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Search Results (121)

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22 pages, 2604 KB  
Article
A Comparative Species Framework to Identify Candidate Salivary miRNAs Associated with Breast Cancer Risk
by James L. Miller, Mariza DaCosta, Kimaya M. Bakhle, Lisa Lai, Dawn E. Post, Rebecca M. Harman and Gerlinde R. Van de Walle
Int. J. Mol. Sci. 2026, 27(14), 6198; https://doi.org/10.3390/ijms27146198 - 11 Jul 2026
Viewed by 396
Abstract
Accurate assessment of early indicators of breast cancer (BC) is critical to improve detection strategies and patient prognosis. Our research group takes a comparative species approach to study early BC detection by capitalizing on data from species with inherently low or high incidence [...] Read more.
Accurate assessment of early indicators of breast cancer (BC) is critical to improve detection strategies and patient prognosis. Our research group takes a comparative species approach to study early BC detection by capitalizing on data from species with inherently low or high incidence of mammary cancer to supplement rare human samples. Circulating microRNAs (c-miRNAs) are a promising class of molecules that have the potential to serve as biomarkers for BC risk and disease detection. The expression of these non-coding RNAs controls numerous cellular processes and their dysregulation is associated with various pathological conditions, including cancer. To explore whether c-miRNA expression profiles can identify individuals with early-stage BC, we conducted a multi-species pilot study. We analyzed biofluid samples (i.e., saliva, serum, and plasma) from patients with early-stage BC and patients with no prior history of cancer and mammosphere-derived epithelial cells (MDECs) from dogs (canines) and horses (equines), species with a relatively high and low incidence of mammary cancer, respectively. We identified 16 candidate c-miRNAs that were upregulated in saliva from patients in the early-stage BC group when compared to the control patient group. Notably, 6 of these c-miRNAs (i.e., miR-361, miR-148b, miR-205, miR-186, miR-223, and miR-197) were also found to be secreted at higher levels by canine MDECs when compared to equine MDECs. Although individual and combinatorial assessment of these six c-miRNAs in a larger human cohort did not confirm their potential association with early breast cancer detection, the data in this study do introduce a novel comparative framework in which species-to-species variation in cancer susceptibility may inform the identification of candidate biomarkers for human disease. Full article
(This article belongs to the Section Molecular Pathology, Diagnostics, and Therapeutics)
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18 pages, 240 KB  
Article
An Investigation of the Role of Ridden Exercise, Including Application of the Ridden Horse Pain Ethogram, in Pre-Purchase Examinations of Sports Horses
by Sue Dyson
Animals 2026, 16(13), 2105; https://doi.org/10.3390/ani16132105 - 7 Jul 2026
Viewed by 404
Abstract
Many horses undergo a pre-purchase examination (PPE) prior to acquisition by a new owner; however, despite evidence that lameness and canter dysfunction may only be apparent during ridden exercise, ridden exercises assessing gait quality is not a routine part of PPEs. The objectives [...] Read more.
Many horses undergo a pre-purchase examination (PPE) prior to acquisition by a new owner; however, despite evidence that lameness and canter dysfunction may only be apparent during ridden exercise, ridden exercises assessing gait quality is not a routine part of PPEs. The objectives were to determine the influence of the results of ridden exercise on decision-making concerning risk assessment for purchase and to establish the long-term performance of horses. Twenty-five sports horses underwent PPEs including ridden exercises to assess gait quality and to apply the Ridden Horse Pain Ethogram (RHpE). Follow-up information concerning performance was acquired from British Eventing, British Dressage, and British Showjumping. Eight horses were considered a reasonable risk for purchase, none of which showed lameness during ridden exercises. All had RHpE scores ≤ 4/24. Six of these horses fulfilled the purchaser’s expectations, all competing at a higher level than previously. One horse sustained a freak accident necessitating humane destruction. One horse developed lameness. Three horses with RHpE scores of 3 or 4/24 were considered suitable, but with reservations. None were purchased, and only one competed after an 18-months’ interval. The remaining horses were considered high risk, and the twelve that were ridden had a median RHpE score of 6/12 (interquartile range 5–7, range 4–16). Of these, six horses showed overt lameness when ridden and six had gait dysfunction. Only one horse continued in competition; three horses returned to competition after six to eighteen months. The study included only 25 horses evaluated over six months; however, this facilitated acquisition of accurate long-term follow-up information. In conclusion, there were benefits of evaluating ridden exercise, including the application of the RHpE and identification of lameness or canter dysfunction, during PPEs. Full article
(This article belongs to the Section Equids)
16 pages, 1739 KB  
Article
Seroprevalence, Risk Factors, and Environmental Correlates of Babesia caballi, Toxoplasma gondii, and Coxiella burnetii in Equids from Southwestern Greece
by Antonia Touloudi, Alexios Giannakopoulos, Panagiota Tyrnenopoulou, Athanasios Siasios, Zoi Athanasakopoulou, Garyfallenia Tsinopoulou, Marina Sofia, Vassiliki Spyrou, George C. Fthenakis, Charalambos Billinis and Dimitrios C. Chatzopoulos
Pathogens 2026, 15(7), 703; https://doi.org/10.3390/pathogens15070703 - 3 Jul 2026
Viewed by 911
Abstract
Equids, primarily horses, are mostly used for recreational purposes, although in some rural areas they also serve as working animals, maintaining close and frequent contact with humans. Their risk of exposure to vector-borne and zoonotic pathogens can be affected by host-related factors, management [...] Read more.
