Climate change is anticipated to increase the occurrence of zoonotic infections in domestic animals through changes in meteorological factors (e.g., temperature, precipitation) which create environmental conditions more favourable for pathogen persistence and transmission. The aims of this review were to identify climate-sensitive zoonotic infections in domestic cats and dogs, and the meteorological factors that influence these infections. The search strategy was applied to three academic databases and greyliterature sources to identify studies reporting on associations between meteorological variables and zoonotic infections or vectors in cats and/or dogs. Screening, data extraction, and analysis followed established scoping-review methods. After de-duplication, 40 studies met the eligibility criteria. Dogs were most commonly studied (31/40, 77.5%), followed by cats (5/40, 12.5%) and mixed cat-dog studies (4/40, 10%). Studies on non-vector-transmitted bacterial (n = 8), parasitic (n = 5), viral (n = 3) and fungal infections (n = 1) were represented. Vector-transmitted infections were also identified (27/40, 68%) Meteorological exposures most frequently analyzed were temperature (n = 39), precipitation (n = 24), humidity (n = 4), and windspeed (n = 3). Broadly, higher temperatures were positively associated with several vector-borne infections while precipitation was commonly associated with increased leptospirosis and some vector-borne infectious. Relationships between meteorological factors and zoonotic infection showed pathogen- and context-specific associations. Several studies reported relevant interactions (e.g., with season, land cover). Non-linear or lagged effects were often suggested but inconsistently modelled. Evidence indicates temperature, precipitation, humidity, and wind conditions can influence risk of zoonotic infection in population- and pathogen-specific contexts; however, geographical coverage and methodological consistency were limited.
Social isolation and loneliness are concerns in gerontology. The impact of the human–animal interaction (HAI) on loneliness for older adults living alone is understudied. This scoping review explored the extent to which HAI is included in studies investigating social connectedness, specifically social isolation and loneliness, and if HAI bolsters healthy aging through increased perceived support. Following the PRISMA-ScR protocol, data from 58 articles were thematically categorized, identifying (a) existing inclusion of HAI; (b) definitions and descriptions of HAI; and (c) the relationships between HAI and loneliness outcomes, in social connectedness research. Studies including HAI (animal companions and animal-assisted interventions) have increased over time; many noting protection against loneliness and few noting health detriments. Older adults overwhelmingly consider interactions with companion animals as meaningful relationships, whether living at home or in care. Substantial knowledge gaps exist concerning the influence of HAI on perceived social connectedness for older adults living alone.
Dog importation into Canada has grown substantially since the early 2010s, and concerns have been raised regarding the potential introduction of infectious agents. We conducted a qualitative risk assessment of infectious agents associated with canine importation into Canada. We adapted international risk assessment methodologies coupled with an expert consultation. We estimated likelihood of entry, likelihood of canine exposure, and magnitude of impact of exposure to individual canines and the canine population for all hazards (n = 53). We also completed estimates for likelihood of human exposure and magnitude of impact of exposure on individual humans and the human population for zoonotic hazards (n = 33). Hazards were commonly ranked moderate or high for likelihood of entry and exposure estimates. Magnitude of impact of exposure estimates were assessed at much lower levels, indicating more restricted health impacts. Our study provides a foundation for future risk mitigation, including caregiver education, veterinary assessments, and importation regulations.
Monitoring of companion animal zoonotic diseases in Canada is limited by the lack of a comprehensive companion animal health surveillance system, capable of integrating environmental and public health data. To guide the development of a suitable surveillance framework, we conducted an environmental scan of companion animal heath surveillance systems globally. Using academic and grey literature database searches, supplemented with targeted internet searching, we identified 12,718 unique sources. After screening, 257 sources were deemed eligible for inclusion. These sources identified 119 national or regional surveillance and control programs (which were not further characterized) and 33 companion animal health surveillance systems. We extracted information relating to surveillance scope, data source and collection methods, integration of environmental and public health data, and data dissemination methods. In total, 48.5% (n=16/33) of the systems relied on submission of data by veterinary professionals or others, whilst 42.4% (n=14) extracted data from electronic health records and veterinary diagnostic laboratory data. Surveillance scope included infectious diseases (n=13), cause of death (n=2), cancer (n=1), and toxin exposure (n=1). Some systems were not focused on specific health outcomes (n=12). Only 9.1% (n=3) of systems integrated environmental or public health data at the point of data collection. However, other systems utilized environmental data during the analysis phase (27.3%, n=9). Surveillance systems largely disseminated surveillance outputs through reports (30.3%, n=10) and direct feedback to contributors (27.3%, n=9). By conducting this environmental scan, we provide a summary of global companion animal health surveillance efforts. Notably, there are few examples of fully integrated companion animal health surveillance systems using a One Health approach.
