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.

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.