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Coxiella burnetii is a zoonotic pathogen that causes Q fever in humans and is transmitted primarily from infected goats, sheep, or cows. Q fever typically presents as an acute febrile illness; however, individuals with certain predisposing conditions, including cardiac valvulopathy, are at risk for chronic Q fever, a serious manifestation that may present as endocarditis. In response to a cluster of Q fever cases detected by public health surveillance, we evaluated C. burnetii infection in a community that operates a large-scale cow and goat dairy. A case was defined as an individual linked to the community with a C. burnetii phase II IgG titer ≥ 128. Of 135 participants, 47 (35%) cases were identified. Contact with or close proximity to cows, goats, and their excreta was associated with being a case (relative risk 2.7, 95% confidence interval 1.3-5.3). Cases were also identified among individuals without cow or goat contact and could be related to windborne spread or tracking of C. burnetii on fomites within the community. A history of injection drug use was reported by 26/130 (20%) participants; follow-up for the presence of valvulopathy and monitoring for development of chronic Q fever may be especially important among this population.
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http://dx.doi.org/10.4269/ajtmh.15-0726 | DOI Listing |
Ticks Tick Borne Dis
September 2025
Center for Computational Intelligence to Predict Health and Environmental Risks (CIPHER), The University of North Carolina at Charlotte, Charlotte, USA; Department of Epidemiology and Community Health, The University of North Carolina at Charlotte, Charlotte, USA. Electronic address: rvieira@charlot
Rickettsia spp. are Gram-negative obligate intracellular bacteria, with Rickettsia africae being transmitted by Amblyomma ticks and posing a zoonotic risk. The status of diseases like rickettsiosis is largely unknown in Somalia.
View Article and Find Full Text PDFVet Ital
September 2025
Ecole Inter-Etats des Sciences et Médecine Vétérinaires, Dakar, Sénégal.
Rift Valley Fever (RVF) remains a significant public health and economic concern in Niger, particularly in the Tahoua region. This study aimed to update seroprevalence estimates of Rift Valley Fever Virus (RVFV) and identify high-risk areas and animal populations. A cross-sectional survey was conducted between January and May 2024, during which 615 domestic ruminants (cattle, sheep, goats, and camels) were sampled and tested for RVFV-specific antibodies using a competitive enzyme-linked immunosorbent assay (cELISA).
View Article and Find Full Text PDFComp Immunol Microbiol Infect Dis
August 2025
Institute of Veterinary Sciences, University of Blida 1, Algeria; Laboratory of Physical Chemistry of Material Interfaces Applied to the Environment, Saâd Dahlab University, Blida 1, B.P. 270, Route de Soumaa, Blida 09000, Algeria. Electronic address:
This systematic review, conducted according to PRISMA guidelines, provides a comprehensive synthesis of epidemiological data on Coxiella burnetii, the causative agent of Q fever, in humans and animals worldwide. A total of 1321 publications were identified, of which 166 met the inclusion criteria. Q fever, first described in 1937 in Australian abattoir workers, remains a globally distributed zoonosis, with domestic ruminants (sheep, goats, cattle) serving as the primary reservoirs and sources of human infection.
View Article and Find Full Text PDFVet Med Int
August 2025
Department of Veterinary Tropical Diseases, University of Pretoria, Pretoria, South Africa.
Given the endemic nature of bovine brucellosis in Rwanda, caprine brucellosis, primarily caused by in goats, may also be prevalent. However, no data exist on the disease's prevalence and associated risk factors in goats, particularly in Nyagatare district. A cross-sectional study was therefore conducted to determine the seroprevalence of brucellosis and to identify herd-level risk factors associated with the disease among goat herds ( = 102) across six sectors of Nyagatare district.
View Article and Find Full Text PDFProc Natl Acad Sci U S A
September 2025
Institut des Sciences de l'Evolution de Montpellier, University of Montpellier, CNRS, IRD, Montpellier 34095, France.
The long-term evolution of domestic mammal body size in Western Europe since the Early Neolithic is mainly attributed to human selection. However, the relative influence of environmental and anthropogenic factors in animal body size evolution, and the coevolution of wild and domestic species remain poorly understood. In the Northwestern Mediterranean, abundant archaeozoological data from well-contextualized sites and reliable paleoenvironmental reconstructions provide a unique opportunity to explore long-term morphological changes and their drivers over time.
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