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1.
Front Vet Sci ; 11: 1328513, 2024.
Article in English | MEDLINE | ID: mdl-38694479

ABSTRACT

Introduction: Despite the potential health risks associated with feeding raw and non-traditional diets, the use of these diets in dogs is increasing, yet the health outcomes associated with these diets is not well understood. This study investigates the effect of feeding dogs a kibble or raw meat-based diets on fecal microbiota composition, serum metabolomics and inflammatory markers. Methods: Clinically healthy dogs with a history of consuming either kibble (KD, n = 27) or raw meat-based diets (RMBD, n = 28) for more than 1 year were enrolled. Dogs were fed a standardized diet of either a single brand of KD or RMBD for 28 days. Serum and fecal samples were collected for analysis of microbiota, metabolomics, and inflammatory markers. Multiple regression analysis was performed for each of the metabolites and inflammatory markers, with feed group, age and BCS included as independent variables. Results: The fecal microbiota composition differed between the KD and RMBD groups. Beta-diversity and some indices of alpha-diversity (i.e., Shannon and Simpson) were different between the two diet groups. Sixty- three serum metabolites differed between KD and RMBD-fed dogs with the majority reflecting the differences in macronutrient composition of the two diets.Fecal IAP, IgG and IgA were significantly higher in RMBD dogs compared to KD dogs, while systemic markers of inflammation, including serum c-reactive protein (CRP), galectin, secretory receptor of advanced glycation end-products (sRAGE), haptoglobin, and serum IgG were similar in dogs fed either diet. Discussion: Diet composition significantly affected fecal microbiota composition and metabolome. Although it had a potentially beneficial effect on local inflammatory markers, feeding RMBD had no impact on systemic inflammation. The influence of these changes on long term health outcomes provides an area for future study.

2.
J Vet Med Educ ; 50(2): 183-191, 2023 Apr.
Article in English | MEDLINE | ID: mdl-35143362

ABSTRACT

This study investigated equine nutrition knowledge and educational needs of licensed veterinarians in the United States who were exclusively or predominately equine practitioners. It found veterinarians regard their peers as an important resource of nutritional knowledge, ranking ahead of all other sources except a PhD equine nutritionist. Interestingly, only 21% of veterinarians felt good about their knowledge level in equine nutrition after graduating from veterinary school. Although veterinarians in this study reported equine nutrition to be an area of weakness, 75% had not pursued continuing education in the field of nutrition within the last year. Additionally, they devoted only 65 minutes per year on average to improving their knowledge of equine nutrition, yet the majority (82.2%) had been providing nutritional advice to clients. This study revealed that time spent practicing veterinary medicine increases (p < .001) a veterinarian's self-perceived knowledge level of equine nutrition, shifting from just below average after graduation from veterinary school to just above average at the time of this study. The majority (70%) of veterinarians in this study believe nutrition is very important in their practice philosophy, and 71% showed interest in taking online continuing education courses; thus, curriculum should be developed and offered in areas of need as identified by this study. These areas include insulin resistance, equine gastric ulcer syndrome, equine metabolic syndrome, performance horses, equine pituitary pars intermedia dysfunction, equine polysaccharide storage myopathy, and arthritis/joint pain, along with how to assess nutritional status during general wellness examinations.


Subject(s)
Animal Nutritional Physiological Phenomena , Clinical Competence , Veterinarians , Animals , Humans , Curriculum , Education, Continuing , Education, Distance , Education, Veterinary , Horses , Surveys and Questionnaires , Veterinarians/psychology , Veterinarians/statistics & numerical data , Clinical Competence/statistics & numerical data , Needs Assessment , United States , Licensure , Male , Female , Adult , Middle Aged
3.
J Vector Ecol ; 47(2): 179-187, 2022 12.
Article in English | MEDLINE | ID: mdl-36314672

ABSTRACT

Woody plant encroachment into grasslands is occurring worldwide, affecting ecosystems in ways that likely influence mosquito-borne disease transmission. In the U.S. Great Plains, encroachment by eastern redcedar (Juniperus virginiana) (ERC) may be expanding conducive habitat for mosquitoes and their hosts, but few studies have evaluated associations between ERC encroachment and West Nile virus (WNV). To test the hypotheses that mosquito abundance and WNV-infected mosquitoes increase with increasing ERC cover, we collected mosquitoes in 32 sites in Oklahoma reflecting various ERC encroachment stages. We found support for our first hypothesis, as mean abundance of Aedes albopictus increased significantly with ERC cover. However, Psorophora columbiae and Anopheles quadrimaculatus abundance decreased with increasing ERC. There was no significant association with ERC for other mosquito species. We could not test our second hypothesis due to low WNV prevalence, but the only detected WNV-infected pool of mosquitoes (Cx. tarsalis) was collected in ERC. Our results suggest ERC encroachment increases abundance of at least one medically important mosquito species, but further research is needed to clarify how encroachment affects ecology of the entire WNV disease system through changes to vector and host communities, vector-host interactions, and thus disease transmission and prevalence. Understanding relationships between woody plant encroachment and the nidus of infection for mosquito-borne diseases will be crucial for targeting public health efforts, including land management activities that limit and/or eradicate woody plant encroachment, particularly in areas with high levels of disease risk.


Subject(s)
Aedes , Culex , Forests , West Nile Fever , West Nile virus , Animals , Ecosystem , Mosquito Vectors , Oklahoma
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