Bile Routing Modification Reproduces Key Features of Gastric Bypass in Rat

被引:33
作者
Goncalves, Daisy
Barataud, Aude
De Vadder, Filipe
Vinera, Jennifer
Zitoun, Carine
Duchampt, Adeline
Mithieux, Gilles
机构
[1] INSERM, F-69008 Lyon, France
[2] Univ Lyon, Lyon, France
[3] Univ Lyon 1, F-69622 Villeurbanne, France
关键词
bile acids; food preference; gastric bypass; gluconeogenesis; glucose control; VERTICAL SLEEVE GASTRECTOMY; FARNESOID-X-RECEPTOR; INTESTINAL GLUCONEOGENESIS; WEIGHT-LOSS; BARIATRIC SURGERY; INSULIN SENSITIVITY; ENERGY-EXPENDITURE; FOOD-INTAKE; ACIDS; GLUCOSE;
D O I
10.1097/SLA.0000000000001121
中图分类号
R61 [外科手术学];
学科分类号
摘要
Objective:To evaluate the role of bile routing modification on the beneficial effects of gastric bypass surgery on glucose and energy metabolism.Background:Gastric bypass surgery (GBP) promotes early improvements in glucose and energy homeostasis in obese diabetic patients. A suggested mechanism associates a decrease in hepatic glucose production to an enhanced intestinal gluconeogenesis. Moreover, plasma bile acids are elevated after GBP and bile acids are inhibitors of gluconeogenesis.Methods:In male Sprague-Dawley rats, we performed bile diversions from the bile duct to the midjejunum or the mid-ileum to match the modified bile delivery in the gut occurring in GBP. Body weight, food intake, glucose tolerance, insulin sensitivity, and food preference were analyzed. The expression of gluconeogenesis genes was evaluated in both the liver and the intestine.Results:Bile diversions mimicking GBP promote an increase in plasma bile acids and a marked improvement in glucose control. Bile bioavailability modification is causal because a bile acid sequestrant suppresses the beneficial effects of bile diversions on glucose control. In agreement with the inhibitory role of bile acids on gluconeogenesis, bile diversions promote a blunting in hepatic glucose production, whereas intestinal gluconeogenesis is increased in the gut segments devoid of bile. In rats fed a high-fat-high-sucrose diet, bile diversions improve glucose control and dramatically decrease food intake because of an acquired disinterest in fatty food.Conclusions:This study shows that bile routing modification is a key mechanistic feature in the beneficial outcomes of GBP.
引用
收藏
页码:1006 / 1015
页数:10
相关论文
共 47 条
[1]   Alterations of sucrose preference after Roux-en-Y gastric bypass [J].
Bueter, M. ;
Miras, A. D. ;
Chichger, H. ;
Fenske, W. ;
Ghatei, M. A. ;
Bloom, S. R. ;
Unwin, R. J. ;
Lutz, T. A. ;
Spector, A. C. ;
le Roux, C. W. .
PHYSIOLOGY & BEHAVIOR, 2011, 104 (05) :709-721
[2]   The worldwide epidemiology of type 2 diabetes mellitus-present and future perspectives [J].
Chen, Lei ;
Magliano, Dianna J. ;
Zimmet, Paul Z. .
NATURE REVIEWS ENDOCRINOLOGY, 2012, 8 (04) :228-236
[3]   Glucose-6-phosphatase flux in vitro is increased in type 2 diabetes [J].
Clore, JN ;
Stillman, J ;
Sugerman, H .
DIABETES, 2000, 49 (06) :969-974
[4]   Coordinated control of cholesterol catabolism to bile acids and of gluconeogenesis via a novel mechanism of transcription regulation linked to the fasted-to-fed cycle [J].
De Fabiani, E ;
Mitro, N ;
Gilardi, F ;
Caruso, D ;
Galli, G ;
Crestani, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (40) :39124-39132
[5]   Microbiota-Generated Metabolites Promote Metabolic Benefits via Gut-Brain Neural Circuits [J].
De Vadder, Filipe ;
Kovatcheva-Datchary, Petia ;
Goncalves, Daisy ;
Vinera, Jennifer ;
Zitoun, Carine ;
Duchampt, Adeline ;
Backhed, Fredrik ;
Mithieux, Gilles .
CELL, 2014, 156 (1-2) :84-96
[6]   The role of sodium-coupled glucose co-transporter 3 in the satiety effect of portal glucose sensing [J].
Delaere, Fabien ;
Duchampt, Adeline ;
Mounien, Lourdes ;
Seyer, Pascal ;
Duraffourd, Celine ;
Zitoun, Carina ;
Thorens, Bernard ;
Mithieux, Gilles .
MOLECULAR METABOLISM, 2013, 2 (01) :47-53
[7]   Bile Acids Acutely Stimulate Insulin Secretion of Mouse β-Cells via Farnesoid X Receptor Activation and KATP Channel Inhibition [J].
Duefer, Martina ;
Hoerth, Katrin ;
Wagner, Rebecca ;
Schittenhelm, Bjoern ;
Prowald, Susanne ;
Wagner, Thomas F. J. ;
Oberwinkler, Johannes ;
Lukowski, Robert ;
Gonzalez, Frank J. ;
Krippeit-Drews, Peter ;
Drews, Gisela .
DIABETES, 2012, 61 (06) :1479-1489
[8]   Mu-Opioid Receptors and Dietary Protein Stimulate a Gut-Brain Neural Circuitry Limiting Food Intake [J].
Duraffourd, Celine ;
De Vadder, Filipe ;
Goncalves, Daisy ;
Delaere, Fabien ;
Penhoat, Armelle ;
Brusset, Bleuenn ;
Rajas, Fabienne ;
Chassard, Dominique ;
Duchampt, Adeline ;
Stefanutti, Anne ;
Gautier-Stein, Amandine ;
Mithieux, Gilles .
CELL, 2012, 150 (02) :377-388
[9]   Differential Changes in Dietary Habits after Gastric Bypass Versus Gastric Banding Operations [J].
Ernst, Barbara ;
Thurnheer, Martin ;
Wilms, Britta ;
Schultes, Bernd .
OBESITY SURGERY, 2009, 19 (03) :274-280
[10]   Pck1 gene silencing in the liver improves glycemia control, insulin sensitivity, and dyslipidemia in db/db mice [J].
Gomez-Valades, Alicia G. ;
Mendez-Lucas, Andrs ;
Vidal-Alabro, Anna ;
Blasco, Francese X. ;
Chillon, Miguel ;
Bartrons, Ramon ;
Bermudez, Jordi ;
Perales, Jose C. .
DIABETES, 2008, 57 (08) :2199-2210