Affomix Corporation, 688 E. Main St., Branford, CT, United States.
J Immunol Methods. 2011 Mar 31;367(1-2):17-26. doi: 10.1016/j.jim.2010.09.034. Epub 2010 Oct 7.
Antibody phage display technology is a well established method for selecting specific antibodies against desired targets. Although phage display is the most widely used method of generating synthetic antibodies, it is laborious to perform multiple selections with different antigens simultaneously using conventional manual methods. We have developed a novel approach to the identification and isolation of cells secreting phage encoding desirable antibodies that utilizes compartmentalization and Fluorescence Activated Cell Sorting (FACS). This method, termed Phage Emulsion, Secretion, and Capture (ESCape), allows us to individually query each phage against the antigen. Here, we demonstrate the ability of Phage ESCape to identify novel scFvs against a phosphopeptide epitope of the Her2 kinase from a phage display library containing approximately 10(8) synthetically diversified antibodies. Clones were analyzed by monoclonal phage ELISA against the Her2 phosphopeptide, and positive binders were identified as those showing a signal greater than 3-fold higher than the background signal against an irrelevant antigen. We isolated antibodies recognizing the phosphopeptide in a single round of selection by Phage ESCape, but the strength and specificity of the hits was substantially improved when the library was pre-enriched by a single round of biopanning. By minimizing the selection rounds required for phage display and using a FACS machine as a 'colony picker' equivalent, Phage ESCape has the potential to dramatically increase the throughput of in vitro screening methods.
噬菌体展示技术是一种成熟的方法,用于选择针对特定目标的特异性抗体。尽管噬菌体展示是生成合成抗体最广泛使用的方法,但使用传统的手动方法同时对多种不同的抗原进行多次选择是很费力的。我们开发了一种新的方法来鉴定和分离分泌所需抗体的噬菌体编码的细胞,该方法利用了分隔和荧光激活细胞分选(FACS)。这种方法称为噬菌体乳液、分泌和捕获(ESCape),允许我们逐个查询每个噬菌体针对抗原。在这里,我们展示了 Phage ESCape 识别来自包含约 10^8 个合成多样化抗体的噬菌体展示文库中的 Her2 激酶磷酸肽表位的新型 scFv 的能力。通过单克隆噬菌体 ELISA 分析针对 Her2 磷酸肽的克隆,并将信号大于背景信号 3 倍以上的阳性结合物鉴定为针对无关抗原的信号。我们通过 Phage ESCape 在单轮选择中分离出识别磷酸肽的抗体,但当通过一轮生物淘选对文库进行预富集时,命中的强度和特异性会得到显著提高。通过最小化噬菌体展示所需的选择轮数,并使用 FACS 机作为“集落挑选器”等效物,Phage ESCape 有可能大大提高体外筛选方法的通量。