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21 pages, 21904 KB  
Article
Effects of Dietary Protein and Starch Digestion Rates on Jejunal and Cecal Microbial Community States and Feed Efficiency in Raccoon Dogs
by Weixiao Nan, Runyu Jiang, Xing Duan, Sibo Chen, Shaochen Yu, Ruijia Deng, Yunxi Zhang, Daozhi Wang, Haoxuan Xu, Zhipeng Li and Huazhe Si
Animals 2026, 16(16), 2549; https://doi.org/10.3390/ani16162549 - 15 Aug 2026
Viewed by 59
Abstract
Feed efficiency remains a significant challenge in farmed raccoon dogs, and performance differences can occur even when diets are formulated with similar nutrient levels. Beyond nutrient concentrations, digestion kinetics can alter the timing of carbon and nitrogen availability along the gastrointestinal tract, thereby [...] Read more.
Feed efficiency remains a significant challenge in farmed raccoon dogs, and performance differences can occur even when diets are formulated with similar nutrient levels. Beyond nutrient concentrations, digestion kinetics can alter the timing of carbon and nitrogen availability along the gastrointestinal tract, thereby influencing microbial assembly in a segment-specific way. Twenty 2-month-old male raccoon dogs (Nyctereutes procyonoides) were divided into four dietary groups (n = 5) in a 2 × 2 factorial design. The design combined protein-source formulations containing either soybean cake or dried distillers grains with solubles and starch-source formulations based primarily on either extruded corn or high-amylose corn starch, representing relatively rapid and slow expected digestion characteristics, respectively. The purpose was to assess how digestion-rate synchronization affects jejunal and cecal microbiota structure and whether community state types (CSTs) link diet and feed efficiency. Growth performance varied modestly among treatments, with group B showing the lowest feed-to-gain ratio (F/G) and highest average daily gain (ADG). Starch source significantly affected ADG, while protein and protein × starch interaction influenced F/G. Microbiota profiles were strongly segment-dependent: the cecum had higher richness and diversity than the jejunum. Two-way analyses and Bray–Curtis ordinations showed that the jejunal community was primarily associated with the protein × starch interaction, whereas the cecal community was associated mainly with the protein-source factor and the protein × starch interaction. Network analysis revealed more complex and densely connected microbial communities in the cecum, with core genera occupying central positions. Dirichlet multinomial mixture modeling, performed independently for each intestinal segment, identified two jejunal community states (J-CST1 and J-CST2) and two cecal community states (C-CST1 and C-CST2). J-CST1 and J-CST2 represented alternative lactic acid bacteria-dominated configurations, with J-CST2 enriched in Lactobacillus and J-CST1 characterized by higher abundances of Streptococcus and Bacillus. C-CST2 was represented predominantly by samples from group B and was characterized by higher abundances of Segatella and taxa affiliated with Bacteroidota and Lachnospiraceae. Predicted functional profiles differed between CSTs, involving pathways related to carbohydrate, amino acid, lipid, and bile acid metabolism. Mediation analysis did not provide consistent evidence of significant indirect effects for J-CST membership, whereas C-CST membership was associated with significant estimated indirect effects on final body weight, ADG, and F/G. These findings suggest that dietary protein- and starch-source combinations with different expected digestion characteristics drive segment-specific microbial patterns. Supported by taxonomic, network and functional evidence, cecal CSTs act as an intermediate ecological phenotype that partially explains the variation in growth efficiency, highlighting hindgut community states as potential targets for personalized nutrition of raccoon dogs. Full article
(This article belongs to the Section Animal Nutrition)
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23 pages, 19643 KB  
Article
Experimental Immunogenicity and Multi-Region Field Performance of a Briquette-Formulated Oral Rabies Vaccine Bait in Kazakhstan
by Dariya Toktyrova, Ruslan Abitayev, Abdurakhman Ussembay, Zhanat Amanova, Zhanna Sametova, Sholpan Turyskeldy, Zhanat Kondibayeva, Alina Kurmasheva, Zhumagali Koshemetov, Gourapura J. Renukaradhya, Aida Kistaubayeva, Dana Mazbayeva and Yerbol Bulatov
Biology 2026, 15(16), 1374; https://doi.org/10.3390/biology15161374 - 12 Aug 2026
Viewed by 415
Abstract
Wildlife reservoirs sustain rabies transmission despite vaccination of domestic animals, highlighting the need for oral rabies vaccination strategies adapted to contrasting ecological settings. We conducted a pilot multi-region field evaluation of a locally developed briquette-formulated oral rabies vaccine bait at purposively selected sites [...] Read more.