Equids, primarily horses, are mostly used for recreational purposes, although in some rural areas they also serve as working animals, maintaining close and frequent contact with humans. Their risk of exposure to vector-borne and zoonotic pathogens can be affected by host-related factors, management practices and environmental conditions. This study aimed to investigate the seroprevalence and associated risk factors for infections by Babesia caballi, Toxoplasma gondii, Coxiella burnetii, and Borrelia burgdorferi sensu lato in equids from Southwestern Greece. A total of 159 equids were tested using commercial serological assays. Weighted prevalence estimates were applied to account for unequal sampling. Associations were assessed using chi-square tests and logistic regression. Ecological niche modelling was employed to evaluate geographic patterns and environmental correlates. Seroprevalence was highest for B. caballi (8.81%), followed by T. gondii (7.55%) and C. burnetii (1.26%). No seropositive animals were detected for B. burgdorferi sensu lato. Ecological niche modelling showed acceptable predictive performance for B. caballi, with BIO14 and BIO6 emerging as the main environmental predictors. In contrast, the T. gondii model exhibited unacceptable predictive performance, and its environmental associations should therefore be interpreted cautiously. Complementary Random Forest analyses yielded comparable environmental rankings but showed higher classification performance for T. gondii than for B. caballi. Overall, the findings contribute to understanding pathogen exposure patterns in equids and underscore the importance of integrating epidemiological and environmental data in surveillance efforts. Full article
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30 pages, 6194 KB  
Review
Microplastics as Emerging One Health Threats: A Molecular and Ecotoxicological Review Across Aquatic Life with Emphasis on Fish
by Hriddhi Sarker, Goutam Saha, Awnon Bhowmik and Amlan Ganguly
Microplastics 2026, 5(2), 102; https://doi.org/10.3390/microplastics5020102 - 2 Jun 2026
Viewed by 795
Abstract
Microplastics (MPs) are increasingly detected environmental contaminants in both marine and freshwater ecosystems, with reported concentrations ranging from a few to thousands of particles per cubic meter depending on location and methodology. Although growing evidence suggests potential risks to aquatic organisms, the extent [...] Read more.
Microplastics (MPs) are increasingly detected environmental contaminants in both marine and freshwater ecosystems, with reported concentrations ranging from a few to thousands of particles per cubic meter depending on location and methodology. Although growing evidence suggests potential risks to aquatic organisms, the extent of their ecological and biological impacts is still under active investigation. Their size, persistence and capacity to transport chemical additives and co-contaminants allow them to enter biological systems by ingestion and respiration. When ingested, MPs cause oxidative stress, inflammation, and metabolic disorders, resulting in the destruction of vital tissues in major body organs including liver, gills, intestines, and brain. They also change gene expression, cause endocrine and immune pathway perturbation, induce apoptosis, and cause gut microbiome dysbiosis, all of which worsen the health and survival of the organism. MPs also serve as vectors of heavy metals, antibiotics, pesticides, and pathogens and enhance toxicity due to the Trojan horse effect and enable bioaccumulation in food webs. Due to their widespread presence in water, soil, air, and food, MP pollution has direct effects on human, animal, and ecosystem health. This review synthesizes current knowledge on the sources of MPs, the mode of exposure, and the mechanism of toxicity and new ecological implications. It also presents mitigation measures, and stresses a One Health paradigm as the key to taking concerted action on the international level to minimize MP pollution and protect both the environment and human health. Full article
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16 pages, 3190 KB  
Article
Genomic Characterisation of Antimicrobial Resistance and Virulence of Animal-Derived Klebsiella pneumoniae Isolates from Germany, and Description of a Hypervirulent Strain
by Marwa Bassiouny, Hanka Brangsch, Ivonne Stamm, Peter A. Kopp, Heinrich Neubauer and Lisa D. Sprague
Antibiotics 2026, 15(6), 556; https://doi.org/10.3390/antibiotics15060556 - 30 May 2026
Cited by 1 | Viewed by 780
Abstract
Background/Objectives: Klebsiella (K.) pneumoniae is a significant pathogen in both humans and animals. However, data on its occurrence in animals in Germany remain limited. This study aimed to investigate the antimicrobial resistance (AMR) phenotypes, AMR genes, and virulence traits of [...] Read more.
