INSERM, U1052, Cancer Research Center of Lyon (CRCL), University of Lyon (UCBL1), CNRS UMR_5286, Centre Léon Bérard (CLB), Lyon, France.
Institute of Virology, Technical University of Munich/Helmholtz Zentrum München, Munich, Germany.
J Innate Immun. 2018;10(4):339-348. doi: 10.1159/000489966. Epub 2018 Jul 5.
Different liver cell types are endowed with immunological properties, including cell-intrinsic innate immune functions that are important to initially control pathogen infections. However, a full landscape of expression and functionality of the innate immune signaling pathways in the major human liver cells is still missing. In order to comparatively characterize these pathways, we purified primary human hepatocytes, hepatic stellate cells, liver sinusoidal endothelial cells (LSEC), and Kupffer cells (KC) from human liver resections. We assessed mRNA and protein expression level of the major innate immune sensors, as well as checkpoint-inhibitor ligands in the purified cells, and found Toll-like receptors (TLR), RIG-I-like receptors, as well as several DNA cytosolic sensors to be expressed in the liver microenvironment. Amongst the cells tested, KC were shown to be most broadly active upon stimulation with PRR ligands emphasizing their predominant role in innate immune sensing the liver microenvironment. By KC immortalization, we generated a cell line that retained higher innate immune functionality as compared to THP1 cells, which are routinely used to study monocyte/macrophages functions. Our findings and the establishment of the KC line will help to understand immune mechanisms behind antiviral effects of TLR agonists or checkpoint inhibitors, which are in current preclinical or clinical development.
不同的肝细胞类型具有免疫特性,包括细胞内在的先天免疫功能,这些功能对于最初控制病原体感染非常重要。然而,主要人类肝细胞中先天免疫信号通路的表达和功能的全貌仍然缺失。为了比较这些通路的特征,我们从人肝切除术中纯化了原代人肝细胞、肝星状细胞、肝窦内皮细胞(LSEC)和库普弗细胞(KC)。我们评估了纯化细胞中主要先天免疫传感器以及检查点抑制剂配体的 mRNA 和蛋白表达水平,发现 Toll 样受体(TLR)、RIG-I 样受体以及几种 DNA 胞质传感器在肝微环境中表达。在所测试的细胞中,KC 在受到 PRR 配体刺激时表现出最广泛的活性,强调了它们在先天免疫感知肝微环境中的主要作用。通过 KC 永生化,我们生成了一个细胞系,与常规用于研究单核细胞/巨噬细胞功能的 THP1 细胞相比,该细胞系保留了更高的先天免疫功能。我们的发现和 KC 系的建立将有助于理解 TLR 激动剂或检查点抑制剂的抗病毒作用背后的免疫机制,这些药物目前处于临床前或临床开发阶段。