Objective Surveillance data on companion animals in western Canada are extremely limited. Previous research by the principal investigators established a list of potential canine pathogens of relevance to public health for inclusion in the Western Canadian Companion Animal Surveillance Initiative (CASI). Our objective was to assess veterinary interest in contributing to companion animal surveillance, and to gather baseline data on specific canine pathogens of interest to create surveillance-specific case definitions. Procedure An invitation to participate in an online survey was disseminated to all clinical veterinarians across the provinces of Alberta, Saskatchewan, and Manitoba. Results There was a moderate level of interest (median: 7.5/10) from veterinarians to participate in the surveillance of companion animals. The majority (85%, 51/60) of veterinarians participating in the survey recorded diagnosing at least 1 of the pathogens of interest over a 5-year interval. Based on survey responses, several surveillance case definitions were formulated for pathogen groups of interest, most of which require laboratory testing for confirmation. Conclusion and clinical relevance This study identified the willingness, practicality, and importance of veterinarians or veterinary clinics participating in companion animal surveillance.
This scoping review aims to establish a comprehensive definition of the term "underserved" as it applies to communities, individuals, and populations with inadequate access to animal health services, particularly for dogs. The review adhered to PRISMA guidelines and analyzed 30 articles, applying concepts of One Health and social determinants of health, by using 3 pre-determined categories of contributors to and indicators of underservice. The review categorized article-specific exemplars into veterinary-dependent barriers; community- and individual-related barriers; and health and welfare indicators; with subcategories illustrating features of underserved communities, individuals, or populations in each category. Ultimately, 3 definitions were developed. Animal Health Underserved Areas (AHUA) identify negative human and animal health and welfare outcomes secondary to inadequate access to animal health services in the community. Individuals may identify as underserved based on the same criteria (Animal Health Underserved Individuals, AHUI), and certain groups within otherwise adequately served areas may be identified as Animal Health Underserved Populations (AHUP). The AHUA, AHUI, and AHUP are frequently characterized as rural, remote, and/or Indigenous, and often face systemic marginalization. This inequitable access to animal health services creates human, animal, and community health challenges, underscoring the need for veterinary professionals and other stakeholders to prioritize equitable access to care. Findings from this review should inform development of a scoring system to enable comparative assessment of communities, individuals, and populations and allow strategic service and resource allocation in the future.
Three commercial honey bee operations in Saskatchewan, Canada, with outbreaks of American foulbrood (AFB) and recent or ongoing metaphylactic antibiotic use were intensively sampled to detect spores of Paenibacillus larvae during the summer of 2019. Here, we compared spore concentrations in different sample types within individual hives, assessed the surrogacy potential of honey collected from honey supers in place of brood chamber honey or adult bees within hives, and evaluated the ability of pooled, extracted honey to predict the degree of spore contamination identified through individual hive testing. Samples of honey and bees from hives within apiaries with a recent, confirmed case of AFB in a single hive (index apiaries) and apiaries without clinical evidence of AFB (unaffected apiaries), as well as pooled, apiary-level honey samples from end-of-season extraction, were collected and cultured to detect and enumerate spores. Only a few hives were heavily contaminated by spores in any given apiary. All operations were different from one another with regard to both the overall degree of spore contamination across apiaries and the distribution of spores between index apiaries and unaffected apiaries. Within operations, individual hive spore concentrations in unaffected apiaries were significantly different from index apiaries in the brood chamber (BC) honey, honey super (HS) honey, and BC bees of one of three operations. Across all operations, BC honey was best for discriminating index apiaries from unaffected apiaries (p = 0.001), followed by HS honey (p = 0.06), and BC bees (p = 0.398). HS honey positively correlated with both BC honey (rs = 0.76, p < 0.0001) and bees (rs = 0.50, p < 0.0001) and may be useful as a surrogate for either. Spore concentrations in pooled, extracted honey seem to have predictive potential for overall spore contamination within each operation and may have prognostic value in assessing the risk of future AFB outbreaks at the apiary (or operation) level.