Background/Objectives: Klebsiella (K.) pneumoniae is a significant pathogen in both humans and animals. However, data on its occurrence in animals in Germany remain limited. This study aimed to investigate the antimicrobial resistance (AMR) phenotypes, AMR genes, and virulence traits of animal-derived K. pneumoniae isolates from Germany. Methods: A total of 59 K. pneumoniae isolates obtained in 2023 from dogs, cats, horses, cattle, and chickens across 11 German federal states were analysed. Phenotypic antimicrobial susceptibility testing (AST) was performed, and whole-genome sequencing (WGS) was used for genomic characterisation, including detection of AMR genes, virulence-associated genes, sequence types (STs), and plasmid replicons. Results: Most isolates (78%) were susceptible to all tested antibiotics, while three isolates were classified as multidrug-resistant (MDR). Resistance was most frequently observed for piperacillin (n = 8) and trimethoprim/sulfamethoxazole (n = 4). Carbapenem resistance was detected in two isolates (one from a dog and one from a cat), and phenotypic colistin resistance in one dog isolate. WGS identified 96 AMR genes across isolates, with 20–42 AMR determinants per isolate, conferring resistance to β-lactams, aminoglycosides, fluoroquinolones, sulfonamides, tetracyclines, trimethoprim, and fosfomycin. Ten extended-spectrum β-lactamase (ESBL)-producing isolates carried genes including blaCTX-M-15, blaSHV-2, blaSHV-27, blaSHV-42, blaSHV-106, and blaTEM-158. Although fosA was detected in all isolates, only three exhibited phenotypic resistance to fosfomycin. A total of 52 STs were identified, including high-risk clones. One hypervirulent isolate (ST60) carrying hypervirulence-associated genes rmpA and iroB was detected. Plasmid replicons were present in 70% of isolates, while plasmid-associated AMR genes were identified in nine isolates. Conclusions: This study demonstrates the genomic diversity of K. pneumoniae identified in companion animals and highlights the presence of AMR and virulence determinants relevant to a One Health context. Full article
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13 pages, 1276 KB  
Review
Autochthonous Leishmaniosis in Dogs, Cats, Horses, and Wildlife in the United States of America
by Chaoqun Yao, Yi Yang and Aifang Du
Microorganisms 2026, 14(4), 930; https://doi.org/10.3390/microorganisms14040930 - 20 Apr 2026
Viewed by 528
Abstract
Leishmaniasis is endemic in 99 countries worldwide, including the United States of America (USA). Its causative pathogens, Leishmania spp. have been detected in both humans and animals within the USA. Lately, we have comprehensively reviewed autochthonous leishmaniasis in humans in this region. Animals [...] Read more.
