Literature DB >> 19074471

Gene expression analysis of hepatic roles in cause and development of diabetes in Goto-Kakizaki rats.

Richard R Almon1, Debra C DuBois, William Lai, Bai Xue, Jing Nie, William J Jusko.   

Abstract

Progression of diabetes was studied in male Goto-Kakizaki (GK) spontaneously diabetic rats between 4 and 20 weeks of age, and compared with Wistar-Kyoto (WKY) controls. Five animals from each strain were killed at 4, 8, 12, 16, and 20 weeks of age. Body weight, plasma glucose, and plasma insulin were measured. WKY rats showed a significantly larger weight gain than GK animals from 8 weeks of age onward. Plasma glucose was relatively stable in WKY. By contrast, plasma glucose was higher in GK than WKY even at 4 weeks and continued to increase up to 12 weeks and then maintained a hyperglycemic plateau throughout the remainder of the experiment. Plasma insulin was relatively stable in WKY from 8 weeks onward but was sharply elevated in GK between 4 and 8 weeks. After 8 weeks, insulin declined in GK with GK concentrations lower than WKY at 20 weeks, suggesting beta-cell failure. Gene expression in liver was explored using Affymetrix 230-2 gene arrays. Data mining identified 395 probe sets out of more than 31,000 that were differentially regulated. Excluding unidentifiable probe sets and considering duplicate probe sets, there were 311 genes that were expressed differently in the liver of the two strains. A functional analysis of these genes indicated that disruption of lipid metabolism in the liver is a major consequence of the chronic hyperglycemia in the GK strain. In addition, the results suggest that chronic inflammation contributes significantly to the development of diabetes in the GK rats.

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Year:  2008        PMID: 19074471     DOI: 10.1677/JOE-08-0404

Source DB:  PubMed          Journal:  J Endocrinol        ISSN: 0022-0795            Impact factor:   4.286


  32 in total

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2.  Mechanism-based disease progression modeling of type 2 diabetes in Goto-Kakizaki rats.

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Journal:  J Pharmacokinet Pharmacodyn       Date:  2010-12-03       Impact factor: 2.745

3.  Differential muscle gene expression as a function of disease progression in Goto-Kakizaki diabetic rats.

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Journal:  Mol Cell Endocrinol       Date:  2011-02-26       Impact factor: 4.102

4.  Transcriptional Regulation of Cytosolic Sulfotransferase 1C2 by Intermediates of the Cholesterol Biosynthetic Pathway in Primary Cultured Rat Hepatocytes.

Authors:  Elizabeth A Rondini; Asmita Pant; Thomas A Kocarek
Journal:  J Pharmacol Exp Ther       Date:  2015-10-01       Impact factor: 4.030

5.  Mechanistic population modeling of diabetes disease progression in Goto-Kakizaki rat muscle.

Authors:  Jing Nie; Debra C DuBois; William J Jusko; Richard R Almon
Journal:  Biopharm Drug Dispos       Date:  2010-12-05       Impact factor: 1.627

6.  Modeling diabetes disease progression and salsalate intervention in Goto-Kakizaki rats.

Authors:  Yanguang Cao; Debra C Dubois; Hao Sun; Richard R Almon; William J Jusko
Journal:  J Pharmacol Exp Ther       Date:  2011-09-08       Impact factor: 4.030

7.  Evidence for a glucocorticoid receptor beta splice variant in the rat and its physiological regulation in liver.

Authors:  Debra C DuBois; Siddharth Sukumaran; William J Jusko; Richard R Almon
Journal:  Steroids       Date:  2012-12-19       Impact factor: 2.668

Review 8.  Review of Pharmacokinetic Data of Different Drug Classes in Goto-Kakizaki Rats, a Non-obese Model for Type 2 Diabetes Mellitus: Case Studies and Perspectives.

Authors:  Harilal Patel; Poonam Giri; Nuggehally R Srinivas
Journal:  Eur J Drug Metab Pharmacokinet       Date:  2017-04       Impact factor: 2.441

9.  Analyses of copy number variation of GK rat reveal new putative type 2 diabetes susceptibility loci.

Authors:  Zhi-Qiang Ye; Shen Niu; Yang Yu; Hui Yu; Bao-Hong Liu; Rong-Xia Li; Hua-Sheng Xiao; Rong Zeng; Yi-Xue Li; Jia-Rui Wu; Yuan-Yuan Li
Journal:  PLoS One       Date:  2010-11-23       Impact factor: 3.240

10.  Food-intake dysregulation in type 2 diabetic Goto-Kakizaki rats: hypothesized role of dysfunctional brainstem thyrotropin-releasing hormone and impaired vagal output.

Authors:  K Zhao; Y Ao; R M Harper; V L W Go; H Yang
Journal:  Neuroscience       Date:  2013-05-20       Impact factor: 3.590

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