Department of Pharmaceutical Chemistry, University of California San Francisco, San Francisco, CA, 94158, USA.
Department of Otolaryngology - Head and Neck Surgery, University of California San Francisco, San Francisco, CA, 94158, USA.
Commun Biol. 2023 Oct 12;6(1):1036. doi: 10.1038/s42003-023-05390-0.
In vitro biopanning platforms using synthetic phage display antibody libraries have enabled the identification of antibodies against antigens that were once thought to be beyond the scope of immunization. Applying these methods against challenging targets remains a critical challenge. Here, we present a new biopanning pipeline, RAPID (Rare Antibody Phage Isolation and Discrimination), for the identification of rare high-affinity antibodies against challenging targets. RAPID biopanning uses fluorescent labeled phage displayed fragment antigen-binding (Fab) antibody libraries for the isolation of high-affinity binders with fluorescent activated sorting. Subsequently, discriminatory hit screening is performed with a biolayer interferometry (BLI) method, BIAS (Biolayer Interferometry Antibody Screen), where candidate binders are ranked and prioritized according to their estimated kinetic off rates. Previously reported antibodies were used to develop the methodology, and the RAPID biopanning pipeline was applied to three challenging targets (CHIP, Gαq, and CS3D), enabling the identification of high-affinity antibodies.
体外生物淘选平台利用合成噬菌体展示抗体文库,使人们能够鉴定针对曾经被认为超出免疫范围的抗原的抗体。然而,针对具有挑战性的目标应用这些方法仍然是一个关键的挑战。在这里,我们提出了一种新的生物淘选管道,RAPID(稀有抗体噬菌体分离和鉴别),用于鉴定针对具有挑战性的目标的稀有高亲和力抗体。RAPID 生物淘选使用荧光标记的噬菌体展示片段抗原结合(Fab)抗体文库,通过荧光激活分选来分离高亲和力结合物。随后,通过生物层干涉(BLI)方法 BIAS(生物层干涉抗体筛选)进行鉴别性命中筛选,根据候选结合物的估计动力学离解速率对其进行排序和优先级划分。先前报道的抗体被用于开发该方法,并且 RAPID 生物淘选管道被应用于三个具有挑战性的目标(CHIP、Gαq 和 CS3D),从而能够鉴定出高亲和力的抗体。