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A Multicenter Retrospective Study of 151 Renal Biopsies in Horses
Journal Article
Tyner, G. A., Nolen-Walston, R. D., Hall, T., Palmero, J. P., Couetil, L., Javsicas, L., Stack, A., Schott, H., Johnson, A., Hardefeldt, L., Gruntman, A., Sommardahl, C., Menzies-Gow, N. J., dePedro, P., Norman, T., Fennell, L. C., Axon, J. E., Lindborg, S., Aceto, H., Boston, R., & Engiles, J. A Multicenter Retrospective Study of 151 Renal Biopsies in Horses. Journal of Veterinary Internal Medicine, 25(3), 532-539. https://doi.org/10.1111/j.1939-1676.2011.0700.x

Regulation of platelet activating factor-induced equine platelet activation by intracellular kinases
Journal Article
Brooks, A. C., Menzies-Gow, N. J., Wheeler-Jones, C. P. D., Bailey, S. R., Elliott, J., & Cunningham, F. M. Regulation of platelet activating factor-induced equine platelet activation by intracellular kinases. Journal of Veterinary Pharmacology and Therapeutics, 32(2), 189-196. https://doi.org/10.1111/j.1365-2885.2008.01020.x

Lipopolysaccharide (LPS) can activate equine platelets directly or indirectly, via leukocyte-derived platelet activating factor (PAF). Thromboxane (Tx) production by LPS-stimulated equine platelets requires p38 MAPK and this kinase has been suggested... Read More about Regulation of platelet activating factor-induced equine platelet activation by intracellular kinases.