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"Malignant Catarrh - epidemiology"
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A review of the epidemiological, clinical, and pathological aspects of malignant catarrhal fever in Brazil
by
Headley, Selwyn Arlington
,
de Oliveira, Thalita Evani Silva
,
Cunha, Cristina Wetzel
in
Animal diseases
,
Animals
,
Biomedical and Life Sciences
2020
Sheep-associated malignant catarrhal fever (SA-MCF), the form of MCF that occurs in Brazil, is a severe, frequently fatal, infectious disease caused by ovine gammaherpesvirus-2 (OvHV-2), in which sheep are the asymptomatic hosts and cattle and other cloven-hoofed animals are the accidental hosts. This review provides a critical analysis of the historical, epidemiological aspects and the estimated economic impacts associated with SA-MCF in Brazil. Moreover, the clinical manifestations and pathological lesions associated with SA-MCF in cattle are reviewed and discussed and the phylogenetic distribution of OvHV-2 in Brazil is presented. OvHV-2 is the only MCF virus identified in animals from Brazil. It is recommended that a histopathologic diagnosis of SA-MCF be based on all aspects of vascular disease in the affected animal and not only lymphocytic/necrotizing vasculitis and/or fibrinoid change. Conformation of the intralesional participation of OvHV-2 in these alterations can be achieved by immunohistochemistry and/or in situ hybridization assays. Additionally, it is proposed that OvHV-2 should be considered as a possible infectious disease agent associated with the development of bovine respiratory disease in cattle. Furthermore, the possible role of the small intestine in the dissemination of OvHV-2 is discussed.
Journal Article
Another case of sheep-associated malignant catarrhal fever in Rio Grande do Sul: the curious epidemiological niche of ovine gammaherpesvirus 2 in Southern Brazil
by
Rodrigues, Diego Leonardo
,
Martins, Felippe Danyel Cardoso
,
Headley, Selwyn Arlington
in
Animals
,
Asymptomatic
,
Brazil - epidemiology
2025
Introduction: Ovine gammaherpesvirus 2 (OvGHV2) is the cause of sheep-associated malignant catarrhal fever (SA-MCF). Although SA-MCF is endemic in most geographical regions of Brazil, outbreaks are more frequently reported in the State of Rio Grande do Sul (RS). This report describes the findings of an SA-MCF outbreak in cattle from RS and investigates the possible reasons for the elevated occurrence of outbreaks in cattle from this geographical region of Brazil. Methodology: An outbreak of SA-MCF involving a 7-month-old dairy calf died acutely after presenting fever, profuse salivation, and respiratory difficulties. This calf was maintained on a farm that contained two asymptomatic sheep. A qPCR assay detected OvGHV2 DNA in multiple organs of the dead calf and blood from the two asymptomatic sheep. Results: These findings confirmed OvGHV2-related infection in the calf and the participation of the two sheep as possible disseminators of this infection. A sheep:cattle ratio (SCR) that evaluated the chances of SA-MCF outbreaks to occur within the mesoregions of RS where cattle and sheep are reared simultaneously, demonstrated that geographical regions with an SCR > 0.15 have a significantly increased chance to develop outbreaks of SA-MCF in cattle relative to mesoregions with an SCR < 0.15 within RS. Conclusions: The SCR may be used as a possible indicator for the occurrence of SA-MCF outbreaks in cattle within the state of Rio Grande do Sul. Additionally, the traditional sheep production system and rearing practiced within RS seem to favor the development of SA-MCF outbreaks in susceptible cattle populations.
Journal Article
Molecular detection and phylogenetic analysis of ovine herpesvirus-2 in subclinical infections of cattle and sheep
by
Hussain, M.I
,
Qureshi, S
,
Kumar, A. S.
in
Amino acid sequence
,
Amino acids
,
Animal populations
2024
Ovine herpesvirus-2 (OvHV-2) is the causative agent of malignant catarrhal fever (MCF), a serious and often fatal disease that affects cattle and other ruminants. This study aimed to investigate the molecular epidemiology and genetic diversity of OvHV-2 strains circulating in sheep and cattle populations in the Jammu and Kashmir region of India. Screening of 150 sheep and 57 cattle blood samples revealed the presence of the OvHV-2 polymerase (pol) gene in 8.6% of sheep, 10% of apparently healthy cattle, and 29.7% of cattle exhibiting MCF-like symptoms. The full-length glycoprotein B (gB) gene (2800 bp) and an 875 bp internal fragment were successfully amplified, cloned, and sequenced from pol-positive samples. Comparative sequence analysis of the deduced gB amino acid sequences identified seven substitutions at positions 278, 341, 390, 440, 468, 539, and 566 compared to reference strains. Phylogenetic analysis based on the gB nucleotide sequences clustered the OvHV-2 strains from this study within the Indian clade, distinct from strains reported in the UK and US. These findings provide insights into the genetic diversity of OvHV-2 strains circulating in Jammu and Kashmir, with the identified mutations potentially influencing virus-host interactions. Further investigations into the functional implications of these mutations are warranted to understand their role in viral pathogenesis and tropism.