Wildlife reservoirs sustain rabies transmission despite vaccination of domestic animals, highlighting the need for oral rabies vaccination strategies adapted to contrasting ecological settings. We conducted a pilot multi-region field evaluation of a locally developed briquette-formulated oral rabies vaccine bait at purposively selected sites in four regions of Kazakhstan during 2025–2026. Overall, 9256 baits were deployed, including 4556 placed manually and 4700 distributed by aircraft. Among the manually monitored baits, apparent uptake was 57.2% (2604/4556) and ranged from 11.3% to 75.3% among region-campaign groups. Recovered baits retained their structural integrity following a controlled aerial test drop. Tetracycline fluorescence was detected in seven of ten free-ranging foxes, and six had rabies virus-neutralising antibody titres of ≥0.5 IU/mL. Following controlled oral administration of a single bait, all six initially seronegative captive red foxes and four of five captive raccoons met the predefined seroconversion criterion. These findings support the operational field feasibility of the briquette-formulated bait across contrasting selected landscapes and demonstrate oral immunogenicity under controlled conditions. The observed variation in apparent uptake indicates that bait distribution strategies should be adapted to local wildlife ecology and deployment conditions. Full article
(This article belongs to the Section Infection Biology)
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8 pages, 1963 KB  
Case Report
Primary Spontaneous Orbital Hemorrhage with Secondary Orbital Roof Blow-Out Fracture: A Case Report
by Nagi A. Massoud, Mohamed Mahmoud Bakr, Abdulrahman H. Alashkar and Mohamed Ghazala
Reports 2026, 9(3), 247; https://doi.org/10.3390/reports9030247 - 31 Jul 2026
Viewed by 246
Abstract
Background and Clinical Significance: Periorbital ecchymosis, or “raccoon eyes,” often indicates a basilar skull fracture. When trauma is absent, clinicians should consider other causes, such as Valsalva maneuvers, bleeding disorders, or systemic inflammation. Spontaneous orbital hemorrhage is rare, and its appearance as [...] Read more.
Background and Clinical Significance: Periorbital ecchymosis, or “raccoon eyes,” often indicates a basilar skull fracture. When trauma is absent, clinicians should consider other causes, such as Valsalva maneuvers, bleeding disorders, or systemic inflammation. Spontaneous orbital hemorrhage is rare, and its appearance as a mass causing a secondary orbital roof blow-out fracture is even more unusual. This report presents a unique case of primary spontaneous orbital hemorrhage (PSOH) leading to a secondary orbital blow-out fracture; Case Presentation: A 60-year-old man with a history of ulcerative colitis (UC) presented with acute-onset, non-traumatic, and bilateral periorbital bruising, swelling, and right-sided vision loss. Computed tomography (CT) showed a mass lesion in the right orbit with an associated orbital roof fracture. Following excision, histological examination showed extravasated blood. Additional laboratory work-up helped rule out possible hematologic and inflammatory etiologies, confirming a diagnosis of PSOH with a secondary orbital roof fracture; Conclusions: This case demonstrates that PSOH can generate sufficient intra-orbital pressure (IOP) to cause a secondary blow-out fracture, a phenomenon not previously reported in the literature. Furthermore, it emphasizes the need for a systematic diagnostic approach to exclude potential systemic etiologies in patients presenting with spontaneous periorbital ecchymosis. In addition, this case highlights the critical importance of rapid decompression in managing orbital compartment syndrome (OCS) to prevent permanent visual loss. Full article
(This article belongs to the Section Surgery)
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13 pages, 1437 KB  
Article
SARS-CoV-2 Surveillance in Free-Ranging Wildlife in New England and Virginia, United States, 2022–2025
by Idrissa Nonmon Sanogo, Wendy B. Puryear, Alexa F. Simulynas, Elena Cox, Maureen Murray, Zain Khalil, Harm van Bakel, Martin J. R. Feehan, Zak Mertz, Priya Patel, Jennifer Riley, Blaine Hymel and Jonathan A. Runstadler
Viruses 2026, 18(8), 832; https://doi.org/10.3390/v18080832 - 29 Jul 2026
Viewed by 413
Abstract
Since its emergence in 2019, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has infected a wide range of animal species, including wildlife. Although SARS-CoV-2 infection has been widely reported in wildlife, particularly in white-tailed deer (WTD; Odocoileus virginianus) across the United States, [...] Read more.
