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15 pages, 2635 KB  
Article
Detection of Leishmania infantum DNA in Sand Flies and Assessment of Zoonotic Transmission Risk in Central Honduras: A One Health Approach
by Elisa Alcántara-Henríquez, Hugo O. Valdivia, Gissella M. Vásquez, Joel García, Estela Guevara, Juan F. Sanchez, Adalid Palma, Arnold Houghton, Allan Iván Izaguirre González, Marcia D. Laurenti and Wilfredo Sosa-Ochoa
Trop. Med. Infect. Dis. 2026, 11(8), 219; https://doi.org/10.3390/tropicalmed11080219 - 5 Aug 2026
Viewed by 400
Abstract
Integrated One Health studies are essential for assessing the risks of leishmaniasis transmission. In Honduras, the most prevalent clinical presentation of leishmaniasis is the non-ulcerated cutaneous form caused by Leishmania infantum; however, research on its transmission dynamics remains limited. This study aimed [...] Read more.
Integrated One Health studies are essential for assessing the risks of leishmaniasis transmission. In Honduras, the most prevalent clinical presentation of leishmaniasis is the non-ulcerated cutaneous form caused by Leishmania infantum; however, research on its transmission dynamics remains limited. This study aimed to characterize the eco-epidemiology of leishmaniasis and identify potential zoonotic risk factors in the municipality of Ojos de Agua, Department of Comayagua, central Honduras, using a One Health approach. We collected sand flies using CDC light traps placed in intra- and peridomestic settings of households with a history of leishmaniasis. Concurrently, we evaluated domestic dogs and collected blood samples for serological and molecular testing. We also conducted active surveillance among community residents to identify human infections. We collected a total of 644 phlebotomine sand flies, including 186 females. We identified eight sandfly species, with Lutzomyia (Lutzomyia) longipalpis as the predominant species, followed by Pintomyia (Pifanomyia) evansi. Among the 64 engorged females screened, the overall PCR positivity rate for Leishmania spp. was 14.1% (9/64). Blood meal analysis of PCR-positive sand flies identified humans and pigs as blood and meal sources. Additionally, 18.6% (8/43) of domestic dogs were seropositive for Leishmania spp., and 23.3% (10/43) tested positive by PCR. DNA sequencing identified the infecting species as Leishmania infantum. We detected no active human cases during the study period. These findings highlight the value of a One Health approach for improving transmission risk monitoring in newly emerging areas with a history of ulcerative cutaneous leishmaniasis in Honduras. Full article
(This article belongs to the Section One Health)
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13 pages, 1296 KB  
Article
Ultrasonographic Morphology of the Abdominal Organs of the White-Eared Opossum (Didelphis albiventris)
by Eloara Giovanna Aguiar Bonassoli de Oliveira Martins, Rodrigo Antonio Martins de Souza, Luciana do Amaral Oliveira and Carla Fredrichsen Moya
Animals 2026, 16(15), 2392; https://doi.org/10.3390/ani16152392 - 3 Aug 2026
Viewed by 169
Abstract
Ultrasound is a fundamental diagnostic imaging tool in veterinary medicine that allows for the noninvasive, real-time evaluation of abdominal organs. However, reference ultrasound data for neotropical marsupials is scarce, which hinders diagnostic interpretation of ultrasound images of these species. The present study aimed [...] Read more.
