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Global Foot-and-Mouth Disease Research Update and Gap Analysis: 7 - Pathogenesis and Molecular Biology
L Robinson1, T J D Knight-Jones2, B Charleston3
1Insight Editing London, London, UK.
Abstract:
We assessed research knowledge gaps in the fields of FMDV (foot-and-mouth disease virus) pathogenesis and molecular biology by performing a literature review (2011-15) and collecting research updates (2014) from 33 institutes from across the world. Findings were used to identify priority areas for future research. There have been important advances in FMDV pathogenesis; FMDV remains in lymph nodes of many recovered animals that otherwise do not appear persistently infected, even in species previously not associated with the carrier state. Whether virus retention helps maintain host immunity and/or virus survival is not known. Studies of FMDV pathogenesis in wildlife have provided insights into disease epidemiology, in endemic and epidemic settings. Many aspects of FMDV infection and virus entry remain unknown; however, at the cellular level, we know that expression level and availability of integrins (that permit viral entry), rate of clearance of infected cells and strength of anti-viral type I IFN (interferon) response are key determinants of tissue tropism. Extending findings to improved understanding of transmission requires a standardized approach and adoption of natural routes of infection during experimental study. There has been recognition of the importance of autophagosomes for FMDV entry into the cytoplasm following cell surface receptor binding, and that distinct internal cellular membranes are exploited for viral replication and immune evasion. New roles for viral proteins in blocking type I IFN production and downstream signalling have been identified facilitating research in anti-viral therapeutics. We know more about how infection affects cell protein expression, and research into molecular determinants of capsid stability has aided the development of stable vaccines. We have an expanding knowledge of viral and host molecular determinates of virulence and infectiousness, and of how phylogenetics may be used to estimate vaccine match and strain distribution. With ongoing advances, these areas could translate into significantly improved disease control.
Insights
Research identified knowledge gaps in foot-and-mouth disease virus (FMDV) pathogenesis and molecular biology. Future research should focus on virus persistence, cellular entry mechanisms, and immune evasion to improve disease control strategies.
Area of Science:
- Veterinary Virology
- Molecular Biology
- Disease Epidemiology
Background:
- Foot-and-mouth disease virus (FMDV) research has advanced, yet significant knowledge gaps persist regarding its pathogenesis and molecular biology.
- Understanding FMDV carrier states, viral entry, replication, and immune evasion is crucial for effective disease management.
Purpose of the Study:
- To identify research knowledge gaps in FMDV pathogenesis and molecular biology.
- To prioritize future research directions for improved FMDV control.
Main Methods:
- Literature review of FMDV research from 2011-2015.
- Collection of research updates from 33 international institutes (2014).
Main Results:
- FMDV persistence in lymph nodes of recovered animals, even without apparent chronic infection, requires further investigation regarding its role in immunity and virus survival.
- Key determinants of FMDV tissue tropism include integrin availability, infected cell clearance rates, and type I interferon responses.
- Viral proteins' roles in blocking type I interferon signaling and the exploitation of cellular machinery (autophagosomes) for replication and immune evasion are areas of active research.
- Advances in understanding capsid stability and viral/host determinants of virulence contribute to vaccine development and strain distribution analysis.
Conclusions:
- Further research into FMDV persistence, cellular interactions, and immune modulation is essential.
- Standardized experimental approaches and natural infection routes are needed to improve understanding of FMDV transmission.
- Ongoing molecular and phylogenetic research holds promise for significantly enhanced FMDV control strategies.
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