Since its emergence in 2019, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has infected a wide range of animal species, including wildlife. Although SARS-CoV-2 infection has been widely reported in wildlife, particularly in white-tailed deer (WTD; Odocoileus virginianus) across the United States, data on viral circulation in New England wildlife remain limited. Here, we investigated active SARS-CoV-2 infection and serological evidence of previous exposure in free-ranging wildlife from New England and Virginia. We examined samples from 1646 animals representing 29 wildlife species, collected through wildlife rehabilitation centers, clinics, and hunter harvests in New England and Virginia between 2022 and 2025. SARS-CoV-2 RNA was detected in three WTD from Massachusetts and Vermont. Phylogeographic analysis showed that the Vermont WTD SARS-CoV-2 sequences were closely related to contemporaneous human SARS-CoV-2 sequences from the same region, consistent with a possible human-to-deer spillover event. Serological screening by ELISA detected SARS-CoV-2 reactive samples in nine individuals from three species, including Eastern cottontail (Sylvilagus floridanus), Eastern coyote (Canis latrans), and raccoon (Procyon lotor), providing putative evidence of prior SARS-CoV-2 exposure. However, neutralizing antibodies against the SARS-CoV-2 Omicron variant were detected in only a single Eastern cottontail. Overall, these findings indicate sporadic SARS-CoV-2 detection and limited serological evidence of prior exposure among wildlife sampled in New England and Virginia, and highlight the importance of continued surveillance to detect spillover events, monitor viral evolution, and assess the potential risks associated with wildlife reservoirs. Full article
(This article belongs to the Special Issue Molecular Epidemiology of SARS-CoV-2, 4th Edition)
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16 pages, 8698 KB  
Article
Depot-Specific White Adipose Tissue Remodeling Supports Non-Thermogenic Metabolic Homeostasis During Shallow Hibernation in Raccoon Dogs
by Ruojun Zong, Zhiqiang Han, Runzhou Liu, Manman Yang, Xin Liu, Xiuli Zhang, Jiahao Hu, Rui Du and Chao Xu
Int. J. Mol. Sci. 2026, 27(12), 5611; https://doi.org/10.3390/ijms27125611 - 22 Jun 2026
Viewed by 351
Abstract
White adipose tissue (WAT) is essential for maintaining energy homeostasis during hibernation by supplying lipolysis-derived fatty acids as a major fuel source. In raccoon dogs (Nyctereutes procyonoides), the activity of brown adipose tissue is diminished, providing a unique model to investigate [...] Read more.
White adipose tissue (WAT) is essential for maintaining energy homeostasis during hibernation by supplying lipolysis-derived fatty acids as a major fuel source. In raccoon dogs (Nyctereutes procyonoides), the activity of brown adipose tissue is diminished, providing a unique model to investigate how WAT supports metabolic homeostasis in a largely non-thermogenic state. Here, we integrated physiological, histological, transcriptomic, and molecular analyses of back-fat and tail-fat depots during autumn fattening and winter sleep. Despite reduced food intake, body weight loss, and mild hypothermia, raccoon dogs maintained systemic glucose and lipid homeostasis. Both WAT depots exhibited adipocyte atrophy and the coordinated suppression of core metabolic and biosynthetic pathways, indicating a shared program of metabolic depression. However, the two depots adopted distinct remodeling strategies. Back-fat showed collagen densification and vascular-associated remodeling, suggesting a structural adaptation that may preserve tissue integrity during winter sleep. In contrast, tail-fat displayed enhanced innate immune signaling and M2 macrophage enrichment, indicating immune niche remodeling that may support tissue protection during prolonged lipid mobilization. Together, these findings reveal that raccoon dogs maintain metabolic homeostasis during shallow hibernation through a non-thermogenic, WAT-centered strategy characterized by shared metabolic depression and depot-specific structural and immunometabolic remodeling. Full article
(This article belongs to the Section Molecular Endocrinology and Metabolism)
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26 pages, 3327 KB  
Article
Zoonotic Spillover of a Canine-like Rotavirus A G3P[3] Strain in a Brazilian Child
by Vanessa Cristina Martins Silva, Lais Sampaio Azevedo, Raquel Guiducci and Adriana Luchs
Trop. Med. Infect. Dis. 2026, 11(6), 144; https://doi.org/10.3390/tropicalmed11060144 - 26 May 2026
Viewed by 625
Abstract
Rotavirus A (RVA) G3P[3] genotype is widely reported in dogs and less frequently in cats, with only sporadic human cases worldwide. All reported human infections have occurred in children, suggesting increased susceptibility likely linked to close contact with pets and age-related hygiene practices. [...] Read more.