Ultrasound is a fundamental diagnostic imaging tool in veterinary medicine that allows for the noninvasive, real-time evaluation of abdominal organs. However, reference ultrasound data for neotropical marsupials is scarce, which hinders diagnostic interpretation of ultrasound images of these species. The present study aimed to describe the morphological and biometric ultrasound characteristics of the abdominal organs of white-eared opossums (Didelphis albiventris) treated at a wildlife rehabilitation center in southern Brazil. Sixteen clinically stable opossums, with an average body mass of 1.4 kg, underwent abdominal ultrasonography using a multifrequency linear transducer (7–12 MHz). We analyzed parameters such as shape, contour, echogenicity, echotexture, and anatomical relationships between adjacent structures, in addition to taking biometric measurements of different abdominal organs. Most structures presented characteristics similar to those described in small domestic dogs and cats. However, species-specific particularities were observed, including decreased renal corticomedullary distinction, slightly coarser renal and prostatic echotexture, and a smaller abdominal aorta diameter. It is concluded that abdominal ultrasonography is an effective method for the anatomical evaluation of white-eared opossums. Full article
(This article belongs to the Section Wildlife)
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16 pages, 2611 KB  
Article
Development and Analytical Evaluation of a Novel Droplet Digital PCR Assay for Molecular Detection of Rickettsia spp. in Dogs and Cats from the Canary Islands
by Alma García-Ramos, Omar García-Pérez, Angélica Domínguez-de-Barros, Malena Gajate-Arenas, Candela Sirvent-Blanco, José E. Piñero, Jacob Lorenzo-Morales and Elizabeth Córdoba-Lanús
Vet. Sci. 2026, 13(8), 761; https://doi.org/10.3390/vetsci13080761 - 30 Jul 2026
Viewed by 175
Abstract
Rickettsia is an obligate intracellular genus of bacteria responsible for rickettsioses, a group of emerging vector-borne diseases. Their diagnosis remains challenging because of non-specific clinical manifestations, serological cross-reactivity, and low bacterial loads in clinical samples. In this study, a novel droplet digital polymerase [...] Read more.
Rickettsia is an obligate intracellular genus of bacteria responsible for rickettsioses, a group of emerging vector-borne diseases. Their diagnosis remains challenging because of non-specific clinical manifestations, serological cross-reactivity, and low bacterial loads in clinical samples. In this study, a novel droplet digital polymerase chain reaction (ddPCR) assay was developed for the molecular detection of Rickettsia spp., and its performance was evaluated using clinical blood samples collected from dogs and cats in the Canary Islands, Spain. Primers and probes targeting the 16S ribosomal RNA (rRNA) were designed and optimized for ddPCR amplification. Analytical performance was assessed by optimising primer and probe concentrations, annealing temperature, specificity, and the limit of detection (LOD). Comparative analysis between quantitative PCR (qPCR) and ddPCR was also performed. The optimized assay employed primer and probe concentrations of 900 nM and 250 nM, respectively, with an annealing temperature of 56 °C. The assay achieved an analytical detection limit of 0.064 ng of clinical sample DNA, although sporadic positive droplets were still detectable at lower concentrations. Strong inverse correlations were observed between qPCR cycle threshold (CT) values and ddPCR absolute quantification for both plasmid DNA (r = −0.997) and clinical sample DNA (r = −0.983). A total of 170 blood samples collected from domestic animals in the Canary Islands, with clinical suspicion of rickettsiosis, were analysed. Six canine samples (3.5%) tested positive for Rickettsia spp. The ddPCR assay developed in this study showed promising analytical performance for the molecular detection of Rickettsia spp. DNA and has the potential to become a valuable molecular tool for veterinary diagnostics and epidemiological investigations within a One Health framework. Further analytical and clinical validation studies are required before its implementation as a routine diagnostic assay. Full article
(This article belongs to the Section Veterinary Microbiology, Parasitology and Immunology)
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15 pages, 6794 KB  
Article
Small Mammal Assemblages and Domestic Carnivore Activity in a Periurban Ethnobiological Garden in Central Mexico
by Paula Sánchez-Carreto, Carlos Lara, Guillermo Alejandro Pérez-Flores, Jorge Vázquez-Pérez and Mercedes Rodríguez-Palma
Ecologies 2026, 7(3), 73; https://doi.org/10.3390/ecologies7030073 - 30 Jul 2026
Viewed by 297
Abstract
Ethnobiological gardens conserve both biological and cultural diversity, but their permeable boundaries may expose native wildlife inside the garden to chronic domestic carnivore activity. In this single-garden case study, we compare small mammal assemblages between the Jardín Etnobiológico Tlaxcallan (JET), a periurban ethnobiological [...] Read more.
