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GK 大鼠的胰岛结构和功能。

Islet structure and function in the GK rat.

机构信息

Laboratoire B2PE, Unité BFA, Université Paris-Diderot et CNRS EAC4413, F - 75205 Paris Cedex13, France.

出版信息

Adv Exp Med Biol. 2010;654:479-500. doi: 10.1007/978-90-481-3271-3_21.


DOI:10.1007/978-90-481-3271-3_21
PMID:20217511
Abstract

Type 2 diabetes mellitus (T2D) arises when the endocrine pancreas fails to secrete sufficient insulin to cope with the metabolic demand because of beta-cell secretory dysfunction and/or decreased beta-cell mass. Defining the nature of the pancreatic islet defects present in T2D has been difficult, in part because human islets are inaccessible for direct study. This review is aimed to illustrate to what extent the Goto-Kakizaki rat, one of the best characterized animal models of spontaneous T2D, has proved to be a valuable tool offering sufficient commonalities to study this aspect. A comprehensive compendium of the multiple functional GK islet abnormalities so far identified is proposed in this perspective. The pathogenesis of defective beta-cell number and function in the GK model is also discussed. It is proposed that the development of T2D in the GK model results from the complex interaction of multiple events: (i) several susceptibility loci containing genes responsible for some diabetic traits (distinct loci encoding impairment of beta-cell metabolism and insulin exocytosis, but no quantitative trait locus for decreased beta-cell mass); (ii) gestational metabolic impairment inducing an epigenetic programming of the offspring pancreas (decreased beta-cell neogenesis and proliferation) transmitted over generations; and (iii) loss of beta-cell differentiation related to chronic exposure to hyperglycaemia/hyperlipidaemia, islet inflammation, islet oxidative stress, islet fibrosis and perturbed islet vasculature.

摘要

2 型糖尿病(T2D)是由于内分泌胰腺由于β细胞分泌功能障碍和/或β细胞数量减少而无法分泌足够的胰岛素来满足代谢需求而发生的。由于人类胰岛无法进行直接研究,因此确定 T2D 中存在的胰岛缺陷的性质一直具有挑战性。这篇综述旨在说明,自发 T2D 的最佳特征动物模型之一——Goto-Kakizaki 大鼠在多大程度上已被证明是研究这一方面的宝贵工具,具有足够的共性。从这个角度提出了迄今为止已确定的多种功能性 GK 胰岛异常的综合纲要。还讨论了 GK 模型中β细胞功能和数量缺陷的发病机制。有人提出,GK 模型中 T2D 的发展是由多个事件的复杂相互作用引起的:(i)包含负责某些糖尿病特征的基因的多个易感基因座(编码β细胞代谢和胰岛素分泌缺陷的不同基因座,但没有β细胞数量减少的数量性状基因座);(ii)妊娠期代谢损伤导致后代胰腺的表观遗传编程(β细胞新生和增殖减少),并在几代人中传播;以及(iii)与长期高血糖/高脂血症、胰岛炎症、胰岛氧化应激、胰岛纤维化和胰岛血管紊乱有关的β细胞分化丧失。

相似文献

[1]
Islet structure and function in the GK rat.

Adv Exp Med Biol. 2010

[2]
The GK rat: a prototype for the study of non-overweight type 2 diabetes.

Methods Mol Biol. 2012

[3]
The GK rat beta-cell: a prototype for the diseased human beta-cell in type 2 diabetes?

Mol Cell Endocrinol. 2009-1-15

[4]
Islet endothelial activation and oxidative stress gene expression is reduced by IL-1Ra treatment in the type 2 diabetic GK rat.

PLoS One. 2009-9-9

[5]
Defective functional β-cell mass and Type 2 diabetes in the Goto-Kakizaki rat model.

Expert Rev Endocrinol Metab. 2007-11

[6]
Beta-cell mass depletion precedes the onset of hyperglycaemia in the GK rat, a genetic model of non-insulin-dependent diabetes mellitus.

Diabete Metab. 1995-12

[7]
Type 2 diabetes - a matter of failing beta-cell neogenesis? Clues from the GK rat model.

Diabetes Obes Metab. 2007-11

[8]
Implication of glycogen synthase kinase 3 in diabetes-associated islet inflammation.

J Endocrinol. 2020-1-1

[9]
Asiatic acid mitigates hyperglycemia and reduces islet fibrosis in Goto-Kakizaki rat, a spontaneous type 2 diabetic animal model.

Chin J Nat Med. 2015-7

[10]
Increased amounts of a high molecular weight insulin-like growth factor II (IGF-II) peptide and IGF-II messenger ribonucleic acid in pancreatic islets of diabetic Goto-Kakizaki rats.

Endocrinology. 1996-6

引用本文的文献

[1]
Effect of Postnatal Nutritional Environment Due to Maternal Diabetes on Beta Cell Mass Programming and Glucose Intolerance Risk in Male and Female Offspring.

Biomolecules. 2021-1-28

[2]
Integrated 16S rRNA Sequencing, Metagenomics, and Metabolomics to Characterize Gut Microbial Composition, Function, and Fecal Metabolic Phenotype in Non-obese Type 2 Diabetic Goto-Kakizaki Rats.

Front Microbiol. 2020-1-20

[3]
Nkx6.1 decline accompanies mitochondrial DNA reduction but subtle nucleoid size decrease in pancreatic islet β-cells of diabetic Goto Kakizaki rats.

Sci Rep. 2017-11-15

[4]
Islet Stellate Cells Isolated from Fibrotic Islet of Goto-Kakizaki Rats Affect Biological Behavior of Beta-Cell.

J Diabetes Res. 2016

[5]
Delta Cell Hyperplasia in Adult Goto-Kakizaki (GK/MolTac) Diabetic Rats.

J Diabetes Res. 2015

[6]
Hepatic ALT isoenzymes are elevated in gluconeogenic conditions including diabetes and suppressed by insulin at the protein level.

Diabetes Metab Res Rev. 2015-9

[7]
Isolation and characterization of islet stellate cells in rat.

Islets. 2014

[8]
High glucose aggravates the detrimental effects of pancreatic stellate cells on Beta-cell function.

Int J Endocrinol. 2014-7-3

[9]
Stimulation of insulin secretion by large-dose oral arginine administration in healthy adults.

Exp Ther Med. 2013-7

[10]
Redox homeostasis in pancreatic β cells.

Oxid Med Cell Longev. 2012-12-13

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