Denovan P. Begg
Affiliations: | University of Cincinnati, Cincinnati, OH |
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"Denovan Begg"Mean distance: 15.6 (cluster 23) | S | N | B | C | P |
Parents
Sign in to add mentorAndrew J. Sinclair | grad student | 2007-2011 | University of Cincinnati |
Richard Weisinger | grad student | 2007-2011 | Deakin University |
Stephen C. Woods | post-doc | 2011- | University of Cincinnati |
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Publications
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Mitchell CS, Premaratna SD, Bennett G, et al. (2021) Inhibition of the Renin-Angiotensin System Reduces Gene Expression of Inflammatory Mediators in Adipose Tissue Independent of Energy Balance. Frontiers in Endocrinology. 12: 682726 |
Begg DP, Sinclair AJ, Weisinger RS. (2020) Impaired Fluid Intake, but Not Sodium Appetite, in Aged Rats Is Mediated by the Cyclooxygenase-Prostaglandin E Pathway. Frontiers in Aging Neuroscience. 12: 19 |
Ip CK, Zhang L, Farzi A, et al. (2019) Amygdala NPY Circuits Promote the Development of Accelerated Obesity under Chronic Stress Conditions. Cell Metabolism |
Woods SC, May-Zhang AA, Begg DP. (2018) How and why do gastrointestinal peptides influence food intake? Physiology & Behavior |
Loh K, Zhang L, Brandon A, et al. (2017) Corrigendum to "Insulin controls food intake and energy balance via NPY neurons" [Mol Metabol 6 (2017) 574-584]. Molecular Metabolism. 6: 1562 |
Loh K, Zhang L, Brandon A, et al. (2017) Insulin controls food intake and energy balance via NPY neurons. Molecular Metabolism. 6: 574-584 |
Rodger P, Jois M, Weisinger R, et al. (2017) Molasses extract improves body composition and glucose metabolism of mice on a high-fat diet Journal of Nutrition & Intermediary Metabolism. 8: 82 |
Woods SC, May AA, Liu M, et al. (2016) Using the cerebrospinal fluid to understand ingestive behavior. Physiology & Behavior |
May AA, Liu M, Woods SC, et al. (2016) CCK increases the transport of insulin into the brain. Physiology & Behavior |
Obici S, Magrisso IJ, Ghazarian AS, et al. (2015) Moderate voluntary exercise attenuates the metabolic syndrome in melanocortin-4 receptor-deficient rats showing central dopaminergic dysregulation. Molecular Metabolism. 4: 692-705 |