Ethnobiological gardens conserve both biological and cultural diversity, but their permeable boundaries may expose native wildlife inside the garden to chronic domestic carnivore activity. In this single-garden case study, we compare small mammal assemblages between the Jardín Etnobiológico Tlaxcallan (JET), a periurban ethnobiological garden in Tlaxcala, Mexico, and its adjacent, heterogeneous Periphery of native vegetation and agricultural matrix, using live traps, camera traps, and direct observations over nine months. Across 162 detections of 9 species, the Periphery consistently showed higher richness and diversity than the JET at every Hill number order and the two assemblages were compositionally distinct (Bray–Curtis = 0.679), with the JET dominated by disturbance-tolerant species and the Periphery additionally harboring habitat-sensitive natives that were largely or entirely absent from the JET. Domestic cats were detected almost exclusively within the JET, while dogs were recorded at both sites. Dog and cat detection rates were both positively associated with species richness in generalized linear mixed models, a pattern that most plausibly reflects spatial co-occurrence between carnivores and disturbance-tolerant species within the JET rather than a facilitative effect of carnivores on richness. Because our design contrasts a single garden with a single Periphery, these results cannot separate the influence of domestic carnivores from co-varying differences in habitat structure, sampling geometry, or human activity. We therefore present the observed compositional turnover as a hypothesis-generating pattern consistent with—but not evidence of—carnivore-associated ecological filtering that warrants testing through replicated, multi-site designs before informing carnivore management in periurban ethnobiological gardens. Full article
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16 pages, 1429 KB  
Systematic Review
High Prevalence and Regional Heterogeneity of Canine Ancylostoma spp. in Ecuador: A Systematic Review and Meta-Analysis and Its Potential One Health Implications
by Rommel Lenin Vinueza, Mateo Mantilla, Jorge Miño, Renato León and Roberto D. Coello-Peralta
Animals 2026, 16(14), 2230; https://doi.org/10.3390/ani16142230 - 18 Jul 2026
Viewed by 389
Abstract
Hookworms are zoonotic helminths that cause intestinal diseases in pets and humans, as well as cutaneous larva migrans in the latter; therefore, they are of importance to animal and public health. Stray and domestic dogs play a significant role in the transmission of [...] Read more.
Hookworms are zoonotic helminths that cause intestinal diseases in pets and humans, as well as cutaneous larva migrans in the latter; therefore, they are of importance to animal and public health. Stray and domestic dogs play a significant role in the transmission of hookworm disease. This study examines the prevalence of Ancylostoma spp. infections in dogs in Ecuador through a systematic review and meta-analysis. Although based exclusively on canine data, the findings are discussed in the context of available evidence on zoonotic transmission and potential One Health implications. A total of 370 records were screened, of which 9 studies published between 2010 and 2025 met the PRISMA 2020 inclusion criteria. Using a random-effects model with Freeman–Tukey double arcsine transformation, the pooled prevalence was estimated at 32% (95% CI: 17–49%), with substantial heterogeneity across studies (I2 = 98.3%). Regional analysis revealed significantly higher prevalence in the Insular region (50%) and the Coastal region (43%), compared to the Sierra (Andean region) (12%). These findings indicate marked spatial variability in canine Ancylostoma infections across Ecuador, likely reflecting underlying environmental, epidemiological, and methodological differences. While this study does not directly assess human or environmental data, the observed patterns are consistent with epidemiological conditions that may favor zoonotic transmission. Overall, this study highlights the need for integrated approaches consistent with a One Health perspective, including improved surveillance, veterinary interventions, and further research incorporating human and environmental components to better understand the epidemiology and potential zoonotic implications of hookworm infections. Full article
(This article belongs to the Topic Advances in Infectious and Parasitic Diseases of Animals)
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16 pages, 12004 KB  
Article
Ecological Niche Modeling of Pathogenic Leptospira spp. and Risk Prediction of Canine Leptospirosis Occurrence in the Russian Federation
by Sergey V. Shcherbinin, Daria A. Bykovtseva, Natalia S. Bardina and Andrey V. Varkentin
Pathogens 2026, 15(7), 742; https://doi.org/10.3390/pathogens15070742 - 15 Jul 2026
Viewed by 354
Abstract
Leptospirosis remains a significant worldwide zoonotic threat, with domestic dogs playing a pivotal role in pathogen circulation across anthropogenic landscapes. This study aimed to assess the spatial distribution of ecological niches of pathogenic Leptospira spp. and conduct epizootic risk mapping within the Russian [...] Read more.
