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Model-Guided Engineering of NS1-Truncated Influenza OP7 Particles with Enhanced Interferon-Mediated Antiviral Activity

J. Piasecka, D. Ruediger, U. Reichl, S. Y. Kupke

PreprintUso en el mundo real

En palabras de los autores

Defective interfering particles (DIPs) represent promising antivirals against influenza A virus (IAV), yet strategies to further enhance their antiviral activity remain largely unexplored. Here, we engineered a next-generation OP7 DIP by truncating the viral interferon (IFN) antagonist non-structural protein 1 (NS1) to enhance IFN-mediated antiviral activity. A previously validated mathematical multiscale model predicted that loss of NS1 function would enhance antiviral activity, providing a mechanistic rationale for this design. We engineered OP7-trNS1 DIP, established a cell culture-based production process yielding infectious virus-free material, and evaluated its antiviral activity in human lung epithelial cells in vitro. OP7-trNS1 inhibited IAV replication by approx. two orders of magnitude more effectively than the parental OP7 DIP while inducing a stronger IFN response, consistent with the model predictions. Together, these findings demonstrate that reducing viral IFN antagonism is a viable strategy for rationally enhancing DIP antiviral activity and establish OP7-trNS1 as a promising candidate for further preclinical development.

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Apareció: miércoles, 23 de septiembre. bioRxiv. Preprint, todavía sin revisión por pares.

DOI: 10.64898/2026.09.18.752587