Leishmaniasis is endemic in 99 countries worldwide, including the United States of America (USA). Its causative pathogens, Leishmania spp. have been detected in both humans and animals within the USA. Lately, we have comprehensively reviewed autochthonous leishmaniasis in humans in this region. Animals play a pivotal role in maintaining its endemicity in some endemic areas and regions, for example, dogs in Brazil and the Mediterranean. In this review, we thoroughly examine autochthonous leishmaniosis in dogs, cats, horses, and wildlife in the USA, and we synthesize integration across species, transmission pathways, the crucial roles the animals play, and the potential risk they pose to humans. The information is essential for public health and for the effective control and management of leishmaniasis through expanding reservoir and vector surveillance using One-Health approaches in the USA. Full article
(This article belongs to the Section Veterinary Microbiology)
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20 pages, 509 KB  
Review
West Nile Virus in Europe: Epidemiology, Vector Ecology, Environmental Drivers, and the Role of Equine Sentinel Surveillance in a One Health Framework
by Paula Nistor, Livia Stanga, Vlad Iorgoni, Razvan Grigore Cojocaru, Alexandru Gligor, Alexandru Ciresan, Bogdan Florea, Vlad Cocioba, Ionica Iancu, Horia Iorgoni, Cristian Zaha, Cosmin Horatiu Maris and Viorel Herman
Pathogens 2026, 15(3), 298; https://doi.org/10.3390/pathogens15030298 - 10 Mar 2026
Cited by 2 | Viewed by 1783
Abstract
West Nile virus (WNV) is a mosquito-borne flavivirus that remains an important public and veterinary health concern across Europe. Periodic outbreaks affecting humans, horses, and wildlife highlight the complex ecological interactions underlying viral circulation. This narrative review aims to synthesize current knowledge regarding [...] Read more.
West Nile virus (WNV) is a mosquito-borne flavivirus that remains an important public and veterinary health concern across Europe. Periodic outbreaks affecting humans, horses, and wildlife highlight the complex ecological interactions underlying viral circulation. This narrative review aims to synthesize current knowledge regarding WNV epidemiology, transmission dynamics, and surveillance strategies in Europe, with particular attention to the Romanian context. Available surveillance data indicate recurrent seasonal transmission in several European regions; however, reported case numbers may be influenced by differences in diagnostic capacity, reporting practices, and surveillance intensity among countries. Recent studies suggest that environmental variability, vector adaptation, and host community composition play important roles in shaping regional transmission risk, although the relative contribution of these factors remains incompletely quantified. Despite expanding surveillance networks and One Health initiatives, important knowledge gaps persist regarding the integration of environmental risk indicators, vector ecology, and operational preparedness into coherent risk-assessment frameworks. This review therefore examines current epidemiological patterns, evaluates surveillance approaches, and discusses emerging drivers of WNV transmission in Europe. As a narrative synthesis based on published literature and surveillance reports, this review is subject to limitations related to heterogeneity in available data and differences in national reporting systems. Nevertheless, a clearer understanding of these interacting factors may support improved surveillance strategies and more adaptive public health responses to future WNV transmission events. Reported surveillance data should be interpreted cautiously, as differences in national surveillance intensity, diagnostic capacity, and reporting frameworks across Europe may influence notified case numbers. Consequently, reported outbreaks do not necessarily reflect proportional differences in transmission intensity. Full article
(This article belongs to the Special Issue Epidemiology and Molecular Diagnosis of Vector-Borne Diseases)
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13 pages, 833 KB  
Review
Reframing West Nile Virus in Latin America: From Enzootic Evidence to Human Risk—Surveillance Gaps and One Health Actions
by Juan S. Izquierdo-Condoy, Janeth C. Gil, Jhan. S. Saavedra-Torres, H. A. Nati-Castillo, Juan Jose Martinez Penaranda, Carolina Vásquez Narváez, Andrés López-Cortés, Marlon Arias-Intriago and Esteban Ortiz-Prado
Viruses 2026, 18(3), 281; https://doi.org/10.3390/v18030281 - 26 Feb 2026
Viewed by 1806
Abstract
West Nile virus (WNV) is a mosquito-borne flavivirus with one of the widest global distributions. Since its discovery in Uganda in 1937, it has become a major zoonotic pathogen, and after its introduction into the United States in 1999, it spread rapidly across [...] Read more.