Leptospirosis remains a significant worldwide zoonotic threat, with domestic dogs playing a pivotal role in pathogen circulation across anthropogenic landscapes. This study aimed to assess the spatial distribution of ecological niches of pathogenic Leptospira spp. and conduct epizootic risk mapping within the Russian Federation. A two-stage modeling approach based on the maximum entropy algorithm (MaxEnt) was deployed. At the first stage, the abiotic model revealed the fundamental survival niche of the pathogen, identifying precipitation (700–1200 mm) and temperature (7–12 °C) as critical determinants. The accuracy of this model was AUC = 0.908 ± 0.007. At the second stage, the biotic model achieved a predictive accuracy of AUC = 0.980 ± 0.003, demonstrating that dog population density was the primary driver of risk, exhibiting a distinct threshold pattern (200–300 animals/km2). Furthermore, while rodent density remains the foundational ecological reservoir capable of independent transmission, the presence of additional domestic reservoirs, including livestock and dog populations, synergistically amplifies the transmission pathways, shaping the highest-risk zones within shared environments. These findings indicate distinct spatial risk boundaries within shared human–animal landscapes, suggesting that domestic dogs function as effective indicators for proactive zoonotic monitoring under the “One Health” framework. Full article
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12 pages, 1231 KB  
Article
Molecular Detection of Rickettsia spp. and Spotted Fever Group (SFG) Rickettsia in Arthropod Vectors from Northwestern Mexico
by Sergio Luis Valle-Sánchez, Roberto Rodríguez-Ramírez, Luz Angélica Ávila-Villa, Alma Guadalupe Villa-Lerma, Blanca Areli Mondaca-Navarro, Ramón Miguel Molina-Barrios and Víctor García-González
Hygiene 2026, 6(3), 45; https://doi.org/10.3390/hygiene6030045 - 14 Jul 2026
Viewed by 491
Abstract
Background: Rickettsioses are emerging diseases worldwide caused by intracellular bacteria of the genus Rickettsia. In recent years, these diseases have caused deaths in northwestern Mexico, particularly cases of Rocky Mountain spotted fever (RMSF). While ticks are considered the primary vector for RMSF, [...] Read more.
Background: Rickettsioses are emerging diseases worldwide caused by intracellular bacteria of the genus Rickettsia. In recent years, these diseases have caused deaths in northwestern Mexico, particularly cases of Rocky Mountain spotted fever (RMSF). While ticks are considered the primary vector for RMSF, other possible vectors of rickettsioses, such as fleas, lice, and mosquitoes, coexist with reservoirs, including dogs, cats, and other domestic animals that may interact with humans. This study aimed to detect the presence of Rickettsia spp., including spotted fever group (SFG) Rickettsia, in arthropod vectors not previously reported in northwestern Mexico using real-time polymerase chain reaction (qPCR). Methods: Ticks, fleas, lice, and mosquitoes were collected from dogs, cats, guinea pigs, and humans. qPCR was used to detect Rickettsia spp. and SFG Rickettsia. Results: Rickettsia spp. were detected in dog ticks (Rhipicephalus sanguineus) and cat fleas (Ctenocephalides felis), with pooled positivity rates of 13.5% and 22.2%, respectively. Conclusions: These results suggest that ticks and fleas are the main arthropod vectors involved in transmitting Rickettsia spp. in northwestern Mexico. Full article
(This article belongs to the Section Infectious Disease Epidemiology, Prevention and Control)
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18 pages, 1866 KB  
Article
First Genetic Detection and Characterization of Canine Parvovirus 2 in Botswana
by Kebadire Tlotleng, Abdelkareem Abdallah, Solomon Stephen Ramabu, Davies Mubika Pfukenyi, Dhani Prakoso and Eman Ahmed Mohamed Anis
Viruses 2026, 18(7), 772; https://doi.org/10.3390/v18070772 - 14 Jul 2026
Viewed by 474
Abstract
Canine parvovirus 2 (CPV 2) is a highly contagious viral pathogen responsible for severe gastroenteritis in canine species worldwide. This study provides the first comprehensive molecular characterization of CPV 2 variants circulating in domestic dogs in Botswana. A total of 187 fecal samples [...] Read more.
