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Phage display antibody libraries are a rich resource for discovery of potential therapeutic antibodies. Single-chain variable fragment (scFv) libraries are the most common format due to the efficient display of scFv by phage particles and the ease by which soluble scFv antibodies can be expressed for high-throughput screening. Typically, a cascade of screening and triaging activities are performed, beginning with the assessment of large numbers of E. coli-expressed scFv, and progressing through additional assays with individual reformatting of the most promising scFv to full-length IgG. However, use of high-throughput screening of scFv for the discovery of full-length IgG is not ideal because of the differences between these molecules. Furthermore, the reformatting step represents a bottle neck in the process because each antibody has to be handled individually to preserve the unique VH and VL pairing. These problems could be resolved if populations of scFv could be reformatted to full-length IgG before screening without disrupting the variable region pairing. Here, we describe a novel strategy that allows the reformatting of diverse populations of scFv from phage selections to full-length IgG in a batch format. The reformatting process maintains the diversity and variable region pairing with high fidelity, and the resulted IgG pool enables high-throughput expression of IgG in mammalian cells and cell-based functional screening. The improved process led to the discovery of potent candidates that are comparable or better than those obtained by traditional methods. This strategy should also be readily applicable to Fab-based phage libraries. Our approach, Screening in Product Format (SiPF), represents a substantial improvement in the field of antibody discovery using phage display.
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http://dx.doi.org/10.1080/19420862.2017.1337617 | DOI Listing |
Int J Biol Macromol
September 2025
School of Pharmacy, Shanghai Jiao Tong University, Shanghai, 200240, PR China. Electronic address:
Ulcerative colitis (UC), a chronic inflammatory bowel disease (IBD), is characterized by disruption of intestinal barrier function and complex inflammatory manifestations locally and systemically. Although anti-tumor necrosis factor-α (TNF-α) agents such as Infliximab (IFX) are effective in treating IBD, their intestinal tissue concentration has been regarded as determinant of therapeutic efficacy while was restrained by the large molecular weight. Considering the enhanced expression of human neonatal Fc receptor (hFcRn) in UC tissues, we attempted to deliver the therapeutic entity of IFX into UC tissues by developing a novel dual-acting IFX Fab-F8 (IFX-F8) fusion protein for UC treatment.
View Article and Find Full Text PDFJ Biosci Bioeng
September 2025
Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University, Okayama 700-8530, Japan.
Blood purification using immunoadsorbent columns is a therapeutic strategy for removing pathogenic autoantibodies in autoimmune diseases. Currently available columns have limitations: Trp/Phe columns offer cost-effectiveness and sterilizability, but lack antigen specificity and have limited capacity to remove diverse pathogenic autoantibodies; whereas Protein A/peptide/anti-human IgG columns target all antibodies, regardless of pathogenicity, limiting specificity, and often require sterile production due to low stability under sterilization conditions, except for peptide ligands. Full-length autoantigen-immobilized immunoadsorbent columns have great potential to specifically adsorb targeted autoantibodies, because autoantibodies recognize diverse epitopes that vary among individuals.
View Article and Find Full Text PDFbioRxiv
August 2025
Fischell Department of Bioengineering, University of Maryland, College Park, MD 20742, USA.
Inflammatory bowel disease (IBD) is a chronic condition characterized by recurrent gastrointestinal inflammation that requires long-term therapeutic intervention. While anti-TNF-α monoclonal antibodies (mAbs) are effective in maintaining remission in IBD, systemic delivery is associated with immunosuppression, poor targeting efficiency, and high cost. To address these limitations, we developed a synthetic mucin-based hydrogel for localized delivery of TNF-α-targeting mAbs.
View Article and Find Full Text PDFViruses
August 2025
N. F. Gamaleya Federal Research Center for Epidemiology & Microbiology, Ministry of Health, Moscow 123098, Russia.
Despite the widespread accessibility of vaccines and antivirals, seasonal influenza virus epidemics continue to pose a threat to public health. In this study, we constructed a recombinant replication-deficient simian adenovirus type 25 vector carrying the full-length hemagglutinin (HA) of the H1N1 influenza virus, named rSAd25-H1. Both systemic and mucosal humoral immune responses, as well as the protective efficacy, were assessed in mice immunized via the intramuscular (IM) or intranasal (IN) route.
View Article and Find Full Text PDFVet Microbiol
October 2025
College of Animal Medicine, Jilin Provincial Engineering Research Center of Animal Probiotics, Jilin Provincial Key Laboratory of Animal Microecology and Healthy Breeding, Engineering Research Center of Microecological Vaccines (Drugs) for Major Animal Diseases, Ministry of Education, Jilin Agricult
Newcastle disease (ND), caused by the Newcastle disease virus (NDV), poses a severe threat to global poultry farming, leading to significant losses annually. The limitations of current ND vaccines in terms of efficacy and duration of protection have encouraged the exploration of novel vaccine designs. This study aimed to adopt a delayed-lysis Salmonella strain χ11218 as vaccine delivery vector.
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