West Nile virus (WNV) is a mosquito-borne flavivirus with one of the widest global distributions. Since its discovery in Uganda in 1937, it has become a major zoonotic pathogen, and after its introduction into the United States in 1999, it spread rapidly across the Americas, becoming the leading cause of neuroinvasive arboviral disease. Its expansion illustrates a remarkable ecological adaptability, further intensified by climate change. In Latin America and the Caribbean, WNV circulation has been consistently documented in birds, horses, and mosquitoes; however, confirmed human cases remain disproportionately scarce compared with North America and Europe. Reports include sporadic human cases in Brazil (>100 since 2014), Mexico (~13), Argentina (2006–2007), Puerto Rico (2007), Nicaragua, and Haiti, while animal and vector evidence extends to Guatemala, El Salvador, Belize, Costa Rica, Bolivia, Paraguay, Colombia, Venezuela, Cuba, and Ecuador. This paradox likely reflects structural limitations within regional health systems, including underdiagnosis, restricted diagnostic capacity, and significant surveillance gaps, particularly in contexts where mild febrile syndromes may be misclassified as dengue, Zika, or Chikungunya. The regional risk of emergence is further amplified by climatic variability, ecological change, and intensifying human–wildlife interactions. Experiences from Europe highlight the importance of early detection, transfusion safety, and integrated surveillance within a One Health framework. Strengthening preparedness in Latin America will require investments in diagnostic infrastructure, implementation of standardized seroepidemiological surveys, development of predictive models tailored to local ecological contexts, and robust intersectoral collaboration. Full article
(This article belongs to the Special Issue Current Trends in Arbovirus Outbreaks and Research)
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17 pages, 3569 KB  
Article
Complete Neutralization of Tetanus Neurotoxin by Alpaca-Derived Trivalent Nanobodies Aimed at Veterinary Medical Applications
by Chiyomi Sakamoto, Chie Shitada, Norihiko Kiyose, Nobuo Miyazaki, Sena Kamesawa, Hiroshi Morioka, Kazunori Morokuma, Kazuhiko Tomokiyo and Motohide Takahashi
Vet. Sci. 2026, 13(1), 98; https://doi.org/10.3390/vetsci13010098 - 19 Jan 2026
Viewed by 1098
Abstract
Tetanus is a zoonotic disease posing significant threats to both humans and animals, particularly horses, sheep, and ruminants. Current antitoxin therapies rely on animal-derived immunoglobulins, presenting challenges including animal welfare concerns, pathogen contamination risks, and manufacturing complexity. Alpaca-derived nanobodies (VHH) are promising alternatives [...] Read more.
Tetanus is a zoonotic disease posing significant threats to both humans and animals, particularly horses, sheep, and ruminants. Current antitoxin therapies rely on animal-derived immunoglobulins, presenting challenges including animal welfare concerns, pathogen contamination risks, and manufacturing complexity. Alpaca-derived nanobodies (VHH) are promising alternatives owing to their high antigen-binding affinity, thermostability, and potential for microbial production. We developed highly active trivalent VHH antibodies (tVHH) that target multiple epitopes of tetanus neurotoxin (TeNT). Following alpaca immunization with tetanus toxoid, 41 VHH clones were isolated using phage display. Six VHH clones were selected through in vivo neutralization assays, from which three clones of VHH (8, 11, 36) were selected to construct tVHH-8/11/36 and tVHH-8/36/11. Using an improved 21-day mouse neutralization assay, tVHH-8/11/36 demonstrated exceptional neutralizing activity of approximately 1580 IU/mg against 4000 LD50 of toxin, substantially exceeding current human and veterinary anti-tetanus immunoglobulin preparations. Surface plasmon resonance and ELISA confirmed that each VHH recognizes different TeNT domains, producing synergistic neutralizing effects through multimerization. Since antitoxin therapy challenges are common to both animals and humans, this tVHH technology supports One Health by providing a unified therapeutic platform applicable across species through sustainable microbial production. Full article
(This article belongs to the Section Veterinary Microbiology, Parasitology and Immunology)
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12 pages, 954 KB  
Review
The Dual Nature of Sinoatrial Node Remodelling in Athletes: A Systematic Review of Electrophysiological Adaptations and the Pathological Tipping Point
by Liang Yue, Jiaying Li, Hui Wang, Shuang Li and Henggui Zhang
Int. J. Mol. Sci. 2025, 26(24), 12052; https://doi.org/10.3390/ijms262412052 - 15 Dec 2025
Viewed by 893
Abstract
The “athlete’s heart” phenotype, featuring resting bradycardia, has traditionally been viewed as a benign adaptation. However, emerging evidence associates prolonged, high-intensity endurance training with an increased risk of clinical sinoatrial node dysfunction. This systematic review synthesizes evidence on exercise-induced intrinsic Sinoatrial Node (SAN) [...] Read more.