Canine parvovirus 2 (CPV 2) is a highly contagious viral pathogen responsible for severe gastroenteritis in canine species worldwide. This study provides the first comprehensive molecular characterization of CPV 2 variants circulating in domestic dogs in Botswana. A total of 187 fecal samples from diarrheic dogs presented at veterinary clinics were tested for CPV 2 using an ELISA point-of-care test and molecular assays for confirmation. A CPV 2 prevalence of 62.0% was detected via ELISA, compared to 100% via qPCR. Genetic characterization using minor groove binder probe-based qPCR assays and sequencing of the VP2 gene revealed the predominance of the CPV 2c variant (99.1%), with the CPV 2a variant detected in one sample from Maun village. Amino acid sequence analysis of the VP2 gene identified a key mutation at position 426 (glutamic acid) characteristic of the CPV2c variants. Phylogenetic analysis showed clustering of the Botswana CPV 2c isolates with Nigerian, Ethiopian, Gabon, Egyptian, and Asian CPV2c variants, while the CPV 2a isolate formed a cluster with CPV 2a variants from Nigeria. These findings confirm the circulation of CPV2a and CPV2c variants in Botswana, with CPV2c as the predominant circulating variant. Continuous monitoring of emerging CPV2 variants is essential for effective disease control in Botswana. Full article
(This article belongs to the Special Issue Viral Diseases of Domestic Animals)
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13 pages, 822 KB  
Article
Occurrence of Spirometra mansoni in Domestic Dogs from Rural Ecuador and Its Public Health Relevance
by Roberto D. Coello Peralta, Zully Baquerizo Orrala, Aldo Rubén Andrada, Davis Calle Atariguana, Geraldine Ramallo and Alicia Rojas
Animals 2026, 16(13), 2049; https://doi.org/10.3390/ani16132049 - 3 Jul 2026
Viewed by 430
Abstract
Spirometra mansoni causes sparganosis in humans and spirometrosis in domestic dogs. It is transmitted through the consumption of raw or undercooked meat from fish, frogs or paratenic animals, producing subcutaneous and tissue infections in humans, whereas dogs or cats develop gastrointestinal infections. Sparganosis [...] Read more.
Spirometra mansoni causes sparganosis in humans and spirometrosis in domestic dogs. It is transmitted through the consumption of raw or undercooked meat from fish, frogs or paratenic animals, producing subcutaneous and tissue infections in humans, whereas dogs or cats develop gastrointestinal infections. Sparganosis is a zoonotic parasitosis associated with freshwater aquatic environments, prevalent in tropical and subtropical regions of the world. The purpose of this investigation was to identify S. mansoni in domestic dogs from riverine sectors of the Daule River in Ecuador, using coproparasitological methods: direct examination, flotation and sedimentation with centrifugation using saline solution (as screening); and for confirmation, morphometric methods and PCR were used. Through a descriptive, prospective and cross-sectional study, 402 domestic dogs were analyzed, and Spirometra mansoni were determined in 67 (16.66%) of the collected samples. The clinical and epidemiological characteristics of spirometrosis in dogs and the potential risk of sparganosis occurring in humans were determined. However, cases may appear in pets from other locations. Full article
(This article belongs to the Topic Advances in Infectious and Parasitic Diseases of Animals)
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16 pages, 1023 KB  
Article
Molecular Detection of Canine Distemper Virus in Portugal: What Explains the Post-2020 Decline? A Retrospective RT-qPCR Study
by Ricardo Lopes, Cristina Costa Santos, Hugo Lima de Carvalho, Filipe Sampaio, Cátia Fernandes, Andreia Garcês, Carlos Sousa, Ana Rita Silva, Hugo Silva, Luís Cardoso, Nuno Alegria, Elsa Leclerc Duarte and Ana Cláudia Coelho
Viruses 2026, 18(7), 734; https://doi.org/10.3390/v18070734 - 2 Jul 2026
Viewed by 566
Abstract
Canine distemper virus (CDV), currently classified within the species Morbillivirus canis, is a major vaccine-preventable pathogen of domestic dogs and a wide range of susceptible wildlife species. Still, laboratory-confirmed epidemiological data from Portugal remain scarce. This retrospective study investigated CDV molecular detection [...] Read more.
