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  4. Temporal Dynamics of Innate Immune Activation and Viral Interference During Sequential Co-Infection with Influenza A Virus and SARS-CoV-2: Molecular Mechanisms, Clinical Evidence, and Therapeutic Implications
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Temporal Dynamics of Innate Immune Activation and Viral Interference During Sequential Co-Infection with Influenza A Virus and SARS-CoV-2: Molecular Mechanisms, Clinical Evidence, and Therapeutic Implications

Journal
International Journal of Molecular Sciences
ISSN
16616596
Date Issued
2026-07-03
Author(s)
Angamarca Iguago, Jaime  
CENTRO DE INVESTIGACIÓN DE EVIDENCIA, IMPLEMENTACIÓN Y TOMA DE DECISIONES EN SALUD  
Parise Vasco, Juan Marcos  
CENTRO DE INVESTIGACIÓN DE EVIDENCIA, IMPLEMENTACIÓN Y TOMA DE DECISIONES EN SALUD  
Reytor González, Claudia  
CENTRO DE INVESTIGACIÓN DE EVIDENCIA, IMPLEMENTACIÓN Y TOMA DE DECISIONES EN SALUD  
Cagua Ordoñez, Jaen  
CENTRO DE INVESTIGACIÓN DE EVIDENCIA, IMPLEMENTACIÓN Y TOMA DE DECISIONES EN SALUD  
Simancas Racines, Daniel  
CENTRO DE INVESTIGACIÓN DE EVIDENCIA, IMPLEMENTACIÓN Y TOMA DE DECISIONES EN SALUD  
Type
Article
DOI
10.3390/ijms27135994
URL
https://cris.indoamerica.edu.ec/handle/123456789/10160
Abstract
The concurrent circulation of influenza A virus (IAV) and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has unveiled complex host–pathogen interactions governed by temporal dynamics of innate immune activation. This narrative review synthesizes evidence from human air–liquid interface (ALI) epithelial models, animal studies (hamster, ferret), clinical cohorts, and randomized controlled trials (2015–2026) to delineate the molecular mechanisms underlying viral interference between these two major respiratory pathogens. Prior IAV infection induces a robust type I/III interferon (IFN) response and broad interferon-stimulated gene (ISG) upregulation that restricts subsequent SARS-CoV-2 replication within a critical 24–72 h temporal window. Conversely, SARS-CoV-2 employs a multi-layered immune evasion strategy that blunts IFN induction, providing minimal heterologous protection. Simultaneous co-infection tends to exacerbate disease severity. Host genetic determinants, including OAS1 and TLR7 variants, modulate interference capacity. Therapeutically, early pegylated IFN-λ shows clinical benefit, while experimental evidence from in vitro and animal models suggests oseltamivir may paradoxically reduce IAV-induced interference. These findings underscore the need for multi-pathogen diagnostics, temporally informed clinical decision-making, and IFN-based therapeutic strategies during co-circulation periods. © 2026 by the authors.
Subjects

air–liquid interface

co-infection

IFITM3

influenza A virus

innate immunity

interferon-stimulated...

OAS1

ORF6

oseltamivir

pegylated interferon ...

respiratory epitheliu...

SARS-CoV-2

temporal dynamics

type I/III interferon...

viral interference

Investigación Indoamérica

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