Journal Article
The Association of Macavirus and Ovine Gammaherpesvirus 2 with Pneumonia in Beef Cattle from Mato Grosso, Brazil
by
Buczinski, Sébastien
,
Machado, Beatriz Martins
,
Gomes Ferreira, Karina Rodrigues
in
Animals
,
Antigens
,
Antigens, Viral
2025
This study investigated the possible occurrence of pulmonary disease in beef cattle from 13 municipalities within the State of Mato Grosso (MT), Brazil. The state of MT is a leading player in beef cattle production in Brazil, but with comparatively few data relative to the occurrence of pulmonary disease or ovine gammaherpesvirus 2 (OvGHV2)-related infections in cattle. Pulmonary samples from 44 beef cattle, with ages ranging between 18 and 28 months, were collected during slaughter and processed to determine the patterns of pulmonary lesions. Additionally, duplicate fragments were used in immunohistochemical (IHC) assays designed to detect malignant catarrhal fever (MCFV) antigens and in molecular assays to amplify 10 agents associated with the development of bovine respiratory disease (BRD). Interstitial pneumonia (IP) was diagnosed in most of the lungs (98%; 43/44) evaluated from all municipalities. MCFV antigens were detected in 37% (16/43) of the animals with IP. Only four pathogens were amplified by molecular assays within the lungs of cattle with IP: OvGHV2 (23%; 10/43), bovine viral diarrhea virus (12%; 5/43), bovine coronavirus (7%; 3/43), and Mannheimia haemolytica (2%; 1/43). The nucleic acids of bovine respiratory syncytial virus, bovine alphaherpesvirus 1, bovine parainfluenza virus 3, Pasteurella multocida, Histophilus somni, and Mycoplasmopsis (Mycoplasma) bovis were not amplified. Singular infections in cattle from municipalities were associated with MCFV (n = 3) and OvGHV2 (n = 2), while OvGHV2 occurred in all dual and triple infections. However, in four animals with IP, none of the disease pathogens identified were detected. Statistically, MCFV antigens were more frequently (p = 0.048) detected in the lungs of female (75%; 12/16) cattle with IP relative to males (25%; 4/16). Additionally, there was a positive correlation (p < 0.001) between the IHC detection of MCFV antigens within the bronchial epithelium and the epithelium of peribronchial glands of cattle with IP. This is the first study to statistically demonstrate that female cattle are at greater risk of developing MCFV-related infections as compared to male animals. The detection of OvGHV2 in singular and multiple infections during this investigation supports earlier studies that associate this pathogen with the development of pulmonary disease in cattle, indicating that OvGHV2 can contribute to the etiology of IP. Additionally, the detection of OvGHV2-induced infections in asymptomatic cattle suggests that all animals were subclinically infected, confirming that subclinically OvGHV2-induced infections may be widespread in ruminants from Brazil. Furthermore, the occurrence of atypical interstitial pneumonia cannot be discarded, particularly in animals with IP but without any associated pathogen. These initial findings suggest the need for a more elaborate investigation to understand the dynamics of pulmonary disease within this state.
Journal Article
The Economic Impact of Malignant Catarrhal Fever on Pastoralist Livelihoods
2015
This study is the first to partially quantify the potential economic benefits that a vaccine, effective at protecting cattle against malignant catarrhal fever (MCF), could accrue to pastoralists living in East Africa. The benefits would result from the removal of household resource and management costs that are traditionally incurred avoiding the disease. MCF, a fatal disease of cattle caused by a virus transmitted from wildebeest calves, has plagued Maasai communities in East Africa for generations. The threat of the disease forces the Maasai to move cattle to less productive grazing areas to avoid wildebeest during calving season when forage quality is critical. To assess the management and resource costs associated with moving, we used household survey data. To estimate the costs associated with changes in livestock body condition that result from being herded away from wildebeest calving grounds, we exploited an ongoing MCF vaccine field trial and we used a hedonic price regression, a statistical model that allows estimation of the marginal contribution of a good's attributes to its market price. We found that 90 percent of households move, on average, 82 percent of all cattle away from home to avoid MCF. In doing so, a herd's productive contributions to the household was reduced, with 64 percent of milk being unavailable for sale or consumption by the family members remaining at the boma (the children, women, and the elderly). In contrast cattle that remained on the wildebeest calving grounds during the calving season (and survived MCF) remained fully productive to the family and gained body condition compared to cattle that moved away. This gain was, however, short-lived. We estimated the market value of these condition gains and losses using hedonic regression. The value of a vaccine for MCF is the removal of the costs incurred in avoiding the disease.