Rotavirus A (RVA) G3P[3] genotype is widely reported in dogs and less frequently in cats, with only sporadic human cases worldwide. All reported human infections have occurred in children, suggesting increased susceptibility likely linked to close contact with pets and age-related hygiene practices. The identification of a novel genotype constellation in Brazilian canine G3P[3] strains in 2017 prompted full-genotype characterization of the historical RVA/Human-wt/BRA/IAL-R451/2011/G3P[3] strain, previously sequenced only for VP7 and VP4, to define its genomic constellation and relatedness to canine strains. All 11 segments were analyzed by RT-PCR, sequencing and phylogenetics. The rare genotype–lineage constellation G3.III-P[3]-I2.XX-R3.II-C2.V-M3.II-A9-N2.XXIV-T3.II-E3.II-H6.I, shared with Brazilian canine strains, was identified, supporting a potential common origin. RVA/Human-wt/BRA/IAL-R451/2011/G3P[3] strain showed high genetic similarity (93.2–99%) with canine, feline and canine/feline-like human strains worldwide, with six genes (VP1, VP6 and NSP2–NSP5) closely related to Brazilian dog isolates (97.6–99%), indicating its canine origin. NSP2 clustered with strains from domestic (bovine), synanthropic (rat) and human hosts, while VP7 and VP4 were associated with wildlife (bat; raccoon dog) and environmental (sewage; river water) strains, supporting interhost reassortment and highlighting aquatic environments as reservoirs for interspecies transmission. Identification of new lineages (VP1, VP3 and NSP2) within the AU-1-like backbone reflects its underexplored diversity. This novel constellation likely circulated in dogs and may spill over to humans via close contact, reinforcing a One Health approach to understand RVA zoonotic risk, especially in hotspot regions like Brazil. Full article
(This article belongs to the Special Issue Viral Enteropathogens in Pediatric Populations)
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33 pages, 8800 KB  
Article
Energy-Efficient Wireless Sensor Networks Through Coverage Hole Detection and Mitigation Using a Hybrid Raccoon–Hermit Crab Optimization Algorithm
by Sean Laurel Rex Bashyam and Renuga Devi Subramanian
Future Internet 2026, 18(3), 163; https://doi.org/10.3390/fi18030163 - 19 Mar 2026
Viewed by 668
Abstract
Wireless sensor networks encounter issues like irregular deployment, node failures, and uneven energy consumption that create coverage holes, leading to a reduction in network lifetime in critical or disaster-based applications. Most existing approaches focus on coverage enhancement during the initial deployment and perform [...] Read more.
Wireless sensor networks encounter issues like irregular deployment, node failures, and uneven energy consumption that create coverage holes, leading to a reduction in network lifetime in critical or disaster-based applications. Most existing approaches focus on coverage enhancement during the initial deployment and perform mitigation only at the beginning of the network operation. However, the coverage holes may also occur later due to node failures and energy depletion. To address this issue, a Hybrid Raccoon–Hermit crab optimization algorithm that advocates both initial coverage enhancement and adaptive mitigation due to future coverage holes is proposed. The proposed algorithm uses the global exploration ability of the raccoon optimization algorithm to find optimal cluster heads and the exploitation ability of the Hermit crab optimization to determine the optimal position and to relocate the static nodes logically to mitigate coverage holes. The proposed algorithm is evaluated under different node densities (50, 100, 200, 500, and 1000), with the sink at (100,100). It results in an enhanced network lifetime of 65.20%, an improved coverage ratio (16.94%) from (77.05%) to (93.94%), increased throughput by delivering (3,139,293) bits, and a reduced delay of 2.27292 s for 1000 nodes compared with other existing methods. Full article
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28 pages, 3582 KB  
Review
Rabies and Pinnipeds Reviewed: Premonitions, Perturbations, and Projections?
