Programmed disorders of β-cell development and function as one cause for type 2 diabetes? -: The GK rat paradigm

被引:126
作者
Portha, B [1 ]
机构
[1] Univ D Diderot Paris 7, CNRS, UMR 7059, Lab Physiopathol Nutr, F-75251 Paris, France
关键词
type; 2; diabetes; GK rat; beta-cell; development; glucotoxicity; metabolic programming; genetic;
D O I
10.1002/dmrr.566
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Now that the reduction in beta-mass has been clearly established in humans with type 2 diabetes mellitus (T2DM) [1-4], the debate focuses on the possible mechanisms responsible for decreased beta-cell number and impaired P-cell function and their multifactorial etiology. Appropriate inbred rodent models are essential tools for identification of genes and environmental factors that increase the risk of abnormal p-cell function and of T2DM. The information available in the Goto-Kakizaki (GK) rat, one of the best characterized animal models of spontaneous T2DM, are reviewed in such a perspective. We propose that the defective P-cell mass and function in the GK model reflect the complex interactions of three pathogenic players: (1) several independent loci containing genes causing impaired insulin secretion; (2) gestational metabolic impairment inducing a programming of endocrine pancreas (decreased p-cell neogenesis) which is transmitted to the next generation; and (3) secondary (acquired) loss of beta-cell differentiation due to chronic exposure to hyperglycemia (glucotoxicity). An important message is that the 'heritable' determinants of T2DM are not simply dependant on genetic factors, but probably involve transgenerational epigenetic responses. Copyright (c) 2005 John Wiley & Sons, Ltd.
引用
收藏
页码:495 / 504
页数:10
相关论文
共 66 条
[31]   Clinical review 135 -: The importance of β-cell failure in the development and progression of type 2 diabetes [J].
Kahn, SE .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2001, 86 (09) :4047-4058
[32]   ENDOCRINE PANCREAS OF FETUS FROM DIABETIC PREGNANT RAT [J].
KERVRAN, A ;
GUILLAUME, M ;
JOST, A .
DIABETOLOGIA, 1978, 15 (05) :387-393
[33]   Genomic imprinting and epigenetic reprogramming: Unearthing the garden of forking paths [J].
Kierszenbaum, AL .
MOLECULAR REPRODUCTION AND DEVELOPMENT, 2002, 63 (03) :269-272
[34]  
KLOPPEL G, 1985, SURV SYN PATHOL RES, V4, P110
[35]  
Kwong WY, 2000, DEVELOPMENT, V127, P4195
[36]   Disturbed development of the preimplantation embryo in the insulin-dependent diabetic BB/E rat [J].
Lea, RG ;
McCracken, JE ;
McIntyre, SS ;
Smith, W ;
Baird, JD .
DIABETES, 1996, 45 (11) :1463-1470
[37]   Phenotyping of individual pancreatic islets locates genetic defects in stimulus secretion coupling to Niddm1i within the major diabetes locus in GK rats [J].
Lin, JM ;
Ortsäter, H ;
Fakhrai-Rad, H ;
Galli, J ;
Luthman, H ;
Bergsten, P .
DIABETES, 2001, 50 (12) :2737-2743
[38]   Estrogen inhibits mechanical strain-induced mitogenesis in human vascular smooth muscle cells via down-regulation of Sp-1 [J].
Ling, SH ;
Deng, G ;
Ives, HE ;
Chatterjee, K ;
Rubanyi, GM ;
Komesaroff, PA ;
Sudhir, K .
CARDIOVASCULAR RESEARCH, 2001, 50 (01) :108-114
[39]  
Maassen JA, 1996, DIABETOLOGIA, V39, P375
[40]   Mitochondrial function in normal and diabetic β-cells [J].
Maechler, P ;
Wollheim, CB .
NATURE, 2001, 414 (6865) :807-812