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Optimisation ofex vivo memory B cell expansion/differentiation for interrogation of rare peripheral memory B cell subset responses

机译:优化体外记忆B细胞扩增/分化用于询问罕见的外周记忆B细胞亚群应答

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>Background: Human memory B cells play a vital role in the long-term protection of the host from pathogenic re-challenge. In recent years the importance of a number of different memory B cell subsets that can be formed in response to vaccination or infection has started to become clear. To study memory B cell responses, cells can be cultured ex vivo, allowing for an increase in cell number and activation of these quiescent cells, providing sufficient quantities of each memory subset to enable full investigation of functionality. However, despite numerous papers being published demonstrating bulk memory B cell culture, we could find no literature on optimised conditions for the study of memory B cell subsets, such as IgM + memory B cells. >Methods: Following a literature review, we carried out a large screen of memory B cell expansion conditions to identify the combination that induced the highest levels of memory B cell expansion. We subsequently used a novel Design of Experiments approach to finely tune the optimal memory B cell expansion and differentiation conditions for human memory B cell subsets. Finally, we characterised the resultant memory B cell subpopulations by IgH sequencing and flow cytometry. >Results: The application of specific optimised conditions induce multiple rounds of memory B cell proliferation equally across Ig isotypes, differentiation of memory B cells to antibody secreting cells, and importantly do not alter the Ig genotype of the stimulated cells.  >Conclusions: Overall, our data identify a memory B cell culture system that offers a robust platform for investigating the functionality of rare memory B cell subsets to infection and/or vaccination.
机译:>背景:人类记忆B细胞在长期保护宿主免受致病性再次攻击方面起着至关重要的作用。近年来,可以响应疫苗接种或感染而形成的许多不同的记忆B细胞亚群的重要性已开始变得清晰。为了研究记忆B细胞的反应,可以离体培养细胞,从而增加细胞数量并激活这些静态细胞,从而提供足够数量的每个记忆子集以实现功能的全面研究。然而,尽管发表了许多关于大容量记忆B细胞培养的论文,但我们找不到关于记忆B细胞亚群(例如IgM + 记忆B细胞)的优化条件研究的文献。 >方法:文献综述后,我们对记忆B细胞扩增条件进行了大屏幕筛选,以鉴定引起最高水平记忆B细胞扩增的组合。随后,我们使用了新颖的实验设计方法来微调人类记忆B细胞亚群的最佳记忆B细胞扩增和分化条件。最后,我们通过IgH测序和流式细胞仪表征了产生的记忆B细胞亚群。 >结果:应用特定的优化条件可诱导多轮记忆B细胞在Ig同种型之间均等增殖,将记忆B细胞分化为分泌抗体的细胞,并且重要的是不会改变受刺激细胞的Ig基因型。 >结论:总体而言,我们的数据确定了记忆B细胞培养系统,该系统为研究稀有记忆B细胞亚群感染和/或接种疫苗的功能提供了一个强大的平台。

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