Jones K L, Brown L E, Eriksson E M Y, Ffrench R A, Latour P A, Loveland B E, Wall D M, Roberts S K, Jackson D C, Gowans E J
Department of Immunology, Monash University, Macfarlane Burnet Institute for Medical Research and Public Health, Melbourne, Australia.
J Viral Hepat. 2008 Oct;15(10):761-72. doi: 10.1111/j.1365-2893.2008.01003.x. Epub 2008 Jul 10.
Serum-free culture conditions to generate immature human monocyte-derived DC (Mo-DC) were optimized, and the parameters that influence their maturation after exposure to lipopeptides containing CD4(+) and CD8(+) T-cell epitopes were examined. The lipopeptides contained a single CD4(+) helper T-cell epitopes, one of a number of human leucocyte antigen (HLA)-A2-restricted cytotoxic T-cell epitope and the lipid Pam2Cys. To ensure complete maturation of the Mo-DC, we examined (i) the optimal lipopeptide concentration, (ii) the optimal Mo-DC density and (iii) the appropriate period of exposure of the Mo-DC to the lipopeptides. The results showed that a high dose of lipopeptide (30 microm) was no more efficient at upregulating maturation markers on Mo-DC than a low dose (6 microm). There was an inverse relationship between Mo-DC concentration and the mean fluorescence intensity of maturation markers. In addition, at the higher cell concentrations, the chemotactic capacity of the Mo-DC towards a cognate ligand, CCL21, was reduced. Thus, high cell concentrations during lipopeptide exposure were detrimental to Mo-DC maturation and function. The duration of exposure of Mo-DC to the lipopeptides had little effect on phenotype, although Mo-DC exposed to lipopeptides for 48 rather than 4 h showed an increased ability to stimulate autologous peripheral blood mononuclear cells to release interferon-gamma in the absence of exogenous maturation factors. These findings reveal conditions for generating mature antigen-loaded DC suitable for targeted immunotherapy.
优化了用于生成未成熟人单核细胞衍生树突状细胞(Mo-DC)的无血清培养条件,并研究了暴露于含有CD4(+)和CD8(+)T细胞表位的脂肽后影响其成熟的参数。这些脂肽包含单个CD4(+)辅助性T细胞表位、多种人类白细胞抗原(HLA)-A2限制性细胞毒性T细胞表位之一以及脂质Pam2Cys。为确保Mo-DC完全成熟,我们研究了(i)最佳脂肽浓度、(ii)最佳Mo-DC密度以及(iii)Mo-DC与脂肽的适当暴露时间。结果表明,高剂量脂肽(30微摩尔)在上调Mo-DC上的成熟标志物方面并不比低剂量(6微摩尔)更有效。Mo-DC浓度与成熟标志物的平均荧光强度呈负相关。此外,在较高细胞浓度下,Mo-DC对同源配体CCL21的趋化能力降低。因此,脂肽暴露期间的高细胞浓度不利于Mo-DC的成熟和功能。Mo-DC与脂肽的暴露时间对表型影响不大,尽管在没有外源性成熟因子的情况下,暴露于脂肽48小时而非4小时的Mo-DC刺激自体外周血单核细胞释放干扰素-γ的能力有所增强。这些发现揭示了生成适合靶向免疫治疗的成熟抗原负载树突状细胞的条件。