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Published on: September 27, 2014
Epidemiology of the Ebola Virus: Facts and Hypotheses
1Department of Virology, Institute of Microbiology Federal University of Rio de Janeiro.
Abstract:
Marburg and Ebola viruses are emerging pathogens recognized since 1967, and in 1976, when they were first identified. These viruses are the only members of the Filoviridae family. They cause severe, frequently fatal, hemorrhagic fever. Each genus includes some serotypes with the distinctive characteristics to cause high mortality rate during outbreaks. The Ebola-Zaire subtype is the most lethal variant. The epidemiology of human pathogenic filovirus is reviewed in this paper considering the most relevant facts. Primary human cases arise probably through close contact with infected primates. This point may be the key to preventing the introduction of these viruses in human populations. Once introduced in humans, the infection may spread through close contact with infected individuals or their body fluids, particularly in hospital environments. A main feature of filovirus outbreaks is the occurrence of cycles of secondary infection.
Insights
Marburg and Ebola viruses cause severe hemorrhagic fevers. Preventing human cases involves limiting contact with infected primates and controlling spread through infected individuals and their bodily fluids.
Area of Science:
- Virology
- Epidemiology
- Infectious Diseases
Background:
- Marburg and Ebola viruses, identified in 1967 and 1976 respectively, are the sole members of the Filoviridae family.
- These emerging pathogens cause severe and often fatal hemorrhagic fevers, with high mortality rates during outbreaks.
- The Ebola-Zaire subtype is recognized as the most lethal variant within this viral family.
Purpose of the Study:
- To review the epidemiology of human pathogenic filoviruses.
- To highlight key facts regarding filovirus transmission and prevention.
- To understand the origins and spread patterns of Marburg and Ebola virus outbreaks.
Main Methods:
- Literature review of epidemiological data on filovirus outbreaks.
- Analysis of recognized transmission routes and risk factors.
- Synthesis of information on primary infection sources and secondary spread.
Main Results:
- Primary human infections likely result from close contact with infected non-human primates.
- Human-to-human transmission occurs through direct contact with infected individuals or their bodily fluids.
- Hospital environments can be significant settings for the spread of filovirus infections.
- Filovirus outbreaks are characterized by cycles of secondary infections within human populations.
Conclusions:
- Limiting contact with infected primates is crucial for preventing initial human infections.
- Strict infection control measures in healthcare settings are vital to curb human-to-human transmission.
- Understanding filovirus epidemiology is key to developing effective public health strategies for outbreak control.
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