Duodenal-Jejunal Bypass Surgery Does Not Increase Skeletal Muscle Insulin Signal Transduction or Glucose Disposal in Goto-Kakizaki Type 2 Diabetic Rats

被引:19
作者
Gavin, Timothy P. [1 ,2 ,3 ,5 ]
Sloan, Ruben C., III [1 ,2 ]
Lukosius, Eric Z. [1 ,2 ]
Reed, Melissa A. [1 ,2 ]
Pender, John R. [4 ]
Van Boghossian [4 ]
Carter, Jacqueline J. [4 ]
McKernie, Robert D. [1 ,2 ,3 ]
Parikh, Kushal [1 ,2 ,3 ]
Price, J. William [3 ]
Tapscott, Edward B. [3 ]
Pories, Walter J. [4 ]
Dohm, G. Lynis [3 ]
机构
[1] E Carolina Univ, Human Performance Lab, Greenville, NC 27858 USA
[2] E Carolina Univ, Dept Exercise & Sport Sci, Greenville, NC 27858 USA
[3] E Carolina Univ, Dept Physiol, Greenville, NC 27858 USA
[4] E Carolina Univ, Dept Surg, Greenville, NC 27858 USA
[5] E Carolina Univ, E Carolina Diabet & Obes Inst, Greenville, NC 27858 USA
关键词
Type; 2; diabetes; Duodenal-jejunal bypass; Skeletal muscle glucose disposal; MORBIDLY OBESE; MODEL; RESPONSIVENESS; NORFLOXACIN; DEPOSITION; RESISTANCE; TOLERANCE; TRANSPORT; MELLITUS; WEIGHT;
D O I
10.1007/s11695-010-0304-y
中图分类号
R61 [外科手术学];
学科分类号
摘要
Duodenal-jejunal bypass (DJB) has been shown to reverse type 2 diabetes (T2DM) in Goto-Kakizaki (GK) rats, a rodent model of non-obese T2DM. Skeletal muscle insulin resistance is a hallmark decrement in T2DM. The aim of the current work was to investigate the effects of DJB on skeletal muscle insulin signal transduction and glucose disposal. It was hypothesized that DJB would increase skeletal muscle insulin signal transduction and glucose disposal in GK rats. DJB was performed in GK rats. Sham operations were performed in GK and nondiabetic Wistar-Kyoto (WKY) rats. At 2 weeks post-DJB, oral glucose tolerance (OGTT) was measured. At 3 weeks post-DJB, insulin-induced signal transduction and glucose disposal were measured in skeletal muscle. In GK rats and compared to sham operation, DJB did not (1) improve fasting glucose or insulin, (2) improve OGTT, or (3) increase skeletal muscle insulin signal transduction or glucose disposal. Interestingly, skeletal muscle glucose disposal was similar between WKY-Sham, GK-Sham, and GK-DJB. Bypassing of the proximal small intestine does not increase skeletal muscle glucose disposal. The lack of skeletal muscle insulin resistance in GK rats questions whether this animal model is adequate to investigate the etiology and treatments for T2DM. Additionally, bypassing of the foregut may lead to different findings in other animal models of T2DM as well as in T2DM patients.
引用
收藏
页码:231 / 237
页数:7
相关论文
共 40 条
  • [21] Duodenal-Jejunal Bypass Ameliorates Type 2 Diabetes Mellitus by Activating Insulin Signaling and Improving Glucose Utilization in the Brain
    Li, Na
    Yan, Qing-Tao
    Jing, Qi
    Pan, Rui-Yan
    Wang, Huai-Jie
    Jiang, Bin
    Li, Xian-Jun
    Wang, Yi
    Dong, Jun-Hong
    Wang, Xue-Jian
    Zhang, Mei-Jia
    Meng, Qing-Guo
    Li, Xiang-Zhen
    Liu, Zhi-Jun
    Gao, Zhi-Qin
    Qu, Mei-Hua
    OBESITY SURGERY, 2020, 30 (01) : 279 - 289
  • [22] Upregulation of IRS-1 Expression in Goto-Kakizaki Rats Following Roux-en-Y Gastric Bypass Surgery: Resolution of Type 2 Diabetes?
