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Updated: Apr 18, 2026

Rescue of Recombinant Newcastle Disease Virus from cDNA
Published on: October 11, 2013
Discovery and structural characterization of newcastle disease virus mimetic peptides identified through phage
D Caixeta Moreira1, E Resende Vaz1, H Oliveira Almeida Souza1
1Laboratory of Nanobiotechnology Prof. Dr. Luiz Ricardo Goulart Filho, Institute of Biotechnology, Universidade Federal de Uberlândia, Uberlândia, Minas Gerais, CEP 38405-319, Brazil.
Abstract:
Recent advances in precision medicine and virotherapy have expanded the search for novel biomolecules with therapeutic potential. In this study, we employed a phage display-based platform to identify and characterize mimetic peptides of the Newcastle Disease Virus (NDV), a promising agent in oncolytic virotherapy and veterinary vaccinology. Following the immunization of gallus domesticus (White Leghorn) and the high-performance liquid chromatography (HPLC) purification of specific IgY antibodies, a Ph.D.-7™ phage library was screened against anti-NDV targets. We identified three high-affinity mimotopes (NDV-1, NDV-2, and NDV-3) that were further characterized through an integrated in silico workflow involving AlphaFold2 and PEP-FOLD3. Structural analysis revealed that NDV-3 exhibits a stable helical conformation, which correlates with its superior binding affinity observed in Phage-ELISA assays. Furthermore, B-cell epitope predictions (BepPred-3.0) highlighted the immunogenic potential of NDV-1. Our findings demonstrate a robust proof-of-concept for the identification of NDV-mimetic leads, providing a structural basis for the future development of targeted oncolytic strategies and next-generation avian vaccines. Further functional assays are required to validate the translational efficacy of these candidates in clinical and veterinary settings.

