Isabel R. Hsu, Ph.D.

2008 Physiology and Biophysics University of Southern California, Los Angeles, CA, United States 
Endocrinology/Metabolism, Diabetes
"Isabel Hsu"
Mean distance: 16.95 (cluster 29)


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Richard N. Bergman grad student 2008 USC
 (The physiological and pathophysiological role of sympathetic nervous system induced pulsatile lipolysis in metabolism.)
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Kabir M, Iyer MS, Richey JM, et al. (2015) CB1R antagonist increases hepatic insulin clearance in fat-fed dogs likely via upregulation of liver adiponectin receptors. American Journal of Physiology. Endocrinology and Metabolism. 309: E747-58
Woolcott OO, Richey JM, Kabir M, et al. (2015) Corrections: High-Fat Diet-Induced Insulin Resistance does not Increase Plasma Anandamide Levels or Potentiate Anandamide Insulinotropic Effect in Isolated Canine Islets. Plos One. 10: e0131033
Woolcott OO, Richey JM, Kabir M, et al. (2015) High-fat diet-induced insulin resistance does not increase plasma anandamide levels or potentiate anandamide insulinotropic effect in isolated canine islets. Plos One. 10: e0123558
Ader M, Stefanovski D, Kim SP, et al. (2014) Hepatic insulin clearance is the primary determinant of insulin sensitivity in the normal dog. Obesity (Silver Spring, Md.). 22: 1238-45
Kim SP, Woolcott OO, Hsu IR, et al. (2012) CB(1) antagonism restores hepatic insulin sensitivity without normalization of adiposity in diet-induced obese dogs. American Journal of Physiology. Endocrinology and Metabolism. 302: E1261-8
Woolcott OO, Bergman RN, Richey JM, et al. (2012) Simplified method to isolate highly pure canine pancreatic islets. Pancreas. 41: 31-8
Kabir M, Stefanovski D, Hsu IR, et al. (2011) Large size cells in the visceral adipose depot predict insulin resistance in the canine model. Obesity (Silver Spring, Md.). 19: 2121-9
Stefanovski D, Richey JM, Woolcott O, et al. (2011) Consistency of the disposition index in the face of diet induced insulin resistance: potential role of FFA. Plos One. 6: e18134
Hsu IR, Zuniga E, Bergman RN. (2010) Pulsatile changes in free fatty acids augment hepatic glucose production and preserves peripheral glucose homeostasis. American Journal of Physiology. Endocrinology and Metabolism. 299: E131-6
Richey JM, Woolcott OO, Stefanovski D, et al. (2009) Rimonabant prevents additional accumulation of visceral and subcutaneous fat during high-fat feeding in dogs. American Journal of Physiology. Endocrinology and Metabolism. 296: E1311-8
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