Monocytic Myeloid-Derived Suppressor Cells from Tumor Tissue Are a Differentiated Cell with Limited Fate Plasticity.

Ryan D Calvert, James C Fleet, Pierrick G J Fournier, Patricia Juarez, Grant N Burcham, Jessica M Haverkamp, Theresa A Guise, Timothy L Ratliff, Bennett D Elzey
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Abstract

Owing to ease of access and high yield, most murine myeloid-derived suppressor cell (MDSC) knowledge comes from the study of spleen-derived MDSCs rather than those isolated from the tumor. Although several studies have identified subtle differences in suppressive function between these MDSCs, a recent report demonstrated that the whole peripheral myeloid compartment poorly reflects myeloid populations found at the tumor. We confirm and extend these observations by presenting data that indicate extensive differences exist between peripheral and tumor MDSCs, suggesting that it may be inappropriate to use spleen MDSCs as surrogates for studying tumor MDSCs. Using cytospins, we observed that tumor MDSCs have undergone a morphologic shift from immature myeloid cell forms commonly seen in bone marrow (BM) and spleen MDSCs and acquired mature myeloid cell characteristics. Spleen and BM monocyte-like MDSCs (M-MDSCs) readily responded to differentiation signals for multiple myeloid cell types whereas tumor M-MDSCs had remarkably reduced cellular plasticity. At the time of isolation, M-MDSCs from BM or spleen have little to no T cell suppressive activity whereas those from the tumor possess immediate and efficient T cell suppressive function. Finally, microarray analysis revealed that the transcriptomes of tumor and spleen M-MDSCs possessed >4500 differentially expressed transcripts. We conclude that tumor M-MDSCs are more differentiated and mature, and that they are morphologically, genetically, and functionally distinct from spleen and BM M-MDSCs. These observations have important implications for the design of anti-MDSC therapies and suggest that preclinical studies using nontumor MDSCs could lead to results not applicable to tumor MDSCs.

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来自肿瘤组织的单核髓源性抑制细胞是一种命运可塑性有限的分化细胞。
由于易于获取和高产量,大多数小鼠髓源性抑制细胞(MDSC)的知识来自脾源性MDSC的研究,而不是从肿瘤中分离出来的MDSC。尽管一些研究已经确定了这些MDSCs在抑制功能上的细微差异,但最近的一份报告表明,整个外周髓细胞室不能很好地反映肿瘤中发现的髓细胞群。我们通过提供的数据证实并扩展了这些观察结果,这些数据表明外周MDSCs和肿瘤MDSCs之间存在广泛的差异,这表明使用脾脏MDSCs作为研究肿瘤MDSCs的替代品可能是不合适的。利用细胞自旋,我们观察到肿瘤MDSCs经历了从骨髓(BM)和脾脏MDSCs中常见的未成熟髓样细胞形态到获得成熟髓样细胞特征的形态学转变。脾脏和骨髓单核细胞样MDSCs (M-MDSCs)容易对多髓细胞类型的分化信号做出反应,而肿瘤M-MDSCs的细胞可塑性显著降低。在分离时,来自骨髓或脾脏的M-MDSCs几乎没有T细胞抑制活性,而来自肿瘤的M-MDSCs具有立即有效的T细胞抑制功能。最后,微阵列分析显示,肿瘤和脾脏M-MDSCs的转录组具有>4500个差异表达转录本。我们得出结论,肿瘤M-MDSCs分化和成熟程度更高,并且它们在形态、遗传和功能上与脾脏和骨髓M-MDSCs不同。这些观察结果对抗mdsc疗法的设计具有重要意义,并表明使用非肿瘤MDSCs的临床前研究可能导致不适用于肿瘤MDSCs的结果。
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