Alterations in β-Cell Calcium Dynamics and Efficacy Outweigh Islet Mass Adaptation in Compensation of Insulin Resistance and Prediabetes Onset

被引:56
作者
Chen, Chunguang [1 ,2 ,3 ]
Chmelova, Helena [1 ,2 ,3 ]
Cohrs, Christian M. [1 ,2 ,3 ]
Chouinard, Julie A. [1 ,2 ,3 ]
Jahn, Stephan R. [1 ,2 ,3 ]
Stertmann, Julia [1 ,2 ,3 ]
Uphues, Ingo [4 ]
Speier, Stephan [1 ,2 ,3 ]
机构
[1] Tech Univ Dresden, Helmholtz Zentrum Munchen, Univ Clin Carl Gustav Carus, Paul Langerhans Inst Dresden, Neuherberg, Germany
[2] Tech Univ Dresden, Fac Med, CRTD, German Res Fdn, Dresden, Germany
[3] German Ctr Diabet Res DZD, Munich, Germany
[4] Boehringer Ingelheim Pharma GmbH & Co KG, Ingelheim, Germany
关键词
HIGH-FAT DIET; IN-VIVO; DIABETES ONSET; MOUSE MODEL; GLUCOSE; MICE; SECRETION; OBESITY; RATS; SENSITIVITY;
D O I
10.2337/db15-1718
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Emerging insulin resistance is normally compensated by increased insulin production of pancreatic beta-cells, thereby maintaining normoglycemia. However, it is unclear whether this is achieved by adaptation of beta-cell function, mass, or both. Most importantly, it is still unknown which of these adaptive mechanisms fail when type 2 diabetes develops. We performed longitudinal in vivo imaging of beta-cell calcium dynamics and islet mass of transplanted islets of Langerhans throughout diet-induced progression from normal glucose homeostasis, through compensation of insulin resistance, to prediabetes. The results show that compensation of insulin resistance is predominated by alterations of beta-cell function, while islet mass only gradually expands. Hereby, functional adaptation is mediated by increased calcium efficacy, which involves Epac signaling. Prior to prediabetes, beta-cell function displays decreased stimulated calcium dynamics, whereas islet mass continues to increase through prediabetes onset. Thus, our data reveal a predominant role of islet function with distinct contributions of triggering and amplifying pathway in the in vivo processes preceding diabetes onset. These findings support protection and recovery of beta-cell function as primary goals for prevention and treatment of diabetes and provide insight into potential therapeutic targets.
引用
收藏
页码:2676 / 2685
页数:10
相关论文
共 52 条
[1]   Marked hyperleptinemia after high-fat diet associated with severe glucose intolerance in mice [J].
Ahrén, B ;
Scheurink, AJW .
EUROPEAN JOURNAL OF ENDOCRINOLOGY, 1998, 139 (04) :461-467
[2]  
Ahrén J, 2010, ISLETS, V2, P353, DOI 10.4161.islets.2.6.13619
[3]   Pancreatic β-Cell Adaptive Plasticity in Obesity Increases Insulin Production but Adversely Affects Secretory Function [J].
Alarcon, Cristina ;
Boland, Brandon B. ;
Uchizono, Yuji ;
Moore, Patrick C. ;
Peterson, Bryan ;
Rajan, Suryalekha ;
Rhodes, Olivia S. ;
Noske, Andrew B. ;
Haataja, Leena ;
Arvan, Peter ;
Marsh, Bradly J. ;
Austin, Jotham ;
Rhodes, Christopher J. .
DIABETES, 2016, 65 (02) :438-450
[4]   CALCIUM-INDEPENDENT POTENTIATION OF INSULIN RELEASE BY CYCLIC-AMP IN SINGLE BETA-CELLS [J].
AMMALA, C ;
ASHCROFT, FM ;
RORSMAN, P .
NATURE, 1993, 363 (6427) :356-358
[5]   A novel approach to increase human islet cell mass while preserving β-cell function [J].
Beattie, GM ;
Montgomery, AMP ;
Lopez, AD ;
Hao, E ;
Perez, B ;
Just, ML ;
Lakey, JRT ;
Hart, ME ;
Hayek, A .
DIABETES, 2002, 51 (12) :3435-3439
[6]   β-Cell Growth and Regeneration: Replication Is Only Part of the Story [J].
Bonner-Weir, Susan ;
Li, Wan-Chun ;
Ouziel-Yahalom, Limor ;
Guo, Lili ;
Weir, Gordon C. ;
Sharma, Arun .
DIABETES, 2010, 59 (10) :2340-2348
[7]   Mesenchymal stromal cells improve transplanted islet survival and islet function in a syngeneic mouse model [J].
Borg, Danielle J. ;
Weigelt, Marc ;
Wilhelm, Carmen ;
Gerlach, Michael ;
Bickle, Marc ;
Speier, Stephan ;
Bonifacio, Ezio ;
Hommel, Angela .
DIABETOLOGIA, 2014, 57 (03) :522-531
[8]   Increased β-cell apoptosis prevents adaptive increase in β-cell mass in mouse model of type 2 diabetes -: Evidence for role of islet amyloid formation rather than direct action of amyloid [J].
Butler, AE ;
Janson, J ;
Soeller, WC ;
Butler, PC .
DIABETES, 2003, 52 (09) :2304-2314
[9]   β-cell deficit and increased β-cell apoptosis in humans with type 2 diabetes [J].
Butler, AE ;
Janson, J ;
Bonner-Weir, S ;
Ritzel, R ;
Rizza, RA ;
Butler, PC .
DIABETES, 2003, 52 (01) :102-110
[10]   MECHANISM OF COMPENSATORY HYPERINSULINEMIA IN NORMOGLYCEMIC INSULIN-RESISTANT SPONTANEOUSLY HYPERTENSIVE RATS - AUGMENTED ENZYMATIC-ACTIVITY OF GLUCOKINASE IN BETA-CELLS [J].
CHEN, C ;
HOSOKAWA, H ;
BUMBALO, LM ;
LEAHY, JL .
JOURNAL OF CLINICAL INVESTIGATION, 1994, 94 (01) :399-404