INRS-Institut Armand-Frappier, 531 boul. des Prairies, Laval, Québec, Canada.
Cell Immunol. 2011;271(1):184-91. doi: 10.1016/j.cellimm.2011.06.020. Epub 2011 Jul 12.
Fms-like tyrosine kinase-3 ligand (Flt-3L) stimulates the differentiation of bone marrow cells into dendritic cells (DCs) and was used as an adjuvant therapy in the experimental model of burn wound sepsis. In this study, we describe the phenotypical characteristics of an Flt-3L-dependent DC culture (FLDC) system following LPS stimulation, which induces an inflammatory response, and after a second LPS stimulation, which induces tolerance. Priming of FLDCs with LPS via TLR4 has been shown to induce the activation of all three mitogen-activated protein kinase (MAPK) families and enhance NF-κB complex translocation into the nucleus. Stimulated FLDCs express all maturation markers and exhibit an increase in IL-12p40 production and to a lesser extent, IL-10 production. In contrast, LPS stimulation of tolerized FLDCs was not associated with TLR4 up-regulation and led to MAPK inhibition. The decrease in p38 and JNK activation was correlated with an impairment of IL-12p40 production. Endotoxin tolerance in FLDCs was associated with enhanced ERK1/2 activation, an increase in MKP-1 phosphatase expression, a decrease in NF-κB translocation to the nucleus and an increase in IL-10 production. Overall, DCs generated from bone marrow with Flt-3 ligand have similar characteristics to DC subtypes found in the steady state in vivo, which can acquire endotoxin tolerance in some circumstances.
Fms 样酪氨酸激酶-3 配体 (Flt-3L) 可刺激骨髓细胞分化为树突状细胞 (DC),并已被用作烧伤创面脓毒症实验模型的辅助治疗。在这项研究中,我们描述了 LPS 刺激后 Flt-3L 依赖性 DC 培养 (FLDC) 系统的表型特征,该系统诱导炎症反应,以及第二次 LPS 刺激后诱导耐受。通过 TLR4 对 FLDCs 进行 LPS 预处理已被证明可诱导所有三种丝裂原活化蛋白激酶 (MAPK) 家族的激活,并增强 NF-κB 复合物向核内易位。受刺激的 FLDCs 表达所有成熟标志物,并表现出 IL-12p40 产生增加,而 IL-10 产生则较少。相比之下,耐受的 FLDCs 的 LPS 刺激与 TLR4 上调无关,并导致 MAPK 抑制。p38 和 JNK 激活的减少与 IL-12p40 产生受损相关。FLDCs 中的内毒素耐受与 ERK1/2 激活增强、MKP-1 磷酸酶表达增加、NF-κB 向核内易位减少和 IL-10 产生增加相关。总体而言,用 Flt-3 配体从骨髓中生成的 DC 具有与体内稳态中发现的 DC 亚型相似的特征,在某些情况下可获得内毒素耐受。