The “athlete’s heart” phenotype, featuring resting bradycardia, has traditionally been viewed as a benign adaptation. However, emerging evidence associates prolonged, high-intensity endurance training with an increased risk of clinical sinoatrial node dysfunction. This systematic review synthesizes evidence on exercise-induced intrinsic Sinoatrial Node (SAN) electrophysiological remodelling and evaluates its dual nature along the adaptation–pathology continuum. Following PRISMA guidelines, a systematic search of PubMed, Web of Science, and Google Scholar (2000–2025) identified 17 eligible studies. Analysis revealed that in humans, rodents, and rabbits, exercise induces intrinsic SAN electrophysiological remodelling—a “membrane clock” reset characterized by coordinated downregulation of pacemaker currents, notably Hyperpolarization-activated cyclic nucleotide-gated cation channel (If), via the Nkx2.5-miR-423-5p transcription factor pathway. Evidence for “calcium clock” involvement remains inconsistent. In contrast, large animal models (e.g., dogs, horses) show only parasympathetic-mediated bradycardia without intrinsic remodelling. Training loads may induce structural changes (e.g., fibrosis), providing an anatomical substrate for pathology. Moderating factors such as training type and ageing contribute to a phenotype of “acquired SAN reserve reduction. Exercise-induced intrinsic SAN remodelling is a physiological adaptation mechanism that, under certain conditions, can cross a threshold to become a pathological cause of clinical dysfunction. Recognizing this continuum is essential for risk stratification and future therapeutic innovation. Full article
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32 pages, 1703 KB  
Article
Sentinel Equines in Anthropogenic Landscapes: Bioaccumulation of Heavy Metals and Hematological Biomarkers as Indicators of Environmental Contamination
by Maria Popescu, Mirela Alexandra Tripon, Alexandru Florin Lupșan, Denisa Bungărdean, Cristian Mihăiță Crecan, Mihai Musteata, Paula Maria Pașca, Sorin Marian Mârza, Rober Cristian Purdoiu, Ionel Papuc, Radu Lăcătuș, Caroline Maria Lăcătuș, Luciana Cătălina Panait, Teodora Sonia Patrichi, Ileana-Rodica Matei, Cristian-Radu Sisea, Claudiu Ioan Bunea, Anamaria Călugăr, Ioan Valentin Petrescu-Mag, Zsofia Daradics and Florin-Dumitru Boraadd Show full author list remove Hide full author list
Toxics 2025, 13(12), 1064; https://doi.org/10.3390/toxics13121064 - 9 Dec 2025
Cited by 1 | Viewed by 1230
Abstract
Environmental contamination with heavy metals, resulting from industrialization, urbanization, and agricultural intensification, poses serious ecological and health risks. Horses, due to their grazing behavior and close association with human environments, serve as reliable sentinel species for assessing environmental pollution. This study aimed to [...] Read more.
Environmental contamination with heavy metals, resulting from industrialization, urbanization, and agricultural intensification, poses serious ecological and health risks. Horses, due to their grazing behavior and close association with human environments, serve as reliable sentinel species for assessing environmental pollution. This study aimed to evaluate the bioaccumulation of heavy metals and trace elements in different biological matrices of horses—blood, hair, hooves, and synovial fluid—and to investigate their relationship with hematological biomarkers as indicators of physiological stress. Samples were collected from horses raised in anthropogenically influenced areas and analyzed using inductively coupled plasma mass spectrometry (ICP–MS). Hematological parameters were determined with an automated analyzer to assess systemic effects. The results revealed significant variations in metal concentrations among matrices, with keratinized tissues reflecting long-term exposure, while blood and synovial fluid indicated recent contamination. Correlations between elevated metal levels and altered hematological values suggested oxidative stress and adaptive physiological responses. These findings demonstrate the value of multi-matrix biomonitoring in evaluating both environmental quality and animal health. Horses effectively reflect the cumulative impact of heavy metal exposure, supporting their role as bioindicators within a One Health framework that links environmental, animal, and human well-being. Full article
(This article belongs to the Section Exposome Analysis and Risk Assessment)
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14 pages, 2667 KB  
Article
Mosquito Exposure Risks in Equine Facilities: An Environmental–Managerial Assessment in Western Romania
by Paula Nistor, Livia Stanga, Andreia Chirila, Vlad Iorgoni, Alexandru Gligor, Alexandru Ciresan, Bogdan Florea, Carina Bota, Vlad Cocioba, Ionela Popa, Gabriel Orghici, Ionica Iancu, Cosmin Horatiu Maris, Janos Degi and Viorel Herman
Microorganisms 2025, 13(11), 2637; https://doi.org/10.3390/microorganisms13112637 - 20 Nov 2025
Cited by 3 | Viewed by 1035
Abstract
West Nile Virus (WNV) is a mosquito-borne zoonosis with recurrent equine and human cases in Romania. Horses, although dead-end hosts, act as sentinels for local viral circulation. Farm-level risk conditions remain under-characterized. This pilot, exploratory cross-sectional study assessed 42 equine facilities in western [...] Read more.