In the early stages of response to the SARS-CoV-2 pandemic, it was imperative for researchers to rapidly determine what animal species may be susceptible to the virus, under low knowledge and high uncertainty conditions. In this scoping review, the animal species being evaluated for SARS-CoV-2 susceptibility, the methods used to evaluate susceptibility, and comparing the evaluations between different studies were conducted. Using the PRISMA-ScR methodology, publications and reports from peer-reviewed and gray literature sources were collected from databases, Google Scholar, the World Organization for Animal Health (OIE), snowballing, and recommendations from experts. Inclusion and relevance criteria were applied, and information was subsequently extracted, categorized, summarized, and analyzed. Ninety seven sources (publications and reports) were identified which investigated 649 animal species from eight different classes: Mammalia, Aves, Actinopterygii, Reptilia, Amphibia, Insecta, Chondrichthyes, and Coelacanthimorpha. Sources used four different methods to evaluate susceptibility, in silico, in vitro, in vivo, and epidemiological analysis. Along with the different methods, how each source described "susceptibility" and evaluated the susceptibility of different animal species to SARS-CoV-2 varied, with conflicting susceptibility evaluations evident between different sources. Early in the pandemic, in silico methods were used the most to predict animal species susceptibility to SARS-CoV-2 and helped guide more costly and intensive studies using in vivo or epidemiological analyses. However, the limitations of all methods must be recognized, and evaluations made by in silico and in vitro should be re-evaluated when more information becomes available, such as demonstrated susceptibility through in vivo and epidemiological analysis.
The COVID-19 pandemic highlights the urgency and importance of monitoring, managing and addressing zoonotic diseases, and the acute challenges of doing so with sufficient inter-jurisdictional coordination in a dynamic global context. Although wildlife pathogens are well-studied clinically and ecologically, there is very little systematic scholarship on their management or on policy implications. The current global pandemic therefore presents a unique social science research imperative: to understand how decisions are made about preventing and responding to wildlife diseases, especially zoonoses, and how those policy processes can be improved as part of early warning systems, preparedness and rapid response. To meet these challenges, we recommend intensified research efforts towards: (i) generating functional insights about wildlife and zoonotic disease policy processes, (ii) enabling social and organizational learning to mobilize those insights, (iii) understanding epistemic instability to address populist anti-science and (iv) anticipating evolving and new zoonotic emergences, especially their human dimensions. Since policy processes for zoonoses can be acutely challenged during the early stages of an epidemic or pandemic, such insights can provide a pragmatic, empirically-based roadmap for enhancing their robustness and efficacy, and benefiting long-term decision-making efforts.
From 2007 to 2019, the Western College of Veterinary Medicine Disease Investigation Unit conducted lead investigations in 12 beef cow-calf herds and tested 1104 presumed exposed but clinically unaffected cattle, 49 of which were unsafe for slaughter (blood lead ≥ 0.1 ppm). In all investigations, the lead source should be evaluated, and all potentially exposed animals intended for food should be tested. Clinically affected animals should be tested individually. Individual testing of clinically unaffected animals may be expensive for large groups. However, pooling a conservative number of blood samples (n = 2 to 5) from clinically unaffected cattle may efficiently identify groups that are safe for slaughter. If a pooled test produces a blood lead concentration over the minimum threshold (0.1 ppm/n), these samples should be individually re-tested. Herd size, lead toxicity prevalence, pool size, and number of pools that require individual re-testing all affect the potential cost savings of pooled testing.
The Kenney-Doig scale is a histopathology categorization (grading) system often used as the standard for assessing endometrial disease and communicating prognostic fertility information for equine breeding prospects. We investigated how Kenney-Doig categories compared within the same institution and across different institutions to determine if observer variability may contribute to category frequencies. We conducted a retrospective analysis of all equine endometrial submission records between 1998 and 2018 at the Western College of Veterinary Medicine (WCVM) and Prairie Diagnostic Services (PDS). Of 726 biopsies, we found the following category distribution: 46 of 726 (6.3%) I, 307 of 726 (42.3%) IIA, 326 of 726 (44.9%) IIB, and 47 of 726 (6.5%) III. We also conducted a review of the literature and included 6 studies reporting Kenney-Doig category distributions. Chi-square analysis showed significant differences between the category distribution found at WCVM and PDS and the category distribution reported in the 6 studies. To account for differences in mare populations, individual category distributions were generated for 5 pathologists at the WCVM and PDS. The Fisher exact test among these 5 Kenney-Doig categories revealed significant differences in category tendencies, suggesting that observer variation affects the use of the scale. Our results suggest that there is a need for prospective inter-rater and intra-rater agreement studies of the repeatability of the Kenney-Doig scale.
