Adaptive changes of human islets to an obesogenic environment in the mouse

被引:32
作者
Gargani, S. [1 ,2 ,3 ]
Thevenet, J. [1 ,2 ,3 ]
Yuan, J. E. [1 ]
Lefebvre, B. [1 ,2 ]
Delalleau, N. [1 ,2 ,3 ]
Gmyr, V. [1 ,2 ,3 ]
Hubert, T. [1 ,2 ,3 ]
Duhamel, A. [1 ,2 ,4 ,5 ]
Pattou, F. [1 ,2 ,3 ,4 ]
Kerr-Conte, J. [1 ,2 ,3 ,4 ]
机构
[1] Univ Lille Nord France, Lille, France
[2] UDSL, IMPRT, Lille, France
[3] INSERM, Fac Med, Biotherapies Diabet U859, F-59045 Lille, France
[4] Ctr Hosp Reg Univ Lille, Lille, France
[5] CERIM, Fac Med, Lille, France
关键词
Expansion; High-fat diet; Human beta cells; Human islets; Obesity; Transplantation; PRIMARY GRAFT FUNCTION; BETA-CELL REPLICATION; INSULIN-RESISTANCE; IN-VIVO; STEM-CELLS; NUDE-MICE; PROLIFERATION; TRANSPLANTATION; DIFFERENTIATION; MECHANISMS;
D O I
10.1007/s00125-012-2775-y
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
In this study, we used an immunodeficient mouse model to explore, in vivo, the longitudinal adaptation of human islets to an obesogenic environment. Non-diabetic Rag2 (-/-) mice (n = 61) were transplanted with human islets (400 islet equivalents [IEQ]) from six pancreases: four non-diabetic and two with overt metabolic dysfunction (older, high HbA(lc) or history of diabetes). Animals were fed for 12 weeks with a control or high-fat diet (HFD), and followed for weight, serum triacylglycerol, fasting blood glucose and human C-peptide. After the mice were killed, human grafts and the endogenous pancreas were analysed for endocrine volume, distribution of beta and alpha cells, and proliferation. Transplanted mice on an HFD gained significantly more weight (p < 0.001) and had higher fasting glycaemia (2-12 weeks; p = 0.0002) and consistently higher fasting human C-peptide levels (2-12 weeks; p = 0.04) compared with those on the control diet. Histology demonstrated doubling of human islet graft volume at 12 weeks in animals on the HFD and increased beta cell volume (p < 0.001), but no change in alpha cell volume. Human islet function (hyperbolic product HOMA2%BS) at 12 weeks was four times lower in HFD animals (p < 0.001 vs controls) because of insufficient beta cell adaptation to decreased (70%) sensitivity (HOMA%S). Human islets obtained from donors with metabolic dysfunction failed to adapt to the HFD. This longitudinal study provides direct evidence that human islets adapt both endocrine and beta cell mass, function and gene expression to obesity in vivo. The present model will facilitate the identification of mechanisms by which human islets adapt to obesity in vivo and the cell type(s) responsible, and factors predisposing human beta cells to decompensation.
引用
收藏
页码:350 / 358
页数:9
相关论文
共 33 条
[1]   Accurate assessment of β-cell function -: The hyperbolic correction [J].
Bergman, RN ;
Ader, M ;
Huecking, K ;
Van Citters, G .
DIABETES, 2002, 51 :S212-S220
[2]   POTENT INHIBITORY EFFECTS OF TRANSPLANTABLE RAT GLUCAGONOMAS AND INSULINOMAS ON THE RESPECTIVE ENDOGENOUS ISLET CELLS ARE ASSOCIATED WITH PANCREATIC APOPTOSIS [J].
BLUME, N ;
SKOUV, J ;
LARSSON, LI ;
HOLST, JJ ;
MADSEN, OD .
JOURNAL OF CLINICAL INVESTIGATION, 1995, 96 (05) :2227-2235
[3]  
Bouwens L, 1998, J PATHOL, V184, P234
[4]   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
[5]   Quantitative in vivo islet potency assay in normoglycemic nude mice correlates with primary graft function after clinical transplantation [J].
Caiazzo, Robert ;
Gmyr, Valery ;
Kremer, Bertrand ;
Hubert, Thomas ;
Soudan, Benoit ;
Lukowiak, Bruno ;
Vandewalle, Brigitte ;
Vantyghem, Marie-Christine ;
Pattou, Francois ;
Kerr-Conte, Julie .
TRANSPLANTATION, 2008, 86 (02) :360-363
[6]   Unexpected trafficking of immune cells within the adipose tissue during the onset of obesity [J].
Duffaut, Carine ;
Galitzky, Jean ;
Lafontan, Max ;
Bouloumie, Anne .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2009, 384 (04) :482-485
[7]   Obesity and Type 2 Diabetes: What Can Be Unified and What Needs to Be Individualized? [J].
Eckel, Robert H. ;
Kahn, Steven E. ;
Ferrannini, Ele ;
Goldfine, Allison B. ;
Nathan, David M. ;
Schwartz, Michael W. ;
Smith, Robert J. ;
Smith, Steven R. .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2011, 96 (06) :1654-1663
[8]   EFFECTS OF TRANSPLANTATION AND RESECTION OF A RADIATION-INDUCED RAT INSULINOMA ON GLUCOSE-HOMEOSTASIS AND THE ENDOCRINE PANCREAS [J].
FLATT, PR ;
TAN, KS ;
BAILEY, CJ ;
POWELL, CJ ;
SWANSTONFLATT, SK ;
MARKS, V .
BRITISH JOURNAL OF CANCER, 1986, 54 (04) :685-692
[9]   Adult human cytokeratin 19-positive cells reexpress insulin promoter factor 1 in vitro - Further evidence for pluripotent pancreatic stem cells in humans [J].
Gmyr, V ;
Kerr-Conte, J ;
Belaich, S ;
Vandewalle, B ;
Leteurtre, E ;
Vantyghem, MC ;
Lecomte-Houcke, M ;
Proye, C ;
Lefebvre, J ;
Pattou, F .
DIABETES, 2000, 49 (10) :1671-1680
[10]   LKB1 Regulates Pancreatic β Cell Size, Polarity, and Function [J].
Granot, Zvi ;
Swisa, Avital ;
Magenheim, Judith ;
Stolovich-Rain, Miri ;
Fujimoto, Wakako ;
Manduchi, Elisabetta ;
Miki, Takashi ;
Lennerz, Jochen K. ;
Stoeckert, Christian J., Jr. ;
Meyuhas, Oded ;
Seino, Susumu ;
Permutt, M. Alan ;
Piwnica-Worms, Helen ;
Bardeesy, Nabeel ;
Dor, Yuval .
CELL METABOLISM, 2009, 10 (04) :296-308