West Nile Virus (WNV) is a mosquito-borne zoonosis with recurrent equine and human cases in Romania. Horses, although dead-end hosts, act as sentinels for local viral circulation. Farm-level risk conditions remain under-characterized. This pilot, exploratory cross-sectional study assessed 42 equine facilities in western Romania (2024). A standardized 10-item checklist was applied and a Composite Environmental Risk Score (CERS) (0–10, unweighted) was computed per facility. Spatial analysis in QGIS included distances to nearby water bodies. No serological or entomological data were collected; these are recommended for future validation. Stagnant water occurred at 71.4% (30/42) of facilities, uncovered rain-collecting containers at 64.3% (27/42), and outdoor housing of horses at 81.0% (34/42). Insect screens were present at 21.4% (9/42) and chemical/biological control at 33.3% (14/42). By design, the CERS ranged from 0 to 10; in our sample the observed range was 0–8 because not all assessed risk conditions co-occurred across sites. Overall, 42.9% (18/42) were classified as high risk (≥6). Neurological signs were reported anecdotally by some managers but were not analyzed. Mosquito-favorable conditions are widespread in Romanian equine facilities. CERS shows promise as a low-cost, rapid tool for routine facility-level assessment of environmental conditions favoring mosquito presence and prioritization of preventive actions. Integrating environmental risk scoring with entomological and serological surveillance could strengthen One Health early-warning systems. Such integration would support prevention of WNV and other mosquito-borne zoonotic pathogens in endemic European settings. Full article
(This article belongs to the Special Issue Epidemiology of Zoonotic Pathogens)
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10 pages, 548 KB  
Article
Analysis of Staphylococcal Diversity in the Skin Microbiota of Healthy Riding Horses
by Maria Wesołowska and Ewa Szczuka
Antibiotics 2025, 14(10), 1037; https://doi.org/10.3390/antibiotics14101037 - 16 Oct 2025
Cited by 2 | Viewed by 1180
Abstract
Background: In animals, staphylococci constitute a significant part of the normal skin microbiota and mucous membranes. There is limited information available on staphylococci isolated from healthy horses. These skin-associated bacteria can be easily transferred between animals and horse riders via direct contact. Patients [...] Read more.
Background: In animals, staphylococci constitute a significant part of the normal skin microbiota and mucous membranes. There is limited information available on staphylococci isolated from healthy horses. These skin-associated bacteria can be easily transferred between animals and horse riders via direct contact. Patients undergoing hippotherapy (i.e., medical or therapeutic sessions with horses) are especially at risk of being colonized by horse skin-associated bacteria. However, it remains unclear whether equine skin is colonized by antimicrobial-resistant (AMR) opportunistic pathogens, which may be of concern to human health. Methods: We cultivate staphylococci from samples collected from healthy, non-vet-visiting horses who live on private farms in a rural area. In total, 61 strains were isolated and identified at the species level using matrix-assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF MS). Results: The diversity of Staphylococcus species in the equine skin microbiota was relatively high and, with the exception of S. aureus, all the other recovered strains were coagulase-negative staphylococci (CoNS). In total, eleven different staphylococcal species were identified: S. xylosus, S. sciuri, S. vitulinus, S. equorum, S. succinus, S. nepalensis, S. lentus, S. fleurettii, S. aureus, S. chromogenes, and S. simulans. Conclusions: These results indicate that healthy equine skin is colonized by opportunistic pathogens that can be causative agents of infections that are also severe in humans. The resistance among the isolated strains was observed in eight antimicrobials of the total tested and 36% (22/61) of the isolates were resistant to at least one antimicrobial. However, their resistance to critically important antibiotics used in human medicine was low. Seven isolates (11.5%; 7/61) were classified as multidrug-resistant (MDR). S. aureus (1/61) showed MDR and was methicillin-resistant. The S. aureus isolate contained genes conferring resistance to antibiotics, i.e., β-lactams (blaZ, mecA), aminoglycosides (aac(6′)/aph(2″)), and macrolide–lincosamide–streptogramin B (erm(B), erm(C), and lun(A/B)). Also CoNS harbored genes conferring resistance to β-lactams (blaZ), aminoglycosides (aac(6′)/aph(2″), ant(4′)-Ia), MLSB (erm(B), erm(C), lun(A/B)), and tetracycline (tetK, tetL). Full article
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15 pages, 1374 KB  
Article
Determination of Microplastic Pollution in Commercial Fish in the Middle Black Sea (Samsun), Türkiye
by Arife Şimşek
Toxics 2025, 13(10), 865; https://doi.org/10.3390/toxics13100865 - 12 Oct 2025
Cited by 6 | Viewed by 2788
Abstract
This study aimed to determine the presence and characteristics of microplastics (MPs) in six commercially important fish species in Samsun city of, the Middle Black Sea Region: rainbow trout–Turkish salmon (Oncorhynchus mykiss), European seabass (Dicentrarchus labrax), gilthead seabream ( [...] Read more.
