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Published on: September 27, 2014
Non-Ebola Filoviruses: Potential Threats to Global Health Security
Yannick Munyeku-Bazitama1,2,3, Francois Edidi-Atani1,2,3, Ayato Takada1,4,5,6
1Division of Global Epidemiology, International Institute for Zoonosis Control, Hokkaido University, Sapporo 001-0020, Japan.
Abstract:
Filoviruses are negative-sense single-stranded RNA viruses often associated with severe and highly lethal hemorrhagic fever in humans and nonhuman primates, with case fatality rates as high as 90%. Of the known filoviruses, Ebola virus (EBOV), the prototype of the genus Orthoebolavirus, has been a major public health concern as it frequently causes outbreaks and was associated with an unprecedented outbreak in several Western African countries in 2013-2016, affecting 28,610 people, 11,308 of whom died. Thereafter, filovirus research mostly focused on EBOV, paying less attention to other equally deadly orthoebolaviruses (Sudan, Bundibugyo, and Taï Forest viruses) and orthomarburgviruses (Marburg and Ravn viruses). Some of these filoviruses have emerged in nonendemic areas, as exemplified by four Marburg disease outbreaks recorded in Guinea, Ghana, Tanzania, and Equatorial Guinea between 2021 and 2023. Similarly, the Sudan virus has reemerged in Uganda 10 years after the last recorded outbreak. Moreover, several novel bat-derived filoviruses have been discovered in the last 15 years (Lloviu virus, Bombali virus, Měnglà virus, and Dehong virus), most of which are poorly characterized but may display a wide host range. These novel viruses have the potential to cause outbreaks in humans. Several gaps are yet to be addressed regarding known and emerging filoviruses. These gaps include the virus ecology and pathogenicity, mechanisms of zoonotic transmission, host range and susceptibility, and the development of specific medical countermeasures. In this review, we summarize the current knowledge on non-Ebola filoviruses (Bombali virus, Bundibugyo virus, Reston virus, Sudan virus, Tai Forest virus, Marburg virus, Ravn virus, Lloviu virus, Měnglà virus, and Dehong virus) and suggest some strategies to accelerate specific countermeasure development.
Insights
Non-Ebola filoviruses, including Marburg and Sudan viruses, pose significant public health threats. This review highlights knowledge gaps and strategies for developing medical countermeasures against these deadly emerging viruses.
Area of Science:
- Viral hemorrhagic fevers
- Emerging infectious diseases
- RNA virus research
Background:
- Filoviruses, particularly Ebola virus (EBOV), cause severe hemorrhagic fever with high fatality rates.
- Recent outbreaks of Marburg and Sudan viruses underscore the threat of non-EBOV filoviruses.
- Discovery of novel bat-derived filoviruses indicates potential for future human outbreaks.
Purpose of the Study:
- To review current knowledge on non-Ebola filoviruses.
- To identify research gaps in filovirus ecology, transmission, and pathogenicity.
- To propose strategies for accelerating the development of specific medical countermeasures.
Main Methods:
- Comprehensive literature review of known and emerging filoviruses.
- Analysis of recent outbreaks and novel filovirus discoveries.
- Synthesis of current understanding and identification of research priorities.
Main Results:
- Focus on EBOV has led to reduced attention on other deadly filoviruses like Sudan and Marburg viruses.
- Several filoviruses have recently emerged in non-endemic areas, and novel bat-derived viruses are being discovered.
- Significant knowledge gaps persist regarding filovirus ecology, zoonotic transmission, host range, and countermeasure development.
Conclusions:
- Non-Ebola filoviruses represent a substantial and understudied threat.
- Addressing knowledge gaps is crucial for effective outbreak prevention and control.
- Accelerated development of specific medical countermeasures is urgently needed to combat filovirus diseases.
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