Canine distemper virus (CDV), currently classified within the species Morbillivirus canis, is a major vaccine-preventable pathogen of domestic dogs and a wide range of susceptible wildlife species. Still, laboratory-confirmed epidemiological data from Portugal remain scarce. This retrospective study investigated CDV molecular detection in 637 diagnostic samples from dogs with clinical suspicion of canine distemper, received from 190 veterinary medical centres across Portugal between 2013 and 2025. Cerebrospinal fluid, EDTA-anticoagulated whole blood, rectal swabs, and conjunctival swabs were tested for CDV RNA using a reverse transcription real-time PCR (RT-qPCR) assay in a qualitative approach. Overall, 215 submissions were CDV RT-qPCR-positive, corresponding to a positivity of 33.8% (95% confidence interval: 30.2–37.5%). Positivity was not significantly associated with sex, age, or Nomenclature of Territorial Units for Statistics level 2 (NUTS 2) region, but differed significantly according to specimen type, with the highest detection observed in EDTA-anticoagulated whole blood and conjunctival swabs. Mixed-breed dogs were over-represented among submitted samples and positive cases, probably reflecting management, exposure, and vaccination-related factors rather than intrinsic breed susceptibility. The central finding was a pronounced post-2020 decline in CDV RT-qPCR positivity, with very low or absent annual detection between 2021 and 2025. This pattern indicates reduced molecular detection within a passive diagnostic population but should not be interpreted as evidence of national elimination. Continued vaccination and strengthened surveillance at the domestic dog–wildlife interface remain essential. Full article
(This article belongs to the Special Issue Canine Distemper Virus: 2nd Edition)
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12 pages, 1244 KB  
Review
Postbiotics: Research Progress in Canines and Felines
by Jian Zhang, Weina Liu, Huaiyu Zhang, Jinquan Wang, Ruiyang Zhang, Xiumin Wang, Hui Tao, Zhenlong Wang, Yongli Zhang and Bing Han
Microbiol. Res. 2026, 17(7), 123; https://doi.org/10.3390/microbiolres17070123 - 30 Jun 2026
Viewed by 495
Abstract
With the development of the pet industry, public attention to pet food safety and nutritional health has been continuously increasing. Postbiotics were initially defined as inactivated microorganisms or microbial cellular components that confer health benefits to the host. Compared with probiotics, postbiotics possess [...] Read more.
With the development of the pet industry, public attention to pet food safety and nutritional health has been continuously increasing. Postbiotics were initially defined as inactivated microorganisms or microbial cellular components that confer health benefits to the host. Compared with probiotics, postbiotics possess superior safety and stability. They can effectively eliminate the potential risk of horizontal transfer of drug-resistant genes carried by live bacteria, and also feature better manufacturability and storage performance. At present, most research on postbiotics has focused on humans and large domestic animals, with relatively few applications in dogs and cats. This indicates that further research on postbiotics in canines and felines is still needed to better promote their practical application in promoting pet food health. This article provides a comprehensive review of the current research status of postbiotics, focusing on their potential benefits and mechanisms for pet health. It proposes that future studies should concentrate on in vivo experimental validation to clarify the safety, optimal dosage, and specific functions of postbiotics in companion animals. Such research will offer a scientific basis for the application of postbiotics in pet food formulations, ultimately promoting the health and welfare of pets. Full article
(This article belongs to the Special Issue Probiotics, Prebiotics and Pet Health)
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21 pages, 3138 KB  
Article
TP-CanineNet: Temporal Context Contrastive Learning with Pseudo-Label Supervision for Abnormal Behavior Detection of Canine
by Xiangyun Guo, Xiaoya Kong, Chuiyu Kong, Jiashuo Feng and Yuxin Liu
Animals 2026, 16(13), 1997; https://doi.org/10.3390/ani16131997 - 29 Jun 2026
Viewed by 397
Abstract
Canines exhibit various behavioral abnormalities, such as excessive barking, destructive behaviors, and indoor defecation when left at home alone. Identifying these abnormal behaviors and implementing scientific and reasonable interventions can help improve canine welfare and promote harmonious coexistence between humans and companion animals. [...] Read more.