by Charles E. Rupprecht and Aniruddha V. Belsare
Vet. Sci. 2026, 13(2), 200; https://doi.org/10.3390/vetsci13020200 - 19 Feb 2026
Cited by 1 | Viewed by 3237
Abstract
Rabies is an acute, progressive, viral encephalitis. Warm-blooded vertebrates are susceptible. Major reservoirs reside in the Chiroptera and Carnivora. Among the latter, representatives include dogs, ferret badgers, foxes, jackals, mongooses, raccoons, and skunks. Within the Carnivora, pinnipeds represent a diverse group of >30 [...] Read more.
Rabies is an acute, progressive, viral encephalitis. Warm-blooded vertebrates are susceptible. Major reservoirs reside in the Chiroptera and Carnivora. Among the latter, representatives include dogs, ferret badgers, foxes, jackals, mongooses, raccoons, and skunks. Within the Carnivora, pinnipeds represent a diverse group of >30 extant species. These marine mammals range from the Arctic to Antarctica, but there is no review about rabies in this group. Apparently, only a single 1980 case of rabies occurred from Svalbard in a ringed seal (Phoca hispida). However, in 2024, incidental cases appeared within South African Cape fur seals (Arctocephalus pusillus). Retrospective testing of archival material identified suspect cases dating back to 2022. Currently, more than 80 cases have been documented in seals. Moreover, a new 2025 focus appeared in Namibia and cases in Angola are predictable. Viral characterization supports spillover infection via rabid black-backed jackals (Lupulella mesomelas). A host shift appears likely, with ongoing seal intraspecific transmission. Given the unique nature of this epizootic, implications for the southern hemisphere abound. Unfortunately, comprehensive data are lacking on pinniped specimens examined outside of southern Africa. For example, although Antarctica is considered ‘rabies-free’, minimal international standards for support are unmet. No routine laboratory-based surveillance occurs. This enzootic rabies focus among seals in southern Africa presents unique challenges for the region and a rare opportunity for considering broader surveillance. Besides targeted parenteral vaccination of fur seals, local engagement involves vagrant species, including elephant (Mirounga leonina) and leopard seals (Hydrurga leptonyx). The void of regional pinniped surveillance, especially encompassing the Southern Ocean would require considerable proactive local resolution and much wider collaboration regarding future concerns to both public health and conservation biology. Full article
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26 pages, 2649 KB  
Article
Energy-Efficient Multi-Objective Scheduling for Modern Construction Projects with Dynamic Resource Constraints
by Mudassar Rauf and Jabir Mumtaz
Buildings 2026, 16(2), 392; https://doi.org/10.3390/buildings16020392 - 17 Jan 2026
Viewed by 737
Abstract
The rapidly evolving business landscape, driven by stringent energy conservation policies, compels construction firms to adopt energy-efficient project-centric structures, particularly in modern construction projects. These firms face a complex, multi-mode, resource-constrained, multi-project scheduling problem characterized by dynamic project arrivals and multiple resource constraints, [...] Read more.
The rapidly evolving business landscape, driven by stringent energy conservation policies, compels construction firms to adopt energy-efficient project-centric structures, particularly in modern construction projects. These firms face a complex, multi-mode, resource-constrained, multi-project scheduling problem characterized by dynamic project arrivals and multiple resource constraints, including global, local, and non-renewable capacities. This environment pressures managers to simultaneously optimize the conflicting objectives of minimizing total project duration and total energy consumption. To address this challenge, we propose a novel multi-objective Smart Raccoon Family Optimization (SRFO) algorithm. The SRFO, a hybrid evolutionary approach, is designed to enhance global exploration and local exploitation. Its performance is boosted by integrating a non-dominated sorting mechanism, a dedicated energy-efficient search strategy, and enhanced genetic operators. The SRFO simultaneously optimizes two conflicting objectives: minimizing the total project duration and total energy consumption. This approach effectively integrates the unique constraint of off-site component production and on-site assembly within an intelligent scheduling framework. Empirical validation across benchmark problems and a real-world case study is conducted, comparing the SRFO with existing multi-objective approaches, such as NSGA-III, MOABC, and MOSMO. Performance is assessed using convergence and distribution metrics, augmented by TOPSIS-based multi-criteria decision-making. Results conclusively demonstrate that the proposed SRFO significantly outperforms existing approaches and offers a robust, high-quality solution for project management in energy-constrained environments. Full article
(This article belongs to the Special Issue Advanced Research on Intelligent Building Construction and Management)
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15 pages, 3743 KB  
Article
Dynamic Changes in Gut Microbiota Composition and Function over Time in Suckling Raccoon Dogs
by Shaochen Yu, Weixiao Nan, Zhipeng Li, Chongshan Yuan and Chao Xu
Animals 2026, 16(2), 188; https://doi.org/10.3390/ani16020188 - 8 Jan 2026
Viewed by 592
Abstract
Raccoon dog fur is a commercially valuable animal product. As the scale of raccoon dog breeding continues to expand, ensuring the health of these animals has become an urgent priority. The gut microbiota plays a central role in regulating animal health; however, current [...] Read more.
