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In vitro dendritic cell-induced T cell responses to B cell chronic lymphocytic leukaemia enhanced by IL-15 and dendritic cell–B-CLL electrofusion hybrids

机译:IL-15和树突状细胞-B-CLL电融合杂种增强树突状细胞诱导的T细胞对B细胞慢性淋巴细胞性白血病的反应

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摘要

HLA class II-restricted proliferative and cytotoxic T cell (CTL) responses to B cell chronic lymphocytic leukaemia (B-CLL) can be generated using autologous dendritic cells (DCs) pulsed with tumour cell lysate. In this study a number of different approaches were used to optimize further the in vitro system. First, the effects of a variety of maturation agents were studied. The addition of TNF-α, polyriboinosinic polyribocytidylic acid (Poly(I:C)) and LPS to autologous DCs resulted in the emergence of only a small percentage of CD83+ DCs, IFN-α having no demonstrable effect. Only the addition of Poly(I:C) to DCs resulted in modestly increased specific cytotoxicity to B-CLL targets, IFN-α and LPS having no effect. Secondly, T cells were pretreated with IL-15, prior to culturing with lysate-pulsed autologous DCs. A significant increase in T cell activation (P = 0·038), IFN-γ secretion (P = 0·030) and specific cytotoxicity to B-CLL targets (P = 0·006) was demonstrated compared to untreated T cells. Thirdly, monocyte derived DCs electrofused with B-CLL B cells were compared with lysate-pulsed DCs. T cells stimulated by fused DCs generated higher levels of specific cytotoxicity to autologous B-CLL B cell targets than those stimulated by lysate pulsed DCs (P = 0·013). Blocking studies demonstrated inhibition of this cytotoxicity by both anti-CD4 (P = 0·062) and anti-CD8 monoclonal antibodies (P = 0·018), suggesting the generation of both HLA class I- and HLA class II-restricted CTL responses. In summary, in vitro B-CLL-specific T cell responses can be enhanced further by preincubating T cells with IL-15 and using autologous fused DC–B-CLL hybrids instead of autologous lysate-pulsed DCs. These preliminary data require confirmation with larger numbers of patients. Such an approach, however, may eventually provide effective immunotherapy for treatment of B-CLL.
机译:HLA II类限制的B细胞慢性淋巴细胞性白血病(B-CLL)增殖和细胞毒性T细胞(CTL)反应可通过用肿瘤细胞裂解物脉冲的自体树突状细胞(DC)产生。在这项研究中,许多不同的方法被用来进一步优化体外系统。首先,研究了各种成熟剂的作用。在自体DC中添加TNF-α,多核糖核酸聚核糖核酸(Poly(I:C))和LPS导致仅出现少量CD83 + DC,IFN-α没有明显的作用。仅向DC添加Poly(I:C)会导致对B-CLL靶点的特异性细胞毒性适度增加,而IFN-α和LPS则没有作用。其次,在用裂解物脉冲的自体DC培养之前,用IL-15预处理T细胞。与未处理的T细胞相比,T细胞活化(P = 0·038),IFN-γ分泌(P = 0·030)和对B-CLL靶标的特异性细胞毒性(P = 0·006)显着增加。第三,将与B-CLL B细胞电融合的单核细胞衍生的DC与裂解物脉冲的DC进行比较。融合的DC刺激的T细胞对自体B-CLL B细胞靶标产生的特异性细胞毒性比裂解物脉冲DC刺激的T细胞更高(P = 0.013)。阻断性研究表明,抗CD4(P = 0·062)和抗CD8单克隆抗体(P = 0·018)均能抑制这种细胞毒性,表明产生了HLA I类和HLA II类限制性CTL反应。总之,通过将T细胞与IL-15预孵育并使用自体融合DC-B-CLL杂种代替自体裂解物脉冲DC,可以进一步增强体外B-CLL特异性T细胞应答。这些初步数据需要更多患者的确认。但是,这种方法最终可能提供有效的免疫疗法来治疗B-CLL。

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