Paenibacillus larvae , the causative agent of American foulbrood (AFB), produces spores that may be detectable within honey. We analyzed the spore content of pooled, extracted honey from 52 large-scale (L) and 64 small-scale (S) Saskatchewan beekeepers over a two-year period (2019–2020). Our objectives were: (i) establish reliable prognostic reference ranges for spore concentrations in extracted honey to determine future AFB risk at the apiary level; (ii) identify management practices as targets for mitigation of risk. P. larvae spores were detected in 753 of 1476 samples (51%). Beekeepers were stratified into low (< 2 spores/gram), moderate (2- < 100 spores/gram), and high (≥ 100 spores/gram) risk categories. Of forty-nine L beekeepers sampled in 2019, those that reported AFB in 2020 included 0/26 low, 3/18 moderate, and 3/5 high risk. Of twenty-seven L beekeepers sampled in 2020, those that reported AFB in 2021 included 0/11 low, 2/14 moderate, and 1/2 high risk. Predictive modelling included indoor overwintering of hives, purchase of used equipment, movement of honey-producing colonies between apiaries, beekeeper demographic, and antimicrobial use as risk category predictors. Saskatchewan beekeepers with fewer than 2 spores/gram in extracted honey that avoid high risk activities may be considered at low risk of AFB the following year.
Inter- and intra-rater variability negatively affects the reliability of various histopathology grading scales used as prognostic aids in human and veterinary medicine. The Kenney–Doig categorization (grading) scale, which is used to associate equine endometrial histologic lesions with prognostic estimation of a broodmare’s reproductive potential, has not been evaluated for inter- or intra-rater variability, to our knowledge. To assess whether the Kenney–Doig system produces reliable results among observers, 8 pathologists, all with American College of Veterinary Pathologists certification, were recruited to blindly categorize the same set of 63 digital equine endometrial biopsy slides as well as to re-evaluate anonymously 21 of 63 of these slides at a later time. Cohen kappa values for pairwise comparison of final Kenney–Doig categories were −0.05 to 0.46 (unweighted) and 0.08–0.64 (weighted), with an average Light kappa of 0.19 (unweighted) and 0.36 (weighted) across all 8 pathologists, 0.14 (unweighted) and 0.33 (weighted) for pathologists at different institutions, and 0.22 (unweighted) and 0.46 (weighted) for pathologists at the same institution. Intra-class correlations measuring intra-rater agreement were 0.12–0.77 with an average of 0.55 for all 8 pathologists. We found that only slight-to-moderate inter-rater agreement and poor-to-good intra-rater agreement was produced by 8 pathologists using the Kenney–Doig scale, suggesting that the system is subject to significant observer variability and care should be taken when communicating Kenney–Doig categories to submitting clinicians with emphasis on the quality of endometrial lesions present instead of the category and associated expected foaling rate.
Psoroptes are a non-burrowing, ectoparasitic, mange-causing mite that has been documented in American bighorn sheep populations throughout the 19th and 20th centuries; however, it was not seen on Canadian bighorn sheep until 2006. The aim of this study was to determine the potential source of the Psoroptes outbreak in Canadian bighorn sheep. Morphological and molecular analyses were used to compare mites recovered from outbreak-associated bighorn sheep, pet rabbits in Canada, and on historically infested bighorn sheep in the USA. The results revealed that Psoroptes acquired from the Canadian and outbreak-associated American bighorn sheep were morphologically more similar to those collected from rabbits than mites on historically infested bighorn sheep. Outer opisthosomal setae lengths measured an average of 81.7 μm (±7.7 μm) in outbreak associated bighorn mites, 88.9 μm (±12.0 μm) in rabbit mites and 151.2 μm (±16.6 μm) in historically infested bighorn mites. The opisthosomal lobe morphology of bighorn mites in the outbreak herds was also more similar to that of rabbit mites, previously described as P. cuniculi, than historically infested bighorn mites, which match previous descriptions of P. ovis. This finding was supported by DNA sequence data of the mitochondrial cytochrome B gene. This is the first report of Psoroptes of the rabbit ecotype on bighorn sheep. The morphological and molecular data therefore support the hypothesis that the source of Psoroptes outbreak in Canadian bighorn sheep represented a disease spillover event from rabbits rather than transmission from infested American bighorn sheep populations.
The goal of this study was to establish a short list of zoonotic pathogens involving the domestic dog that can be prioritized for a companion animal surveillance program specific to the Prairie Provinces of Canada. A list of pathogens documented in dogs was created through a comprehensive review of infectious disease textbooks for the following taxonomical categories: bacteria, ectoparasites, fungi, helminths, protozoa, rickettsia, and viruses. This created an initial list of 594 pathogens that was then pared down through an extensive review of the literature using the following criteria: i) the pathogen is zoonotic/sapronotic/anthroponotic; ii) the dog is involved in transmission to humans, maintenance, or detection of the pathogen; and iii) there is a level of risk for occurrence of the pathogen in Canada. This process yielded a final list of 84 pathogens and 3 supplementary lists of canine zoonotic/sapronotic/anthroponotic pathogens that may become relevant to future surveillance programs.