Raccoon dog fur is a commercially valuable animal product. As the scale of raccoon dog breeding continues to expand, ensuring the health of these animals has become an urgent priority. The gut microbiota plays a central role in regulating animal health; however, current research on the composition of raccoon dog gut microbiota remains limited. This study aimed to characterize changes in the gut microbiota of suckling raccoon dogs across different stages, providing a foundation for future scientific feeding practices. Fecal samples of eight lactating raccoon dogs were collected and tested for microbiota on days 14, 21, and 45. Our results showed that the richness and diversity of microbiota increased with age in suckling raccoon dogs, peaking on the 45th day. Significant separation between groups was observed in both PCoA and NMDS analyses. UPGMA analysis indicated temporal fluctuations in gut microbiota composition. At the phylum level, Firmicutes and Bacteroidetes were the dominant taxa across all stages. LEfSe analysis at the genus level showed that Bacteroides was the most enriched taxon on the 14th day, Fusobacterium on the 21st day, and Prevotella_9 on the 45th day. Tax4Fun and PICRUSt analyses identified metabolism and genetic information processing as the primary functional roles of the gut microbiota. Further investigation suggested that the microbiota may benefit raccoon dogs through membrane transport, carbohydrate metabolism, amino acid metabolism, and energy metabolism. These findings establish a theoretical basis for improving the survival rate of suckling raccoon dogs and developing scientifically informed feeding and management protocols. Full article
(This article belongs to the Special Issue Nutritional Regulation of Gut Microbiota in Animals)
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11 pages, 5417 KB  
Case Report
Pulmonary Vascular Proliferative Lesions in Wild Korean Raccoon Dogs (Nyctereutes procyonoides): Description of 13 Cases
by Warisraporn Tangchang, Jun-Yeop Song, Do-hyun Kim, Hyo-Jung Kwon and Hwa-Young Son
Vet. Sci. 2026, 13(1), 21; https://doi.org/10.3390/vetsci13010021 - 24 Dec 2025
Viewed by 1279
Abstract
Pulmonary vascular proliferative lesions are rarely reported and poorly characterized in animals. In this study, we describe 13 cases identified in wild Korean raccoon dogs (Nyctereutes procyonoides), suggesting a higher-than-expected incidence in this species. Gross examination revealed villous projections within the [...] Read more.
Pulmonary vascular proliferative lesions are rarely reported and poorly characterized in animals. In this study, we describe 13 cases identified in wild Korean raccoon dogs (Nyctereutes procyonoides), suggesting a higher-than-expected incidence in this species. Gross examination revealed villous projections within the lumina of pulmonary vessels, sometimes accompanied by pneumonia, hemorrhage, or Dirofilaria immitis (heartworm) infection. Most affected animals also presented with thick, dark gray cutaneous crusts associated with scabies infestation. Histopathologically, the lesions consisted of papillary proliferations within thickened vascular lumens. Special stains (Masson’s trichrome and Elastic Verhoeff–Van Gieson) demonstrated a single layer of endothelial cells lining fibromuscular and collagenous thick cores. Immunohistochemistry confirmed endothelial origin and benign proliferative nature, with positive expression of CD31, collagen types I, III, and IV, and proliferating cell nuclear antigen (PCNA). To date, pulmonary vascular proliferative lesions have not been well documented in N. procyonoides, and baseline pathological data, including findings from special stains, are lacking. These findings indicate that pulmonary vascular proliferative lesions may be underrecognized in raccoon dogs and suggest a likely association with chronic vascular injury related to parasitic infections. Further studies are warranted to elucidate the underlying mechanisms and contributing factors. Full article
(This article belongs to the Topic Advances in Infectious and Parasitic Diseases of Animals)
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17 pages, 612 KB  
Article
Fur Farming: EU Citizens’ Stance
by Fernando Mata, Nuno Baptista, Meirielly Jesus and Joana Santos
Sci 2025, 7(4), 177; https://doi.org/10.3390/sci7040177 - 2 Dec 2025
Cited by 1 | Viewed by 2296
Abstract
Despite its economic profitability, fur farming in Europe, responsible for half of global production, faces a growing ethical backlash. Animal welfare concerns, particularly regarding mink, foxes, and raccoon dogs kept in restrictive cages, have intensified due to advocacy, scientific reviews, and COVID-19 outbreaks. [...] Read more.
