Dapagliflozin Enhances Fat Oxidation and Ketone Production in Patients With Type 2 Diabetes

被引:187
作者
Daniele, Giuseppe [1 ]
Xiong, Juan [1 ]
Solis-Herrera, Carolina [1 ]
Merovci, Aurora [1 ]
Eldor, Roy [1 ]
Tripathy, Devjit [1 ]
DeFronzo, Ralph A. [1 ]
Norton, Luke [1 ]
Abdul-Ghani, Muhammad [1 ]
机构
[1] Univ Texas Hlth Sci Ctr San Antonio, Div Diabet, San Antonio, TX 78229 USA
基金
美国国家卫生研究院;
关键词
COTRANSPORTER; 2; INHIBITION; INSULIN-RESISTANCE; MITOCHONDRIAL DYSFUNCTION; SGLT2; INHIBITORS; SENSITIVITY; METABOLISM; OUTCOMES; SHIFT;
D O I
10.2337/dc15-2688
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
OBJECTIVE Insulin resistance is associated with mitochondria! dysfunction and decreased ATP synthesis. Treatment of individuals with type 2 diabetes mellitus (T2DM) with sodium glucose transporter 2 inhibitors (SGLT2i) improves insulin sensitivity. However, recent reports have demonstrated development of ketoacidosis in subjects with T2DM treated with SGLT2i. The current study examined the effect of improved insulin sensitivity with dapagliflozin on 1) mitochondria! ATP synthesis and 2) substrate oxidation rates and ketone production. RESEARCH DESIGN AND METHODS The study randomized 18 individuals with T2DM to dapagliflozin (n = 9) or placebo (n = 9). Before and after 2 weeks, subjects received an insulin clamp with tritiated glucose, indirect calorimetry, and muscle biopsies. RESULTS Dapagliflozin reduced fasting plasma glucose (167 +/- 13 to 128 +/- 6 mg/dL) and increased insulin-stimulated glucose disposal by 36% (P < 0.01). Glucose oxidation decreased (1.06 to 0.80 mg/kg . min, P < 0.05), whereas nonoxidative glucose disposal (glycogen synthesis) increased (2.74 to 4.74 mg/kg . min, P = 0.03). Dapagliflozin decreased basal glucose oxidation and increased lipid oxidation and plasma ketone concentration (0.05 to 0.19 mmol/L, P < 0.01) in association with an increase in fasting plasma glucagon (77 +/- 8 to 94 +/- 13, P < 0.01). Dapagliflozin reduced the ATP synthesis rate, which correlated with an increase in plasma ketone concentration. CONCLUSIONS Dapagliflozin improved insulin sensitivity and caused a shift from glucose to lipid oxidation, which, together with an increase in glucagon-to-insulin ratio, provide the metabolic basis for increased ketone production.
引用
收藏
页码:2036 / 2041
页数:6
相关论文
共 30 条
  • [1] SGLT2 Inhibitors and Cardiovascular Risk: Lessons Learned From the EMPA-REG OUTCOME Study
    Abdul-Ghani, Muhammad
    Del Prato, Stefano
    Chilton, Robert
    DeFronzo, Ralph A.
    [J]. DIABETES CARE, 2016, 39 (05) : 717 - 725
  • [2] Deleterious action of FA metabolites on ATP synthesis: possible link between lipotoxicity, mitochondrial dysfunction, and insulin resistance
    Abdul-Ghani, Muhammad A.
    Muller, Florian L.
    Liu, Yuhong
    Chavez, Alberto O.
    Balas, Bogdan
    Zuo, Pengou
    Chang, Zhi
    Tripathy, Devjit
    Jani, Rucha
    Molina-Carrion, Marjorie
    Monroy, Adriana
    Folli, Franco
    Van Remmen, Holly
    DeFronzo, Ralph A.
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2008, 295 (03): : E678 - E685
  • [3] Dapagliflozin for the treatment of type 2 diabetes
    Abdul-Ghani, Muhammad A.
    DeFronzo, Ralph A.
    [J]. EXPERT OPINION ON PHARMACOTHERAPY, 2013, 14 (12) : 1695 - 1703
  • [4] Role of Sodium-Glucose Cotransporter 2 (SGLT 2) Inhibitors in the Treatment of Type 2 Diabetes
    Abdul-Ghani, Muhammad A.
    Norton, Luke
    DeFronzo, Ralph A.
    [J]. ENDOCRINE REVIEWS, 2011, 32 (04) : 515 - 531
  • [5] [Anonymous], 2015, International Textbook of Diabetes Mellitus
  • [6] [Anonymous], 2015, FDA DRUG SAF COMM FD
  • [7] Evidence for Intramyocardial Disruption of Lipid Metabolism and Increased Myocardial Ketone Utilization in Advanced Human Heart Failure
    Bedi, Kenneth C., Jr.
    Snyder, Nathaniel W.
    Brandimarto, Jeffrey
    Aziz, Moez
    Mesaros, Clementina
    Worth, Andrew J.
    Wang, Linda L.
    Javaheri, Ali
    Blair, Ian A.
    Margulies, Kenneth B.
    Rame, J. Eduardo
    [J]. CIRCULATION, 2016, 133 (08) : 706 - 716
  • [8] Roles of glucose transport and glucose phosphorylation in muscle insulin resistance of NIDDM
    Bonadonna, RC
    DelPrato, S
    Bonora, E
    Saccomani, MP
    Gulli, G
    Natali, A
    Frascerra, S
    Pecori, N
    Ferrannini, E
    Bier, D
    Cobelli, DBC
    DeFronzo, RA
    [J]. DIABETES, 1996, 45 (07) : 915 - 925
  • [9] REGULATION OF GLYCOGEN-SYNTHASE BY GLUCOSE GLUCOSAMINE, AND GLUTAMINE-FRUCTOSE-6-PHOSPHATE AMIDOTRANSFERASE
    CROOK, ED
    ZHOU, JX
    DANIELS, M
    NEIDIGH, JL
    MCCLAIN, DA
    [J]. DIABETES, 1995, 44 (03) : 314 - 320
  • [10] Chronic Reduction of Plasma Free Fatty Acid Improves Mitochondrial Function and Whole-Body Insulin Sensitivity in Obese and Type 2 Diabetic Individuals
    Daniele, Giuseppe
    Eldor, Roy
    Merovci, Aurora
    Clarke, Geoffrey D.
    Xiong, Juan
    Tripathy, Devjit
    Taranova, Anna
    Abdul-Ghani, Muhammad
    DeFronzo, Ralph A.
    [J]. DIABETES, 2014, 63 (08) : 2812 - 2820