Animal models for Ebola and Marburg virus infections

Eri Nakayama1, Masayuki Saijo

  • 1Department of Virology 1, National Institute of Infectious Diseases Tokyo, Japan.

Frontiers in Microbiology
|September 19, 2013
PubMed

Insights

Ebola and Marburg hemorrhagic fevers (EHF and MHF) are severe diseases caused by filoviruses. This review examines animal models crucial for understanding these diseases and developing countermeasures against filoviral threats.

Area of Science:

  • Virology
  • Pathology
  • Epidemiology

Background:

  • Ebola and Marburg hemorrhagic fevers (EHF and MHF) are severe diseases caused by the Filoviridae family, with high human mortality rates.
  • These diseases are endemic to sub-Saharan Africa, but novel filoviruses like Lloviu virus, discovered in Spain, highlight the need for broader preparedness.
  • Ebolavirus and Marburgvirus are Biosafety Level-4 (BSL-4) pathogens and Category A agents, necessitating preparedness for potential bioterrorism.

Purpose of the Study:

  • To review the clinical features of EHF and MHF in humans and animals.
  • To discuss the development and utility of various animal models for studying filovirus infections.
  • To emphasize the importance of animal models in understanding filovirus pathophysiology and developing diagnostics, vaccines, and therapeutics.

Main Methods:

  • Review of existing literature on EHF and MHF.
  • Analysis of clinical manifestations in animal models, including non-human primates (NHPs) and rodents.
  • Discussion of the advantages and limitations of different animal models.

Main Results:

  • Non-human primate models (rhesus and cynomolgus macaques) closely mimic human filovirus infection symptoms but present ethical and practical challenges.
  • Rodent models (mice, guinea pigs, hamsters) require viral adaptation for lethal disease and may not fully replicate human symptoms.
  • Lloviu virus, a novel filovirus distinct from ebolavirus and marburgvirus, has been identified, underscoring the need for versatile animal models.

Conclusions:

  • Animal models, including NHPs and rodents, are invaluable for studying filovirus pathophysiology and developing medical countermeasures.
  • Despite limitations, these models are crucial for advancing diagnostics, vaccines, and therapeutics for EHF and MHF.
  • Preparedness for filoviral hemorrhagic fevers, including in non-endemic regions, requires continued development and refinement of animal models.