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CD40 Ligand-activated, antigen-specific B cells are comparable to mature dendritic cells in presenting protein antigens and major histocompatibility complex class I- and class II-binding peptides

机译:CD40配体激活的抗原特异性B细胞在呈递蛋白质抗原和主要的组织相容性复杂的I类和II类结合肽方面可与成熟的树突状细胞媲美

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摘要

Dendritic cells (DC) are increasingly exploited for cell-based immunotherapy. However, limitations in ex vivo DC growth and DC functional heterogeneity have motivated development of complementary antigen-presenting cell sources. Here, the ability of CD40 ligand (CD40L)-activated B cells to fulfil that role was investigated. We demonstrate for the first time that non-specific or antigen-specific murine B cells can be grown for extended periods of time by stimulation with CD40L. These cells rapidly up-regulate and maintain high levels of co-stimulatory molecules. In a head-to-head comparison with DC, CD40L-expanded B cells were comparable to DC in the presentation of peptides to CD4+ and CD8+ T cells. While DC were superior to antigen non-specific CD40L-activated B cells with regard to whole protein (NP-BSA) processing and presentation, CD40L-expanded B cells from NP-BSA-immunized mice were comparable to DC when presenting BSA or NP-BSA to primed primary T cells or when presenting NP linked to an unrelated carrier, CGG, to naïve T cells. Thus, the combination of CD40L activation, which supports B-cell growth and augments intracellular protein processing, and antigen uptake via the B-cell receptor, allows for efficient uptake, processing, and presentation of whole protein antigens in a fashion comparable to that observed with mature DC. Like DC, CD40L-activated B cells efficiently home to secondary lymphoid organs in vivo. This system represents a unique tool for studying primary antigen-specific B cells and the results suggest that the outgrowth of large numbers of highly activated B cells represents a viable and practical complement to DC for cell-based immunotherapy.
机译:树突状细胞(DC)越来越多地用于基于细胞的免疫治疗。然而,离体DC生长和DC功能异质性的局限性已促使互补抗原呈递细胞来源的发展。在这里,研究了CD40配体(CD40L)激活的B细胞履行该作用的能力。我们首次证明了非特异性或抗原特异性鼠类B细胞可以通过CD40L刺激而延长生长时间。这些细胞迅速上调并维持高水平的共刺激分子。在与DC的面对面比较中,在向CD4 +和CD8 + T细胞呈递肽的过程中,CD40L扩增的B细胞与DC可比。尽管DC在全蛋白(NP-BSA)加工和呈递方面优于抗原非特异性CD40L激活的B细胞,但在呈示BSA或NP-NP时,来自NP-BSA免疫小鼠的CD40L扩增的B细胞与DC相当。 BSA可以引发初代T细胞,或者当NP出现与不相关的载体CGG相连时,就可以与幼稚T细胞结合。因此,支持B细胞生长并增强细胞内蛋白质加工的CD40L激活与通过B细胞受体吸收抗原的结合,可以以与观察到的方式相当的方式有效吸收,加工和呈递全蛋白抗原。具有成熟的DC。像DC一样,CD40L激活的B细胞在体内有效地位于次级淋巴器官。该系统代表了用于研究原代抗原特异性B细胞的独特工具,结果表明大量高度活化的B细胞的生长代表了基于细胞的免疫疗法对DC的可行和实用的补充。

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