Open Access. Powered by Scholars. Published by Universities.®

Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

Veterinary Medicine

Veterinary Science Faculty Publications

Series

Blotting, Western

Publication Year

Articles 1 - 3 of 3

Full-Text Articles in Medicine and Health Sciences

Svsxp: A Strongylus Vulgaris Antigen With Potential For Prepatent Diagnosis, Ulla V. Andersen, Daniel K. Howe, Sriveny Dangoudoubiyam, Nils Toft, Craig R. Reinemeyer, Eugene T. Lyons, Susanne N. Olsen, Jesper Monrad, Peter Nejsum, Martin K. Nielsen Apr 2013

Svsxp: A Strongylus Vulgaris Antigen With Potential For Prepatent Diagnosis, Ulla V. Andersen, Daniel K. Howe, Sriveny Dangoudoubiyam, Nils Toft, Craig R. Reinemeyer, Eugene T. Lyons, Susanne N. Olsen, Jesper Monrad, Peter Nejsum, Martin K. Nielsen

Veterinary Science Faculty Publications

BACKGROUND: Strongyle parasites are ubiquitous in grazing horses. Strongylus vulgaris, the most pathogenic of the large strongyles, is known for its extensive migration in the mesenteric arterial system. The lifecycle of S. vulgaris is characterised by a long prepatent period where the migrating larvae are virtually undetectable as there currently is no test available for diagnosing prepatent S. vulgaris infection. Presence of S. vulgaris larvae in the arterial system causes endarteritis and thrombosis with a risk of non-strangulating intestinal infarctions. Emergence of anthelmintic resistance among cyathostomins has led to recommendations of reduced treatment intensity by targeting horses that exceed a …


Transcriptional Adaptations Following Exercise In Thoroughbred Horse Skeletal Muscle Highlights Molecular Mechanisms That Lead To Muscle Hypertrophy, Beatrice A. Mcgivney, Suzanne S. Eivers, David E. Machugh, James N. Macleod, Grace M. O'Gorman, Stephen D.E. Park, Lisa M. Katz, Emmeline W. Hill Dec 2009

Transcriptional Adaptations Following Exercise In Thoroughbred Horse Skeletal Muscle Highlights Molecular Mechanisms That Lead To Muscle Hypertrophy, Beatrice A. Mcgivney, Suzanne S. Eivers, David E. Machugh, James N. Macleod, Grace M. O'Gorman, Stephen D.E. Park, Lisa M. Katz, Emmeline W. Hill

Veterinary Science Faculty Publications

BACKGROUND: Selection for exercise-adapted phenotypes in the Thoroughbred racehorse has provided a valuable model system to understand molecular responses to exercise in skeletal muscle. Exercise stimulates immediate early molecular responses as well as delayed responses during recovery, resulting in a return to homeostasis and enabling long term adaptation. Global mRNA expression during the immediate-response period has not previously been reported in skeletal muscle following exercise in any species. Also, global gene expression changes in equine skeletal muscle following exercise have not been reported. Therefore, to identify novel genes and key regulatory pathways responsible for exercise adaptation we have used equine-specific …


Allelic Heterogeneity At The Equine Kit Locus In Dominant White (W) Horses, Bianca Haase, Samantha A. Brooks, Angela Schlumbaum, Pedro J. Azor, Ernest Bailey, Ferial Alaeddine, Meike Mevissen, Dominik Burger, Pierre-André Poncet, Stefan Rieder, Tosso Leeb Nov 2007

Allelic Heterogeneity At The Equine Kit Locus In Dominant White (W) Horses, Bianca Haase, Samantha A. Brooks, Angela Schlumbaum, Pedro J. Azor, Ernest Bailey, Ferial Alaeddine, Meike Mevissen, Dominik Burger, Pierre-André Poncet, Stefan Rieder, Tosso Leeb

Veterinary Science Faculty Publications

White coat color has been a highly valued trait in horses for at least 2,000 years. Dominant white (W) is one of several known depigmentation phenotypes in horses. It shows considerable phenotypic variation, ranging from approximately 50% depigmented areas up to a completely white coat. In the horse, the four depigmentation phenotypes roan, sabino, tobiano, and dominant white were independently mapped to a chromosomal region on ECA 3 harboring the KIT gene. KIT plays an important role in melanoblast survival during embryonic development. We determined the sequence and genomic organization of the approximately 82 kb equine KIT gene. A mutation …