Lacotte Stéphanie, Slits Florence, Orci Lorenzo A, Meyer Jeremy, Oldani Graziano, Delaune Vaihere, Gonelle-Gispert Carmen, Morel Philippe, Toso Christian
Hepatology and Transplantation Laboratory, Division of Abdominal and Transplantation Surgery, Department of Surgery, Geneva University Hospitals and Faculty of Medicine , Geneva, Switzerland.
Surgical Research Unit, Division of Abdominal and Transplantation Surgery, Department of Surgery, Geneva University Hospitals and Faculty of Medicine , Geneva, Switzerland.
Oncoimmunology. 2016 Sep 20;5(11):e1234565. doi: 10.1080/2162402X.2016.1234565. eCollection 2016.
Kupffer cells represent the first line of defense against tumor cells in the liver. Myeloid-derived suppressor cells (MDSC) have recently been observed in the liver parenchyma of tumor-bearing animals. The present study investigates the function of the MDSC subsets, and their impact on Kupffer cell phenotype and function. RIL-175 mouse hepatocellular carcinoma (HCC) cells were injected into the median liver lobe of C57BL/6 mice. Three weeks later, the median lobe hosting the tumor nodule was removed, and Kupffer cells and MDSCs were sorted from the remaining liver. Mouse livers devoid of HCC served as control. Kupffer cells expressed less co-stimulatory CD86 and MHCII and more co-inhibitory CD274 molecules in HCC-bearing livers than in control livers. Corresponding to this phenotype, Kupffer cells from HCC-bearing mice were less efficient in their function as antigen-presenting cells. Three CD11b cell populations were identified and sorted from HCC-bearing mice. These cells had various phenotypes with different levels of MDSC-specific surface markers (Ly6G cells, Gr1 cells, and Ly6C cells), and may be considered as bonafide MDSCs given their suppression of antigen-specific T cell proliferation. Primary isolated Kupffer cells in co-culture with the three MDSC subsets showed a decrease in CCL2 and IL-18 secretion, and an increase in IL-10 and IL-1β secretion, and an increased expression of CD86, CD274, and MHCII. In conclusion, these data demonstrated the existence of three MDSC subsets in HCC-bearing animals. These cells altered Kupffer cell function and may decrease the migration and activation of anticancer effector cells in the liver.
库普弗细胞是肝脏中抵御肿瘤细胞的第一道防线。最近在荷瘤动物的肝实质中观察到了髓源性抑制细胞(MDSC)。本研究调查了MDSC亚群的功能及其对库普弗细胞表型和功能的影响。将RIL-175小鼠肝细胞癌(HCC)细胞注射到C57BL/6小鼠的肝中叶。三周后,切除容纳肿瘤结节的中叶,并从剩余肝脏中分离出库普弗细胞和MDSC。无HCC的小鼠肝脏用作对照。与对照肝脏相比,荷瘤肝脏中的库普弗细胞表达较少的共刺激分子CD86和MHCII,而共抑制分子CD274更多。与此表型相对应,荷瘤小鼠的库普弗细胞作为抗原呈递细胞的功能效率较低。从荷瘤小鼠中鉴定并分离出三个CD11b细胞群体。这些细胞具有不同的表型,MDSC特异性表面标志物(Ly6G细胞、Gr1细胞和Ly6C细胞)水平不同,鉴于它们对抗原特异性T细胞增殖的抑制作用,可被视为真正的MDSC。与三个MDSC亚群共培养的原代分离库普弗细胞显示CCL2和IL-18分泌减少,IL-10和IL-1β分泌增加,CD86、CD274和MHCII表达增加。总之,这些数据证明了荷瘤动物中存在三个MDSC亚群。这些细胞改变了库普弗细胞的功能,并可能减少肝脏中抗癌效应细胞的迁移和激活。