Pickl W F, Majdic O, Kohl P, Stöckl J, Riedl E, Scheinecker C, Bello-Fernandez C, Knapp W
Institute of Immunology, University of Vienna, Austria.
J Immunol. 1996 Nov 1;157(9):3850-9.
Dendritic cells (DC) are the most potent APCs within the immune system. We show here that highly purified CD14(bright) peripheral blood monocytes supplemented with granulocyte-monocyte (GM)-CSF plus IL-4 develop with high efficacy (>95% of input cells) into DC. They neo-expressed CD1a, CD1b, CD1c, CD80, and CD5; they massively up-regulated CD40 (109-fold) and HLA-DQ and DP (125- and 87-fold); and significantly (>5-fold) up-regulated HLA-DR, CD4, CD11b, CD11c, CD43, CD45, CD45R0, CD54, CD58, and CD59. CD14, CD15s, CD64, and CDw65 molecules were down-regulated to background levels, and no major changes were observed for HLA class I, CD11a, CD32, CD33, CD48, CD50, CD86, CDw92, CD93, or CD97. Monocytes cultured in parallel with GM-CSF plus TNF-alpha were more heterogeneous in expression densities but otherwise similar in their surface molecule repertoire. They clearly differed, however, in their accessory cell capacity. Only GM-CSF plus IL-4-cultured cells were found to be potent stimulators in allogeneic and autologous MLR and they presented tetanus toxoid 100- to 1000-fold more efficiently than other cell populations tested. Furthermore, only cytokine-treated monocytes formed clusters with resting T cells. At variance from all these similarities between in vitro-generated monocyte-derived DC and in vivo-developing DC, the DC populations generated by us contained significant amounts of myeloperoxidase and also expressed lysozyme. At least in this respect they, thus, differ from "classical" DC types.
树突状细胞(DC)是免疫系统中最有效的抗原呈递细胞。我们在此表明,补充粒细胞-巨噬细胞(GM)-CSF加IL-4的高度纯化的CD14(明亮)外周血单核细胞能高效(>95%的输入细胞)发育为DC。它们新表达CD1a、CD1b、CD1c、CD80和CD5;大量上调CD40(109倍)以及HLA-DQ和DP(分别为125倍和87倍);并显著(>5倍)上调HLA-DR、CD4、CD11b、CD11c、CD43、CD45、CD45R0、CD54、CD58和CD59。CD14、CD15s、CD64和CDw65分子下调至背景水平,而HLA I类、CD11a、CD32、CD33、CD48、CD50、CD86、CDw92、CD93或CD97未观察到重大变化。与GM-CSF加TNF-α平行培养的单核细胞在表达密度上更具异质性,但在表面分子库方面相似。然而,它们在辅助细胞能力方面明显不同。仅发现GM-CSF加IL-4培养的细胞在同种异体和自体混合淋巴细胞反应(MLR)中是有效的刺激剂,并且它们呈递破伤风类毒素的效率比其他测试细胞群体高100至1000倍。此外,只有细胞因子处理的单核细胞与静息T细胞形成簇。与体外产生的单核细胞来源的DC和体内发育的DC之间的所有这些相似性不同,我们产生的DC群体含有大量髓过氧化物酶并且还表达溶菌酶。因此,至少在这方面,它们不同于“经典”DC类型。