Jenny D. Chiu, Ph.D.

2009 Physiology and Biophysics University of Southern California, Los Angeles, CA, United States 
Endocrinology/Metabolism, Diabetes
"Jenny Chiu"
Mean distance: 16.95 (cluster 29)


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Richard N. Bergman grad student 2009 USC
 (Hemodynamic factors in the insulin resistance of obesity and hyperlipidemia.)
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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
Wang L, Wang X, Wang L, et al. (2012) Hepatic vascular endothelial growth factor regulates recruitment of rat liver sinusoidal endothelial cell progenitor cells. Gastroenterology. 143: 1555-1563.e2
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
Kolka CM, Harrison LN, Lottati M, et al. (2010) Diet-induced obesity prevents interstitial dispersion of insulin in skeletal muscle. Diabetes. 59: 619-26
Chiu JD, Kolka CM, Richey JM, et al. (2009) Experimental hyperlipidemia dramatically reduces access of insulin to canine skeletal muscle. Obesity (Silver Spring, Md.). 17: 1486-92
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