Canines exhibit various behavioral abnormalities, such as excessive barking, destructive behaviors, and indoor defecation when left at home alone. Identifying these abnormal behaviors and implementing scientific and reasonable interventions can help improve canine welfare and promote harmonious coexistence between humans and companion animals. However, existing canine behavior recognition methods struggle to adapt to the characteristics of strong temporal continuity and uneven motion amplitude of abnormal behaviors exhibited by lonely dogs, resulting in inadequate temporal feature representation and low recognition accuracy. Therefore, this study developed a TP-CanineNet model based on a Weakly Supervised Video Anomaly Detection (WS-VAD) framework to address this issue. The model integrated a Temporal Context Aggregation (TCA) module to efficiently capture local–global temporal dependencies and suppress temporal noise, and further enhances the representation of temporal features in dog behaviors. Meanwhile, a Pseudo-Instance Discriminative Enhancement (PIDE) module is adopted to strengthen the feature distinction between abnormal and normal behaviors. We constructed an Alone-Dog dataset comprising 430 video samples and 60 ground-truth labeled samples to validate the model’s effectiveness. Experimental results showed that the proposed model achieved a frame-level AUC of 85.19% and an AP of 72.55%, representing improvements of 2.20% and 8.33%, respectively, over the baseline model. The method can provide intelligent detection of domestic dog behaviors when left alone at home. Full article
(This article belongs to the Section Companion Animals)
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7 pages, 459 KB  
Case Report
Detection of Anti-Orthopoxvirus Neutralizing Antibodies in Three Dogs and One Cat from a Household with a Confirmed Human Mpox Case in Brazil
by Mariella Sousa Coêlho Maciel, Adriana de Souza Andrade, Ana Luiza Neri de Oliveira, Silvia Hees de Carvalho, Giliane de Souza Trindade, Ana Gabriella Stoffella-Dutra, Erna Geessien Kroon, Mauricio Teixeira Lima and Marco Antônio Campos
Zoonotic Dis. 2026, 6(3), 26; https://doi.org/10.3390/zoonoticdis6030026 - 28 Jun 2026
Viewed by 474
Abstract
Mpox is a zoonotic infectious disease caused by the species Orthopoxvirus monkeypox (MPV), which is becoming an increasing public health concern. While human-to-human transmission of the virus is well established, the role of domestic animals in MPV infection remains poorly understood. Investigating how [...] Read more.
Mpox is a zoonotic infectious disease caused by the species Orthopoxvirus monkeypox (MPV), which is becoming an increasing public health concern. While human-to-human transmission of the virus is well established, the role of domestic animals in MPV infection remains poorly understood. Investigating how the virus is transmitted among humans, dogs, and cats can improve our understanding of the disease’s pathogenesis and help develop strategies to limit its dissemination during future outbreaks. In this study samples were collected from four domestic animals (three dogs and one cat) in May 2023. These animals lived in a household where a human mpox case had been confirmed by PCR in March 2023, approximately 2 months before animal sampling. A plaque reduction neutralization test (PRNT) using vaccinia virus was performed to detect anti-orthopoxvirus (OPV) neutralizing antibodies (nAbs). Our data demonstrated that anti-OPV nAbs were present in samples obtained from three dogs and one cat with neutralization titers ranging from 1:5 to 1:20. These results indicate that the domestic animals were exposed to OPVs after contact with an individual with confirmed mpox, suggesting possible human-to-animal transmission within a household. Nevertheless, due to the cross-reactive immune response among OPVs, and the endemic circulation of vaccinia virus in Brazil, it is not possible to determine the specific viral species based solely on PRNT results. Therefore, these serological findings should be interpreted as evidence of OPV’s exposure rather than confirmed MPV infection. Full article
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23 pages, 4391 KB  
Article
Characterization of the Oral Microbiome and Anticipated Functional Profiles of Companion Animals in Private and Cohabiting Environments: A Pilot Study
by Charinya So-In, Nisachon Chaowang, Phimchaya Srisomporn, Phiramada Anu-an, Supreeya Paiboon, Sirinan Thananchai, Charinthip Ninolo, Phitcharat Sunthamala, Sujira Maneerat, Sunanta Chuncher, Priyapa Najomtien, Surasak Khankhum and Nuchsupha Sunthamala
Animals 2026, 16(12), 1882; https://doi.org/10.3390/ani16121882 - 17 Jun 2026
Viewed by 514
Abstract
The intricate interaction of a host’s microbiome, the microbiomes of other hosts, and environmental microbial populations significantly impacts host health, given the essential physiological functions the microbiome performs within the organism. The oral microbiome of domesticated animals is also influenced by a variety [...] Read more.
