Molecular mechanism by which pioglitazone preserves pancreatic β-cells in obese diabetic mice: evidence for acute and chronic actions as a PPARγ agonist

被引:55
作者
Kanda, Yukiko [1 ]
Shimoda, Masashi [1 ]
Hamamoto, Sumiko [1 ]
Tawaramoto, Kazuhito [1 ]
Kawasaki, Fumiko [1 ]
Hashiramoto, Mitsuru [1 ]
Nakashima, Koji [1 ]
Matsuki, Michihiro [1 ]
Kaku, Kohei [1 ]
机构
[1] Kawasaki Med Sch, Diabet & Endocrine Div, Kurashiki, Okayama, Japan
来源
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM | 2010年 / 298卷 / 02期
基金
日本学术振兴会;
关键词
beta-cell dysfunction; pioglitazone; oxidative stress; cell proliferation; cell apoptosis; ACTIVATED-RECEPTOR-GAMMA; INSULIN-RESISTANCE; OXIDATIVE STRESS; SECRETORY FUNCTION; GLUCOSE; ROSIGLITAZONE; PREVENTION; APOPTOSIS; MASS; TROGLITAZONE;
D O I
10.1152/ajpendo.00388.2009
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Kanda Y, Shimoda M, Hamamoto S, Tawaramoto K, Kawasaki F, Hashiramoto M, Nakashima K, Matsuki M, Kaku K. Molecular mechanism by which pioglitazone preserves pancreatic beta-cells in obese diabetic mice: evidence for acute and chronic actions as a PPAR gamma agonist. Am J Physiol Endocrinol Metab 298: E278-E286, 2010. First published November 17, 2009; doi:10.1152/ajpendo.00388.2009.-Pioglitazone preserves pancreatic beta-cell morphology and function in diabetic animal models. In this study, we investigated the molecular mechanisms by which pioglitazone protects beta-cells in diabetic db/db mice. In addition to the morphological analysis of the islets, gene expression profiles of the pancreatic islet were analyzed using laser capture microdissection and were compared with real-time RT-PCR of db/db and nondiabetic m/m mice treated with or without pioglitazone for 2 wk or 2 days. Pioglitazone treatment (2 wk) ameliorated dysmetabolism, increased islet insulin content, restored glucose-stimulated insulin secretion, and preserved beta-cell mass in db/db mice but had no significant effects in m/m mice. Pioglitazone upregulated genes that promote cell differentiation/proliferation in diabetic and nondiabetic mice. In db/db mice, pioglitazone downregulated the apoptosis-promoting caspase-activated DNase gene and upregulated anti-apoptosis-related genes. The above-mentioned effects of pioglitazone treatment were also observed after 2 days of treatment. By contrast, the oxidative stress-promoting NADPH oxidase gene was downregulated, and antioxidative stress-related genes were upregulated, in db/db mice treated with pioglitazone for 2 wk, rather than 2 days. Morphometric results for proliferative cell number antigen and 4-hydroxy-2-noneal modified protein were consistent with the results of gene expression analysis. The present results strongly suggest that pioglitazone preserves beta-cell mass in diabetic mice mostly by two ways; directly, by acceleration of cell differentiation/proliferation and suppression of apoptosis (acute effect); and indirectly, by deceleration of oxidative stress because of amelioration of the underlying metabolic disorder (chronic effect).
引用
收藏
页码:E278 / E286
页数:9
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