UCB Pharma; Berkshire, UK.
MAbs. 2014 Jan-Feb;6(1):143-59. doi: 10.4161/mabs.27044.
Single B cell technologies, which avoid traditional hybridoma fusion and combinatorial display, provide a means to interrogate the naturally-selected antibody repertoire of immunized animals. Many methods enable the sampling of memory B cell subsets, but few allow for the direct interrogation of the plasma cell repertoire, i.e., the subset of B cells responsible for producing immunoglobulin in serum. Here, we describe the use of a robust and simple fluorescence-based technique, called the fluorescent foci method, for the identification and isolation of antigen-specific IgG-secreting cells, such as plasma cells, from heterogeneous bone marrow preparations. Following micromanipulation of single cells, cognate pairs of heavy and light chain variable region genes were recovered by reverse transcription (RT)-polymerase chain reaction (PCR). During the PCR, variable regions were combined with a promoter fragment and a relevant constant region fragment to produce two separate transcriptionally-active PCR (TAP) fragments that were directly co-transfected into a HEK-293F cell line for recombinant antibody expression. The technique was successfully applied to the generation of a diverse panel of high-affinity, functional recombinant antibodies to human tumor necrosis factor (TNF) receptor 2 and TNF derived from the bone marrow of immunized rabbits and rats, respectively. Progression from a bone marrow sample to a panel of functional recombinant antibodies was possible within a 2-week timeframe.
单细胞技术,避免了传统的杂交瘤融合和组合展示,为研究免疫动物自然选择的抗体库提供了一种手段。许多方法可以对记忆 B 细胞亚群进行采样,但很少有方法可以直接检测浆细胞库,即负责在血清中产生免疫球蛋白的 B 细胞亚群。在这里,我们描述了一种强大而简单的基于荧光的技术,称为荧光灶方法,用于从异质骨髓制剂中鉴定和分离抗原特异性 IgG 分泌细胞,如浆细胞。在单细胞微操作之后,通过逆转录 (RT)-聚合酶链反应 (PCR) 回收同源重链和轻链可变区基因对。在 PCR 过程中,可变区与启动子片段和相关的恒定区片段结合,产生两个独立的转录活性 PCR (TAP) 片段,直接共转染到 HEK-293F 细胞系中用于重组抗体表达。该技术成功地应用于从免疫兔子和大鼠的骨髓中分别生成针对人肿瘤坏死因子 (TNF) 受体 2 和 TNF 的多样化高亲和力、功能性重组抗体。在两周的时间内,从骨髓样本到一组功能性重组抗体的进展是可能的。