BACKGROUND: Chronic exposure of honey bees (Apis mellifera Linnaeus) to the neonicotinoid thiamethoxam and the fungicide prothioconazole is common during foraging in agricultural landscapes. We evaluated the survival and hypopharyngeal gland development of adult worker honey bees, and the survival of the worker brood when chronically exposed to thiamethoxam or thiamethoxam and prothioconazole in combination. RESULTS: We found that 30 days of exposure to 40 mu gkg(-1) of thiamethoxam significantly (P < 0.001) increased the frequency of death in worker adults by four times relative to solvent control. The worker brood required 23 times higher doses of thiamethoxam (1mg L-1 or 909 mu gkg(-1)) before a significant (P = 0.04), 3.9 times increase in frequency of death was observed relative to solvent control. No additive effects of simultaneous exposure of worker adults or brood to thiamethoxam and prothioconazole were observed. At day 8 and day 12, the hypopharyngeal gland acinar diameter was not significantly different (P > 0.05) between controls and adult workers exposed to thiamethoxam and/or prothioconazole. CONCLUSION: These results indicate that chronic exposure to field-realistic doses of thiamethoxam and/or prothioconazole are unlikely to affect the survival of adult workers and brood. (c) 2019 Society of Chemical Industry
Four outbreaks of American foulbrood were investigated in honey-bee operations in Saskatchewan during the summer of 2019. Clinical signs were confirmed by the Saskatchewan Provincial Specialist in Apiculture and the causative agent was cultured and identified through matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS). Evaluation of management practices revealed off-label metaphylactic use of oxytetracycline in 3 of 4 operations and a discontinuation of antibiotic use in the fourth. Recent regulatory changes regarding access to medically important antimicrobials has provided an opportunity for veterinarians to promote evidence-based use of antimicrobials in apiculture while safe-guarding the health of commercial honeybee populations and the economic viability of their producers.
Exposure to plants containing glucosinolates (GSLs) affects thyroid function in many species, in horses is implicated in the birth of foals with congenital hypothyroidism. The present study was performed to determine the effect of feeding a GSL (sinigrin) in combination with a low-iodine diet for 12 weeks on thyroid hormones and serum iodine concentrations in nonpregnant mares. Nineteen mares aged 2-14 years were divided into control (n = 6), low (20 mmol/day) (n = 7) and high GSL (35 mmol/day) (n = 6) groups. Thyrotropin-releasing hormone (TRH) stimulation tests and serum iodine measurements were performed at 0 and 12 weeks. Total triiodothyronine (TT3), total thyroxine (TT4), and thyroid-stimulating hormone (TSH) concentrations were measured at the baseline and in post-TRH samples. The post-TRH value minus the basal value (Delta D) and fold change (FC) were calculated for TSH, TT3, and TT4. Data were analyzed at P < .05. Highlights included Delta D and FC TT4 and TT3 concentrations having a group and week interaction (P < .001) with week 12 control mares having higher values than mares in week 12 low and high GSL groups. TT4 FC values had a group (P < .001) and group by week interaction (P < .001) with week 12 control concentrations higher (P < .006) than all groups. Iodine concentrations decreased (P < .002) over time in GSL mares. In conclusion, feeding mares a low-iodine diet with 20 and 35 mmol sinigrin/day resulted in lower serum iodine concentrations. (C) 2020 Elsevier Inc. All rights reserved.
Neonicotinoid and fungicide exposure has been linked to immunosuppression and increased susceptibility to disease in honeybees (Apis mellifera). European foulbrood, caused by the bacterium Melissococcus plutonius, is a disease of honeybee larvae which causes economic hardship for commercial beekeepers, in particular those whose colonies pollinate blueberries. We report for the first time in Canada, an atypical variant of M. plutonius isolated from a blueberry-pollinating colony. With this isolate, we used an in vitro larval infection system to study the effects of pesticide exposure on the development of European foulbrood disease. Pesticide doses tested were excessive (thiamethoxam and pyrimethanil) or maximal field-relevant (propiconazole and boscalid). We found that chronic exposure to the combination of thiamethoxam and propiconazole significantly decreased the survival of larvae infected with M. plutonius, while larvae chronically exposed to thiamethoxam and/or boscalid or pyrimethanil did not experience significant increases in mortality from M. plutonius infection in vitro. Based on these results, individual, calculated field-realistic residues of thiamethoxam and/or boscalid or pyrimethanil are unlikely to increase mortality from European foulbrood disease in honeybee worker brood, while the effects of field-relevant exposure to thiamethoxam and propiconazole on larval mortality from European foulbrood warrant further study.