Despite its economic profitability, fur farming in Europe, responsible for half of global production, faces a growing ethical backlash. Animal welfare concerns, particularly regarding mink, foxes, and raccoon dogs kept in restrictive cages, have intensified due to advocacy, scientific reviews, and COVID-19 outbreaks. In response, several EU nations have implemented bans or stricter regulations. However, limited research exists on EU public opinion. This study analyses data from Eurobarometer 533 (March 2023), surveying 26,368 citizens across 27 EU countries, to assess attitudes toward fur farming. Respondents selected from three policy preferences: a full ban, EU-wide regulation, or acceptance of current practices. Multinomial logistic regression and chi-square tests revealed significant socio-demographic and ideological influences. Older individuals were more supportive of current practices (p = 0.001), while higher education levels correlated with support for a ban or stricter regulation (p = 0.003). Income positively influenced support for regulation (p = 0.002), and women (p = 0.008), urban residents (p = 0.001), and those with regular animal contact (p = 0.007) were more likely to support reform. Right-leaning respondents (p = 0.012) and residents of countries without fur farming bans (p < 0.001) were less supportive. These findings suggest that values, demographics, and national legislation significantly shape public opinion. Aligning policy with evolving societal values requires integrated legislative reform, public engagement, and equitable transition strategies to ensure meaningful and sustainable improvements in animal welfare across the EU. Full article
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9 pages, 620 KB  
Article
A New Demodecidae Mite (Acariformes: Prostigmata) Parasitizing the Raccoon Procyon lotor (Carnivora: Procyonidae), an Invasive Species in Europe
by Joanna N. Izdebska, Leszek Rolbiecki, Katarzyna Faleńczyk-Koziróg and Dariusz J. Gwiazdowicz
Insects 2025, 16(12), 1218; https://doi.org/10.3390/insects16121218 - 28 Nov 2025
Viewed by 1204
Abstract
The raccoon, Procyon lotor, is an alien species in Europe, where it is considered invasive and poses significant environmental and sanitary risks: it can increase the host reservoir by both introducing new parasites to the region and acquiring native ones. One permanent [...] Read more.
The raccoon, Procyon lotor, is an alien species in Europe, where it is considered invasive and poses significant environmental and sanitary risks: it can increase the host reservoir by both introducing new parasites to the region and acquiring native ones. One permanent component of the mammalian parasitofauna is the Demodecidae, highly specific skin mites that often accompany their hosts in various regions of their range. To date, unidentified Demodex species have been found in raccoons within their native range. It has now become important to determine whether raccoons from invasive populations retain their specific parasites during range expansion and potentially spread them or whether they become colonized by other demodecid mites acquired from European mammals. The present analyses of three raccoons identified Demodex procyonis sp. nov. in the skin. This species is distinct from demodecid mites known from other mammals (including European species) but shows similarities in structure and location to mites found on raccoons in the United States. It is therefore likely to be a raccoon-specific species of Demodecidae and the first representative of this mite family described from the family Procyonidae. Full article
(This article belongs to the Section Insect Systematics, Phylogeny and Evolution)
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14 pages, 823 KB  
Article
Density-Dependent and Predator-Specific Nest Defense Strategies in Colonially Breeding Saunders’s Gulls
by Seon-Ju Lee, Bo-Yeon Hwang and Jongmin Yoon
Birds 2025, 6(4), 61; https://doi.org/10.3390/birds6040061 - 11 Nov 2025
Viewed by 2168
Abstract
Nest defense is a key component of avian reproductive success, yet its intensity and expression often depend on ecological and social contexts. We investigated the nest defense behaviors of Saunders’s Gulls (Saundersilarus saundersi) breeding in Incheon Bay of South Korea in [...] Read more.
