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Published on: June 4, 2016
Morbillivirus infections in aquatic mammals: a brief overview
G Di Guardo1, G Marruchella, U Agrimi
1Department of Comparative Biomedical Sciences, Faculty of Veterinary Medicine, University of Teramo, Piazza Aldo Moro 45, 64100 Teramo, Italy. gdiguardo@unite.it
Abstract:
Since 1987, at least eight morbillivirus infection (MI) epidemics have caused mass mortality of several free-living pinniped and cetacean populations around the world. The responsible agents, all belonging to the genus Morbillivirus (family Paramyxoviridae), have been characterized as either "canine distemper virus" strains, infecting pinnipeds, or as three new morbilliviruses, namely "phocid (phocine) distemper virus" , "porpoise morbillivirus" and "dolphin morbillivirus" . The last two agents are currently gathered under the common denomination of "cetacean morbillivirus". At post-mortem examination, a commonly occurring macroscopic lesion is represented by more or less severe bilateral pneumonia, with consolidation, congestion and oedema of both lungs, which fail to collapse. Histologically, a non-suppurative broncho-interstitial pneumonia, characterized by type II pneumocyte hyperplasia and by formation of endobronchial, endobronchiolar and endoalveolar "Warthin-Finkeldey type" syncytia, as well as a multifocal, non-suppurative encephalitis, associated with a severe and generalized lymphoid tissue depletion, are common pathological findings. Furthermore, eosinophilic viral inclusions are often detected, at both the intracytoplasmic and intranuclear level, within bronchial and bronchiolar epithelial, pulmonary syncytial, neuronal and other cell types. These inclusions, along with lymphoid and other cellular elements, are often found to be immunohistochemically positive for morbillivirus antigen. Among the still debated, or even controversial issues regarding MI in sea mammals, the one related to the origin of their causative agents is of particular concern. Another intriguing issue regards the synergistic effects, if any, associated with chronic exposure to a number of environmental pollutants, such as organochlorines and heavy metals. In fact, it is also unknown whether and how these chemicals contribute towards modulating the pathogenic and pathogenetic activity primarily displayed by sea mammal morbilliviruses.
Insights
Morbillivirus infections (MI) cause mass mortality in marine mammals. Research highlights pneumonia, encephalitis, and lymphoid depletion, with ongoing questions about virus origins and pollutant interactions.
Area of Science:
- Veterinary Virology
- Marine Mammal Pathology
- Wildlife Epidemiology
Background:
- Morbillivirus infections (MI) have caused significant mortality events in free-living pinnipeds and cetaceans globally since 1987.
- Causative agents include canine distemper virus strains and newly identified phocid, porpoise, and dolphin morbilliviruses, now collectively termed cetacean morbilliviruses.
- Common pathological findings include severe bilateral pneumonia and non-suppurative encephalitis with lymphoid depletion.
Purpose of the Study:
- To review the pathological findings associated with morbillivirus infections in marine mammals.
- To discuss the origins of morbillivirus agents affecting marine mammals.
- To explore potential synergistic effects between morbillivirus infections and environmental pollutants.
Main Methods:
- Post-mortem examination of affected marine mammals.
- Histopathological analysis of lung and brain tissues.
- Immunohistochemical detection of morbillivirus antigens.
Main Results:
- Macroscopic lesions include bilateral pneumonia with lung consolidation, congestion, and edema.
- Histological findings reveal broncho-interstitial pneumonia with syncytia formation and multifocal encephalitis.
- Viral inclusions and morbillivirus antigens are detected in various cell types and lymphoid tissues.
Conclusions:
- Morbillivirus infections present consistent pathological hallmarks in marine mammals.
- The origins of marine mammal morbilliviruses remain an area of active investigation.
- The potential role of environmental pollutants in modulating morbillivirus pathogenicity requires further research.
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