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Differential Screening of Phage-Ab Libraries by Oligonucleotide Microarray Technology

机译:寡核苷酸微阵列技术差异筛选噬菌体抗体库

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摘要

A novel and efficient tagArray technology was developed that allows rapid identification of antibodies which bind to receptors with a specific expression profile, in the absence of biological information. This method is based on the cloning of a specific, short nucleotide sequence (tag) in the phagemid coding for each phage-displayed antibody fragment (phage-Ab) present in a library. In order to set up and validate the method we identified about 10,000 different phage-Abs binding to receptors expressed in their native form on the cell surface (10 k Membranome collection) and tagged each individual phage-Ab. The frequency of each phage-Ab in a given population can at this point be inferred by measuring the frequency of its associated tag sequence through standard DNA hybridization methods. Using tiny amounts of biological samples we identified phage-Abs binding to receptors preferentially expressed on primary tumor cells rather than on cells obtained from matched normal tissues. These antibodies inhibited cell proliferation in vitro and tumor development in vivo, thus representing therapeutic lead candidates.
机译:开发了一种新颖而有效的tagArray技术,该技术可在没有生物学信息的情况下快速鉴定与具有特定表达谱的受体结合的抗体。该方法基于克隆噬菌粒中特定的短核苷酸序列(标签),该序列编码文库中存在的每个噬菌体展示抗体片段(噬菌体-Ab)。为了建立和验证该方法,我们鉴定了约10,000种不同的噬菌体Ab与以其天然形式在细胞表面表达的受体结合(10 k膜组),并标记了各个噬菌体Ab。可以通过标准DNA杂交方法测量其相关标签序列的频率来推断给定群体中每种噬菌体Ab的频率。使用少量的生物学样品,我们鉴定了噬菌体-Abs与优先在原发性肿瘤细胞而不是在从匹配的正常组织获得的细胞上表达的受体结合。这些抗体在体外抑制细胞增殖,在体内抑制肿瘤发展,因此代表了治疗性先导候选药物。

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