes, The University of Texas at Austin Dell Medical School, Austin, TX.

出版信息

Blood. 2020 Oct 15;136(16):1837-1850. doi: 10.1182/blood.2020007145.

Abstract

Despite harboring mutations in oncogenes and tumor suppressors that promote cancer growth, T-cell acute lymphoblastic leukemia (T-ALL) cells require exogenous cells or signals to survive in culture. We previously reported that myeloid cells, particularly dendritic cells, from the thymic tumor microenvironment support the survival and proliferation of primary mouse T-ALL cells in vitro. Thus, we hypothesized that tumor-associated myeloid cells would support T-ALL in vivo. Consistent with this possibility, in vivo depletion of myeloid cells results in a significant reduction in leukemia burden in multiple organs in 2 distinct mouse models of T-ALL and prolongs survival. The impact of the myeloid compartment on T-ALL growth is not dependent on suppression of antitumor T-cell responses. Instead, myeloid cells provide signals that directly support T-ALL cells. Transcriptional profiling, functional assays, and acute in vivo myeloid-depletion experiments identify activation of IGF1R as a critical component of myeloid-mediated T-ALL growth and survival. We identify several myeloid subsets that have the capacity to directly support survival of T-ALL cells. Consistent with mouse models, myeloid cells derived from human peripheral blood monocytes activate IGF1R and directly support survival of primary patient T-ALL cells in vitro. Furthermore, enriched macrophage gene signatures in published clinical samples correlate with inferior outcomes for pediatric T-ALL patients. Collectively, these data reveal that tumor-associated myeloid cells provide signals critical for T-ALL growth in multiple organs in vivo and implicate tumor-associated myeloid cells and associated signals as potential therapeutic targets.

摘要

尽管T细胞急性淋巴细胞白血病(T-ALL)细胞携带促进癌症生长的癌基因和肿瘤抑制基因的突变,但它们在培养中需要外源性细胞或信号才能存活。我们之前报道过,胸腺肿瘤微环境中的髓样细胞,尤其是树突状细胞,在体外支持原代小鼠T-ALL细胞的存活和增殖。因此,我们推测肿瘤相关髓样细胞在体内也会支持T-ALL。与这种可能性一致的是,在两种不同的T-ALL小鼠模型中,体内清除髓样细胞会导致多个器官的白血病负担显著降低,并延长生存期。髓样区室对T-ALL生长的影响并不依赖于对抗肿瘤T细胞反应的抑制。相反,髓样细胞提供直接支持T-ALL细胞的信号。转录谱分析、功能测定和急性体内髓样细胞清除实验确定IGF1R的激活是髓样细胞介导的T-ALL生长和存活的关键组成部分。我们鉴定出几个有能力直接支持T-ALL细胞存活的髓样亚群。与小鼠模型一致,源自人外周血单核细胞的髓样细胞激活IGF1R,并在体外直接支持原发性患者T-ALL细胞的存活。此外,已发表的临床样本中富集的巨噬细胞基因特征与儿科T-ALL患者的不良预后相关。总体而言,这些数据表明肿瘤相关髓样细胞提供了对体内多个器官中T-ALL生长至关重要的信号,并表明肿瘤相关髓样细胞及相关信号是潜在的治疗靶点。

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