a Thayer School of Engineering, Dartmouth , Hanover , NH , USA.
b Department of Microbiology and Immunology , Dartmouth , Hanover , NH , USA.
MAbs. 2017 Nov/Dec;9(8):1253-1261. doi: 10.1080/19420862.2017.1381812. Epub 2017 Sep 21.
Gel microdroplet - fluorescence activated cell sorting (GMD-FACS) is an innovative high throughput screening platform for recombinant protein libraries, and we show here that GMD-FACS can overcome many of the limitations associated with conventional screening methods for antibody libraries. For example, phage and cell surface display benefit from exceptionally high throughput, but generally require high quality, soluble antigen target and necessitate the use of anchored antibody fragments. In contrast, the GMD-FACS assay can screen for soluble, secreted, full-length IgGs at rates of several thousand clones per second, and the technique enables direct screening against membrane protein targets in their native cellular context. In proof-of-concept experiments, rare anti-EGFR antibody clones were efficiently enriched from a 10,000-fold excess of anti-CCR5 clones in just three days. Looking forward, GMD-FACS has the potential to contribute to antibody discovery and engineering for difficult targets, such as ion channels and G protein-coupled receptors.
凝胶微滴 - 荧光激活细胞分选(GMD-FACS)是一种用于重组蛋白文库的创新高通量筛选平台,我们在这里展示了 GMD-FACS 可以克服与抗体文库传统筛选方法相关的许多限制。例如,噬菌体和细胞表面展示受益于极高的通量,但通常需要高质量的可溶性抗原靶标,并需要使用锚定抗体片段。相比之下,GMD-FACS 测定法可以以每秒数千个克隆的速度筛选可溶性、分泌的全长 IgGs,并且该技术能够直接在其天然细胞环境中针对膜蛋白靶标进行筛选。在概念验证实验中,仅用三天时间就从 10,000 倍过量的抗 CCR5 克隆中有效富集了罕见的抗 EGFR 抗体克隆。展望未来,GMD-FACS 有可能为离子通道和 G 蛋白偶联受体等困难靶标的抗体发现和工程做出贡献。