Calderhead David M, DeBenedette Mark A, Ketteringham Helen, Gamble Alicia H, Horvatinovich Joe M, Tcherepanova Irina Y, Nicolette Charles A, Healey Don G
Research Department, Argos Therapeutics Inc, Durham, NC 27704, USA.
J Immunother. 2008 Oct;31(8):731-41. doi: 10.1097/CJI.0b013e318183db02.
Dendritic cells (DC) for the immunotherapy of cancer and infectious disease require the appropriate maturation and activation signals to effectively present antigen to drive a proinflammatory response. Here we present a comparison of 4 different maturation protocols for antigen-encoded mRNA electroporated DC. Two protocols rely on cytokine-induced maturation given either preelectroporation or postelectroporation. In addition to the cytokine treatment, 2 further maturation protocols use coelectroporation of CD40L mRNA, with antigen-encoding RNA, to deliver CD40 signals. There were no significant differences in expression of costimulatory molecules such as CD80, CD83, and CD86 or the levels of expression of major histocompatibility complexes. However, results indicate that delivery of an inflammatory signal that includes interferon-gamma before the CD40 signal results in high levels of expression of interleukin-12 that was not seen in the absence of CD40L mRNA. All 4 preparations could induce expansion of primary MART-1-specific CD8+ T cells from healthy donors in vitro, but only the 2 processes receiving CD40L could induce interferon-gamma expression by those responder cells. Only DC electroporated with CD40L RNA after delivery of the inflammatory signal (PME-CD40L DC), could drive the long-term expansion of MART-1-reactive cells that displayed a CD28+/CD45RA- effector/memory phenotype with strong cytolytic activity.
用于癌症和传染病免疫治疗的树突状细胞(DC)需要适当的成熟和激活信号,以有效地呈递抗原,从而引发促炎反应。在此,我们对4种不同的成熟方案进行了比较,这些方案用于经抗原编码mRNA电穿孔的DC。两种方案依赖于细胞因子诱导的成熟,分别在电穿孔前或电穿孔后进行。除了细胞因子处理外,另外两种成熟方案使用CD40L mRNA与抗原编码RNA共电穿孔,以传递CD40信号。共刺激分子如CD80、CD83和CD86的表达或主要组织相容性复合体的表达水平没有显著差异。然而,结果表明,在CD40信号之前传递包含干扰素-γ的炎症信号会导致白细胞介素-12的高水平表达,而在没有CD40L mRNA的情况下则不会出现这种情况。所有4种制剂均可在体外诱导健康供体的原发性MART-1特异性CD8⁺T细胞扩增,但只有接受CD40L的2种方法可诱导这些反应细胞表达干扰素-γ。只有在传递炎症信号后用CD40L RNA电穿孔的DC(PME-CD40L DC)能够驱动MART-1反应性细胞的长期扩增,这些细胞表现出具有强大细胞溶解活性的CD28⁺/CD45RA⁻效应/记忆表型。