Nest defense is a key component of avian reproductive success, yet its intensity and expression often depend on ecological and social contexts. We investigated the nest defense behaviors of Saunders’s Gulls (Saundersilarus saundersi) breeding in Incheon Bay of South Korea in 2022 in relation to nest density and perceived threats. Using decoy presentations of three heterospecifics, Oriental Magpie (Pica serica; diurnal avian nest predator), common raccoon dog (Nyctereutes procyonoides; nocturnal mammalian nest predator), and Little Tern (Sternula albifrons; neutral co-nester), we quantified latency to respond, bombing attack rate, and the number of mobbing individuals at high- and low-density nesting sites within a breeding colony. Mixed models revealed that latency to respond and attack rates varied strongly with stimulus type, with diurnal predator magpies eliciting the fastest and most intense responses, followed by nocturnal predator raccoon dogs and co-nester terns. Nest density influenced the number of mobbing individuals, which was significantly greater at high-density sites. Principal Component Analysis reduced the three behavioral metrics into a composite score, which correlated negatively with latency and positively with bombing attack rate and mobbing intensity. This score varied with both nest density and stimulus type. Our findings demonstrate that Saunders’s Gulls adjust their nest defense strategies according to both the social context and predator type, highlighting the importance of density-dependent collective nest defense in colonial breeders. Full article
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11 pages, 924 KB  
Communication
Serological Evidence of Exposure to Eurasian-Lineage HPAI H5N1 Clade 2.3.4.4b in Wild Mammals in Ohio, USA, 2024–2025
by Mohammad Jawad Jahid, Madison C. Owsiany, Lauren M. Smith, Bryant M. Foreman, Zijing Cao, Deborah L. Carter, David E. Stallknecht, Brendan Shirkey, Rebecca L. Poulson and Jacqueline M. Nolting
Viruses 2025, 17(10), 1388; https://doi.org/10.3390/v17101388 - 18 Oct 2025
Cited by 1 | Viewed by 1526
Abstract
The Goose/Guandong lineage of highly pathogenic avian influenza virus [A/Goose/Guangdong/1/1996(H5N1)] is the progenitor of the currently circulating Eurasian-lineage highly pathogenic avian influenza H5N1 clade 2.3.4.4b and has been the most consequential highly pathogenic avian influenza lineage globally. Despite increased reports of infections, the [...] Read more.
The Goose/Guandong lineage of highly pathogenic avian influenza virus [A/Goose/Guangdong/1/1996(H5N1)] is the progenitor of the currently circulating Eurasian-lineage highly pathogenic avian influenza H5N1 clade 2.3.4.4b and has been the most consequential highly pathogenic avian influenza lineage globally. Despite increased reports of infections, the extent of exposure and role of wild mammals in the ecology and transmission dynamics of the virus remains poorly understood. We surveyed wild mammals in Ohio, United States to investigate the potential spillover of highly pathogenic H5N1 avian influenza clade 2.3.4.4b. While no active infections—defined as positive results indicative of viral replication and potential propagation—were detected by swab-based molecular tests, serological assays revealed antibodies against multiple avian influenza virus antigens in raccoons and opossums. Specifically, antibodies to avian influenza virus nucleoprotein were detected in 54.9% (n = 61) of samples using enzyme-linked immunosorbent assay; antibodies to Eurasian-lineage highly pathogenic avian influenza H5 clade 2.3.4.4b and North American low pathogenic avian influenza H5 were detected in 43.2% (n = 48) and 22.5% (n = 25) of samples, respectively, using virus neutralization assays; and antibodies to avian influenza virus neuraminidase were detected in 44.1% (n = 49) of samples using enzyme-linked lectin assay. All seropositive animals were sampled at Ohio marshes with previously confirmed highly pathogenic avian influenza H5N1 detections in waterfowl. These findings suggest prior exposure of wild mammals to these viruses without mortality events. Wild mammals may play an intermediary role in the mammalian adaptation of avian influenza A viruses. Therefore, ongoing surveillance of wild mammals is crucial for assessing the risk to public health. Full article
(This article belongs to the Special Issue Influenza Viruses in Wildlife 2026)
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