The intricate interaction of a host’s microbiome, the microbiomes of other hosts, and environmental microbial populations significantly impacts host health, given the essential physiological functions the microbiome performs within the organism. The oral microbiome of domesticated animals is also influenced by a variety of host and environmental factors. This study investigated the characteristics of the oral microbiome of dogs and cats under comparable and disparate living conditions, emphasizing the description of diversity patterns, taxonomic composition, and predicted functional profiles. Oral buccal swabs were collected from four groups of companion animals (n = 5 per group): dogs housed alone in single-pet households (Group A), dogs cohabiting with cats in multi-pet households (Group B), cats cohabiting with dogs from the same households (Group C), and cats housed alone in single-pet households (Group D). The cohabiting groups were derived from five multi-pet households, with one dog and one cat sampled from each household. Amplicon sequence variations (ASVs) were used for downstream analysis after 16S rRNA gene sequencing. Rarefaction curve behavior indicated proper sequencing depth. Alpha diversity varied by group (Shannon index, p = 0.045), with Groups C and D having larger diversity. A Beta diversity study revealed community composition differences (Bray–Curtis dissimilarity, R2 = 0.257, p = 0.001), with some overlap between groupings. In all samples, Proteobacteria, Firmicutes, Bacteroidota, and Fusobacteriota dominated the microbiome. The relative abundance of Fusobacterium, Porphyromonas, and Pasteurella varied across groups. Core microbiome analysis identified limited overlap of core ASVs between groups, with most taxa being group-specific. Functional prediction using PICRUSt2 suggested differences in predicted metabolic and cellular pathways. Overall, these exploratory findings suggest that the oral microbiome of companion animals may be influenced by host species and cohabitation conditions. Although limited by the small sample size, the study provides preliminary insights into microbial diversity, community structure, and predicted functional profiles that may inform future One Health-oriented investigations. Full article
(This article belongs to the Section Companion Animals)
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19 pages, 1720 KB  
Article
Combining PCR and Metagenomic Approaches to Reveal Tick-Borne Pathogens in Ticks Collected from Livestock and Companion Animals in Cambodia
by Sony Yean, Didot Budi Prasetyo, Sovanncheypo Chao, Linavin Vuth, Matthieu Prot, Artem Baidaliuk, Sarah Bonnet, Etienne Simon-Loriere and Sébastien Boyer
Pathogens 2026, 15(6), 641; https://doi.org/10.3390/pathogens15060641 - 16 Jun 2026
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Abstract
In Cambodia, livestock production plays an important role in the national economy and food security, yet tick-borne diseases remain an underrecognized constraint on animal health and productivity. Domestic animals may also serve as reservoirs of zoonotic pathogens in this predominantly rural setting. To [...] Read more.
In Cambodia, livestock production plays an important role in the national economy and food security, yet tick-borne diseases remain an underrecognized constraint on animal health and productivity. Domestic animals may also serve as reservoirs of zoonotic pathogens in this predominantly rural setting. To address the lack of baseline molecular data on tick-borne pathogens in Cambodia, we conducted a cross-sectional study of ticks collected from November 2022 to April 2023 across 24 provinces. Ticks were collected from various hosts and environments, including cats, cattle, dogs, goats, pangolins, pythons, wild pigs, and bat cave floors, representing urban, rural, farm, wildlife rescue center, and forest fringe habitats. A total of 1526 ticks belonging to nine species were pooled into 352 samples and screened using conventional PCR (cPCR) targeting Anaplasma, Ehrlichia, Babesia, and Coxiella. Additionally, a subset of Rhipicephalus microplus ticks was analyzed using metatranscriptomic next-generation sequencing (NGS). Rhipicephalus microplus ticks collected from cattle tested positive for Anaplasma marginale (1.1% of pools) and Ehrlichia minasensis (0.9% of pools), whereas Rhipicephalus linnaei ticks collected from dogs were positive for Anaplasma platys (0.3% of pools) and Babesia canis (2.0% of pools). A high prevalence of Coxiella-like endosymbionts (15.6% of pools) was found in R. microplus from both cattle and goats. Metatranscriptomic analysis also identified six tick-associated viruses in R. microplus from cattle; with Guangdong tick manly virus being the most dominant (32.5% of samples); followed by Zhangzhou Totiv tick virus 1 (15.0%), Jingmen tick virus (5.0%), and Mogiana tick virus; Rhipicephalus-associated rhabdo-like virus; and Rhipicephalus-associated flavi-like virus; each at 2.5%. These findings provide the first molecular evidence of numerous bacterial, protozoal, and viral pathogens circulating in R. microplus and R. linnaei in Cambodia. The study highlights the need for integrated One Health surveillance to better understand, prevent, and control tick-borne diseases in the region. Full article
(This article belongs to the Special Issue Ticks and Tick-Borne Diseases in Southeast Asia)
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