This study aimed to determine the presence and characteristics of microplastics (MPs) in six commercially important fish species in Samsun city of, the Middle Black Sea Region: rainbow trout–Turkish salmon (Oncorhynchus mykiss), European seabass (Dicentrarchus labrax), gilthead seabream (Sparus aurata), red mullet (Mullus barbatus), horse mackerel (Trachurus mediterraneus), and whiting (Merlangius merlangus). The digestive systems of each species were examined, and MPs were classified according to their morphology, size, color, and polymer type. The analysis revealed that the number of MPs per individual ranged from 4.73 ± 1.13 to 9.26 ± 2.18, with the highest value found in rainbow trout and the lowest in whiting. MPs smaller than 100 µm were dominant (48.9%), and fiber (45.7%) and fragment (36.5%) types were the most common morphologies observed. Black and white/transparent colors were prominent in terms of color distribution, and ATR-FTIR analysis showed a dominance of widely used consumer plastics, such as polypropylene (PP, 31.3%) and polyethylene (PE, 23.9%). Scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy (SEM/EDS) results confirmed the presence of irregular, fibrous, and fragmented structures at microscopic scale, consistent with microplastic morphology. These findings indicate a potential risk of microplastic pollution in the region for both marine biota and human consumption. The study fills a significant data gap regarding the Middle Black Sea ecosystem and provides a foundation for future monitoring and risk assessment research. Full article
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Communication
Molecular Detection of Leishmania (V.) braziliensis and Leishmania (M.) martiniquensis Infecting Domestic Animals from Panama, Central America
by Vanessa Pineda, Jose E. Calzada, Santiago Montilla, Indra Rodríguez, Erika Howard, Alicia I. Torres, Vanessa Vasquez, Adelys Reina, Azael Saldaña and Kadir González
Animals 2025, 15(18), 2677; https://doi.org/10.3390/ani15182677 - 12 Sep 2025
Cited by 2 | Viewed by 1432
Abstract
Cutaneous leishmaniasis (CL) is a vector-borne zoonotic disease affecting the skin and mucous membranes of animals and humans. While CL is commonly diagnosed and studied in humans in Panama, limited information exists on its occurrence in domestic animals and their potential role as [...] Read more.
Cutaneous leishmaniasis (CL) is a vector-borne zoonotic disease affecting the skin and mucous membranes of animals and humans. While CL is commonly diagnosed and studied in humans in Panama, limited information exists on its occurrence in domestic animals and their potential role as reservoirs. In this study, samples from twelve domestic animals (ten dogs and two horses) with suspected CL lesions were collected between 2021 and 2025 in endemic regions of Panama and evaluated using multiple diagnostic methods. Leishmania infection was confirmed in six of them (50%): five dogs and one horse. Three dogs were infected with Leishmania (Viannia) braziliensis, representing the first molecularly confirmed cases of this species in dogs from Panama and Central America. Two dogs tested positive for Leishmania (Leishmania) infantum, though epidemiological evidence suggests these were imported cases. Notably, Leishmania (Mundinia) martiniquensis was identified in a horse, marking the first report of this species in equines in Central America. These findings indicate a broader diversity of Leishmania species circulating in domestic animals than previously recognized and highlight their potential role in sustaining transmission cycles. The study underscores the need for enhanced surveillance of animal reservoirs to better understand the epidemiology and public health risks of CL in Panama. Full article
(This article belongs to the Special Issue Leishmania Infection in Animals)
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