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合成结构域抗体文库的高效构建与有效筛选

Efficient Construction and Effective Screening of Synthetic Domain Antibody Libraries.

作者信息

Solemani Zadeh Arghavan, Grässer Alissa, Dinter Heiko, Hermes Maximilian, Schindowski Katharina

机构信息

Institute for Applied Biotechnology, Biberach University of Applied Science, Hubertus-Liebrecht-Strasse 35, 88400 Biberach, Germany.

Faculty of Medicine, Graduate School "Molecular Medicine", University of Ulm, Albert-Einstein-Allee 11, 89081 Ulm, Germany.

出版信息

Methods Protoc. 2019 Feb 14;2(1):17. doi: 10.3390/mps2010017.

Abstract

Phage display is a powerful technique for drug discovery in biomedical research in particular for antibody libraries. But, several technical challenges are associated with the selection process. For instance, during the panning step, the successful elution of the phages bound to the antigen is critical in order to avoid losing the most promising binders. Here, we present an efficient protocol to establish, screen and select synthetic libraries of domain antibodies using phage display. We do not only present suitable solutions to the above-mentioned challenges to improve elution by 50-fold, but we also present a step by step in-depth protocol with miniaturized volumes and optimized procedures to save material, costs and time for a successful phage display with domain antibodies. Hence, this protocol improves the selection process for an efficient handling process. The here presented library is based on the variable domain (vNAR) of the naturally occurring novel antibody receptor (IgNAR) from cartilage fishes. Diversity was introduced in the Complementarity-Determining Region 3 (CDR3) of the antigen-binding site with different composition and length.

摘要

噬菌体展示是生物医学研究中药物发现的一项强大技术,尤其适用于抗体文库。但是,选择过程存在一些技术挑战。例如,在淘选步骤中,成功洗脱与抗原结合的噬菌体对于避免丢失最有前景的结合物至关重要。在此,我们提出了一种使用噬菌体展示建立、筛选和选择结构域抗体合成文库的有效方案。我们不仅针对上述挑战提出了合适的解决方案,将洗脱效率提高了50倍,还提供了一个逐步深入的方案,采用小型化体积和优化程序,以节省材料、成本和时间,从而成功进行结构域抗体的噬菌体展示。因此,该方案改进了高效处理过程的选择过程。这里展示的文库基于软骨鱼天然存在的新型抗体受体(IgNAR)的可变结构域(vNAR)。通过不同的组成和长度,在抗原结合位点的互补决定区3(CDR3)中引入了多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e9a/6481084/ce835942a728/mps-02-00017-g002.jpg

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