    Li, Shu-Qiang
    Zhou, Yong
    Wang, Yong
    Liu, Yuan
    Geng, Dong-Hua
    Liu, Jin-Gang
    TOHOKU JOURNAL OF EXPERIMENTAL MEDICINE, 2011, 225 (03) : 179 - 186
  • [23] Impairment of α1-adrenoceptor-mediated contractile activity in caudal arterial smooth muscle from Type 2 diabetic Goto-Kakizaki rats
    Mita, Mitsuo
    Kuramoto, Takuto
    Ito, Kazushi
    Toguchi-Senrui, Natsuko
    Hishinuma, Shigeru
    Walsh, Michael P.
    Shoji, Masaru
    CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY, 2010, 37 (03): : 350 - 357
  • [24] Expression of the skeletal muscle dystrophin-dystroglycan complex and syntrophin-nitric oxide synthase complex is severely affected in the type 2 diabetic Goto-Kakizaki rat
    Mulvey, C
    Harno, E
    Keenan, A
    Ohlendieck, K
    EUROPEAN JOURNAL OF CELL BIOLOGY, 2005, 84 (11) : 867 - 883
  • [25] The insulin resistance is reversed by exogenous 3,5,3′triiodothyronine in type 2 diabetic Goto-Kakizaki rats by an inflammatory-independent pathway
    Panveloski-Costa, Ana Carolina
    Tatagiba Kuwabara, Wilson Mitsuo
    Munhoz, Ana Claudia
    Lucena, Camila Ferraz
    Curi, Rui
    Carpinelli, Angelo Rafael
    Nunes, Maria Tereza
    ENDOCRINE, 2020, 68 (02) : 287 - 295
  • [26] Duodenal-Jejunal Bypass Improves Glycemia and Decreases SGLT1-Mediated Glucose Absorption in Rats With Streptozotocin-Induced Type 2 Diabetes
    Jurowich, Christian Ferdinand
    Rikkala, Prashanth Reddy
    Thalheimer, Andreas
    Wichelmann, Christian
    Seyfried, Florian
    Sander, Victor
    Kreissl, Michael
    Germer, Christoph-Thomas
    Koepsell, Hermann
    Otto, Christoph
    ANNALS OF SURGERY, 2013, 258 (01) : 89 - 97
  • [27] Preserving Duodenal-Jejunal (Foregut) Transit Does Not Impair Glucose Tolerance and Diabetes Remission Following Gastric Bypass in Type 2 Diabetes Sprague-Dawley Rat Model
    Dolo, Ponnie R.
    Yao, Libin
    Li, Chao
    Zhu, Xiaocheng
    Shi, Linsen
    Widjaja, Jason
    OBESITY SURGERY, 2018, 28 (05) : 1313 - 1320
  • [28] Protein kinase C delta contributes to increase in EP3 agonist-induced contraction in mesenteric arteries from type 2 diabetic Goto-Kakizaki rats
    Ishida, Keiko
    Matsumoto, Takayuki
    Taguchi, Kumiko
    Kamata, Katsuo
    Kobayashi, Tsuneo
    PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2012, 463 (04): : 593 - 602
  • [29] Shortening and intracellular Ca2+in ventricular myocytes and expression of genes encoding cardiac muscle proteins in early onset type 2 diabetic Goto-Kakizaki rats
    Salem, K. A.
    Adrian, T. E.
    Qureshi, M. A.
    Parekh, K.
    Oz, M.
    Howarth, F. C.
    EXPERIMENTAL PHYSIOLOGY, 2012, 97 (12) : 1281 - 1291
  • [30] Duodenal-jejunal bypass surgery on type 2 diabetic rats reduces the expression of matrix metalloproteinase-9 and tissue inhibitor of matrix metalloproteinase-1 in the thoracic aorta
    Maimaitiyusufu, Wubulikasimu
    Han Haifeng
    Yan Zhibo
    Zhang Xiang
    Liu Shaozhuang
    Zhang Guangyong
    Kasimu, Aimaiti
    Hu Sanyuan
    CHINESE MEDICAL JOURNAL, 2014, 127 (13) : 2423 - 2428