Journal Article
Alcelaphine Herpesvirus-1 (Malignant Catarrhal Fever Virus) in Wildebeest Placenta: Genetic Variation of ORF50 and A9.5 Alleles
by
Lugelo, Ahmed
,
Mnyambwa, Nicholas
,
Kazwala, Rudovick
in
Alleles
,
Amino Acid Sequence
,
Amino acids
2015
Alcelaphine herpesvirus-1 (AlHV-1), a causative agent of malignant catarrhal fever in cattle, was detected in wildebeest (Connochaetes taurinus) placenta tissue for the first time. Although viral load was low, the finding of viral DNA in over 50% of 94 samples tested lends support to the possibility that placental tissue could play a role in disease transmission and that wildebeest calves are infected in utero. Two viral loci were sequenced to examine variation among virus samples obtained from wildebeest and cattle: the ORF50 gene, encoding the lytic cycle transactivator protein, and the A9.5 gene, encoding a novel polymorphic viral glycoprotein. ORF50 was well conserved with six newly discovered alleles differing at only one or two base positions. In contrast, while only three new A9.5 alleles were discovered, these differed by up to 13% at the nucleotide level and up to 20% at the amino acid level. Structural homology searching performed with the additional A9.5 sequences determined in this study adds power to recent analysis identifying the four-helix bundle cytokine interleukin-4 (IL4) as the major homologue. The majority of MCF virus samples obtained from Tanzanian cattle and wildebeest encoded A9.5 polypeptides identical to the previously characterized A9.5 allele present in the laboratory maintained AlHV-1 C500 strain. This supports the view that AlHV-1 C500 is suitable for the development of a vaccine for wildebeest-associated MCF.
Journal Article
Caprine herpesvirus 2-associated malignant catarrhal fever of captive sika deer (Cervus nippon) in an intensive management system
2018
Background
Caprine herpesvirus 2 (CpHV-2) infection usually induces chronic malignant catarrhal fever (MCF) in sika deer (
Cervus nippon
), with the primary signs of weight loss, dermatitis and alopecia.
Case presentation
Here, we report a case of CpHV-2-associated acute MCF in a sika deer herd raised in an intensive management system distant to the reservoir goats. Affected deer developed clinical signs of high fever (41 °C) followed by nasal discharge and lameness. Severe lesions of hemorrhage, necrosis and infiltration of lymphoid cells could readily be observed in the lung, kidney, heart valves and subcutaneous tissue surrounding a tendon. Etiologically, identical CpHV-2 specific DNA sequences were detected in peripheral blood lymphocyte (PBL) from the affected deer and reservoir goats.
Conclusion
In summary, domestic goats were the reservoir of the CpHV-2, which is the causative agent of the outbreak of MCF in the three hinds. The disease was probably transmitted via aerosol infection. In addition, necrosis and inflammation in subcutaneous tissue surrounding a tendon was the reason for lameness. Therefore, MCF should be put into a differential diagnostic list when similar disease occurs in sika deer herds.
Journal Article
Wildlife: topical issues, recent cases
This focus article was prepared by Paul Duff, Paul Holmes and Alex Barlow of the APHA Wildlife Expert Group.This focus article was prepared by Paul Duff, Paul Holmes and Alex Barlow of the APHA Wildlife Expert Group.
Journal Article
Possible natural MCF-like disease in a domestic lamb in Scotland
2012
While no age-matched controls were available, our previous experience with the use of this assay in ovine tissue and Âheparinised blood samples is that either OvHV-2 is not detected (70 per cent) or, where virus genome is detected (30 per cent), the Ct values for OvHV-2 are much higher (range 5-14 Cts above the β-actin value; 3.0x10-2-4.4x10-5 virus genomes per cell genome), suggesting low virus loads considered to be consistent with detection of latent infection (virus carriage). OvHV-2 β-actin fold difference Lung 22.57 24.76 4.56 Heart 26.28 27.93 3.14 Kidney 27.58 28.88 2.46 OvHV-2 Ovine herpesvirus 2 The current tissue samples were also tested for pestivirus RNA using real-time RT-PCR (Willoughby and others, 2006), and no Border Disease virus, Bovine Viral Diarrhoea Virus type 1 or type 2 RNA were detected.
Journal Article