TRAPnSeq allows high-throughput profiling of antigen-specific antibody-secreting cells

TRAPnSeq技术能够对抗原特异性抗体分泌细胞进行高通量分析。

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作者:Seblewongel Asrat ,Joseph C Devlin ,Andrea Vecchione ,Brian Klotz ,Ian Setliff ,Devin Srivastava ,Andre Limnander ,Ashique Rafique ,Christina Adler ,Stephen Porter ,Andrew J Murphy ,Gurinder S Atwal ,Matthew A Sleeman ,Wei Keat Lim ,Jamie M Orengo

Abstract

Following activation by cognate antigen, B cells undergo fine-tuning of their antigen receptors and may ultimately differentiate into antibody-secreting cells (ASCs). While antigen-specific B cells that express surface receptors (B cell receptors [BCRs]) can be readily cloned and sequenced following flow sorting, antigen-specific ASCs that lack surface BCRs cannot be easily profiled. Here, we report an approach, TRAPnSeq (antigen specificity mapping through immunoglobulin [Ig] secretion TRAP and Sequencing), that allows capture of secreted antibodies on the surface of ASCs, which in turn enables high-throughput screening of single ASCs against large antigen panels. This approach incorporates flow cytometry, standard microfluidic platforms, and DNA-barcoding technologies to characterize antigen-specific ASCs through single-cell V(D)J, RNA, and antigen barcode sequencing. We show the utility of TRAPnSeq by profiling antigen-specific IgG and IgE ASCs from both mice and humans and highlight its capacity to accelerate therapeutic antibody discovery from ASCs.

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