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中华肥胖与代谢病电子杂志 ›› 2018, Vol. 04 ›› Issue (03) : 160 -163. doi: 10.3877/cma.j.issn.2095-9605.2018.03.008

所属专题: 文献

综述

糖尿病动物模型在减重代谢外科基础研究中的初步应用
邱先杰1, 李伟正1, 杨湘武1,()   
  1. 1. 410013 长沙,中南大学湘雅三医院减重代谢外科
  • 收稿日期:2018-07-06 出版日期:2018-08-30
  • 通信作者: 杨湘武
  • 基金资助:
    中南大学湘雅三医院"新湘雅人才工程"精医助跑计划(JY201609)

Preliminary application of diabetic animal models on basic research of bariatric and metabolic surgery

Xianjie Qiu1, Weizheng Li1, Xiangwu Yang1()   

  • Received:2018-07-06 Published:2018-08-30
  • Corresponding author: Xiangwu Yang
引用本文:

邱先杰, 李伟正, 杨湘武. 糖尿病动物模型在减重代谢外科基础研究中的初步应用[J]. 中华肥胖与代谢病电子杂志, 2018, 04(03): 160-163.

Xianjie Qiu, Weizheng Li, Xiangwu Yang. Preliminary application of diabetic animal models on basic research of bariatric and metabolic surgery[J]. Chinese Journal of Obesity and Metabolic Diseases(Electronic Edition), 2018, 04(03): 160-163.

[1]
Bragg F,Holmes MV,Iona A, et al. Association Between Diabetes and Cause-Specific Mortality in Rural and Urban Areas of China[J]. Jama, 2017, 317(3):280-289.
[2]
Tejirian T,Jensen C,Dutson E. Bariatric surgery and type 2 diabetes mellitus: surgically induced remission[J]. Journal of Diabetes Science & Technology, 2008, 2(4):685-691.
[3]
Rubino F,Nathan DM,Eckel R H, et al. Metabolic Surgery in the Treatment Algorithm for Type 2 Diabetes: A Joint Statement by International Diabetes Organizations.[J]. Obesity Surgery, 2016, 39(11):1-20.
[4]
Mistry SB,Omana JJ,Kini S. Rat models for bariatric surgery and surgery for type 2 diabetes mellitus[J]. Obesity Surgery, 2009, 19(5):655-660.
[5]
孙兆峰, 王利, 夏作理. 2型糖尿病动物模型研究概要[J]. 中国微循环, 2008, 12(3):187-189.
[6]
Goyal SN,Reddy NM,Patil KR, et al. Challenges and issues with streptozotocin-induced diabetes - A clinically relevant animal model to understand the diabetes pathogenesis and evaluate therapeutics[J]. Chem Biol Interact, 2016, 244:49-63.
[7]
Parrino L,Milioli G,De Paolis F,et aI. Paradoxical insomnia:the role of CAP and arousals in sleep misperception [J]. Sleep Med, 2009, 10 (10):1139-1145
[8]
Reed MJ,Meszaros K,Entes LJ, et al. A new rat model of type 2 diabetes: The fat-fed, streptozotocin-treated rat[J]. Metabolism-clinical & Experimental, 2000, 49(11):1390-1394.
[9]
Srinivasan K,Viswanad BL,Kaul CL, et al. Combination of high-fat diet-fed and low-dose streptozotocin-treated rat: a model for type 2 diabetes and pharmacological screening[J]. Pharmacological Research the Official Journal of the Italian Pharmacological Society, 2005, 52(4):313-313.
[10]
李楠, 孙云峰, 范颖,等. 两种实验性糖尿病模型血糖血脂的比较研究[J]. 辽宁中医杂志, 2011(6):1220-1222.
[11]
李爱卿, 王志慧, 赵跃斌. 高糖高脂饲料诱导2型糖尿病大鼠模型[J]. 临床医药实践, 2005, 14(2):130-131.
[12]
杨架林, 李果, 刘优萍,等. 长期高脂饮食加小剂量链脲佐霉素建立人类普通2型糖尿病大鼠模型的研究[J]. 中国实验动物学报, 2003, 11(3):138-141.
[13]
徐文平. 不同浓度STZ腹腔注射与2型糖尿病大鼠模型建立[J]. 中国民康医学, 2013, 25(9):32-33.
[14]
周迎生, 高妍, 郭晓蕙, et al. Effects of timely insulin treatment on protection of type2 cells in a rat model oftype 2 diabetes mellitus[J]. 中华医学杂志(英文版), 2004, 117(10):1523-1529.
[15]
张玉领, 陈培, 刘家秀,等. 2型糖尿病大鼠模型的建立[J]. 现代预防医学, 2012, 39(15):3922-3924.
[16]
朱磊, 路瑛丽, 冯连世, 等. 不同配方高脂饲料构建SD大鼠肥胖模型的实验研究[J]. 中国运动医学杂志, 2016, 35(7):642-647.
[17]
Wang M,Wu Q,Xie H, et al. Effects of Sleeve Gastrectomy on Serum 12α-Hydroxylated Bile Acids in a Diabetic Rat Model[J]. Obesity Surgery, 2017, 27(3):1-7.
[18]
Srinivasan K,Viswanad B,Asrat L, et al. Combination of high-fat diet-fed and low-dose streptozotocin-treated rat: a model for type 2 diabetes and pharmacological screening[J]. Pharmacological Research the Official Journal of the Italian Pharmacological Society, 2005, 52(4):313-320.
[19]
Wang C,Bing H,Piao D, et al. Roux-en-Y Esophagojejunostomy Ameliorates Renal Function Through Reduction of Renal Inflammatory and Fibrotic Markers in Diabetic Nephropathy[J]. Obesity Surgery, 2016, 26(7):1402-1413.
[20]
Zhang M,Lv XY,Li J, et al. The Characterization of High-Fat Diet and Multiple Low-Dose Streptozotocin Induced Type 2 Diabetes Rat Model[J]. Experimental Diabetes Research, 2017, 2008(6):704045.
[21]
Matteucci E,Giampietro O. Proposal open for discussion: defining agreed diagnostic procedures in experimental diabetes research[J]. Journal of Ethnopharmacology, 2008, 115(2):163-172.
[22]
郭啸华, 刘志红, 李恒,等. 实验性2型糖尿病大鼠模型的建立[J]. 肾脏病与透析肾移植杂志, 2000, 9(4):351-355.
[23]
王竹, 杨月欣, 向雪松,等. 实验大鼠血糖正常范围的估算[J]. 卫生研究, 2010, 39(2):133-137.
[24]
Abegg K,Corteville C,Docherty NG, et al. Effect of bariatric surgery combined with medical therapy versus intensive medical therapy or caloric restriction and weight loss on glycemic control in ZDF rat.[J]. American Journal of Physiology Regulatory Integrative & Comparative Physiology, 2015, 308(4):321-329.
[25]
刘贤明. 胃旁路术对营养性肥胖大鼠脂代谢影响的实验研究[D]. 暨南大学, 2011.
[26]
Camachoramírez A,Blandinorosano M,Segundoiglesias MC, et al. Bariatric surgery influences β-cell turnover in non obese rats.[J]. Histology & Histopathology, 2017:11909.
[27]
Méndez-Giménez L,Becerril S,Camões SP, et al. Role of aquaporin-7 in ghrelin- and GLP-1-induced improvement of pancreatic β-cell function after sleeve gastrectomy in obese rats[J]. International Journal of Obesity, 2017, 41(9):1394.
[28]
Wang M,Wu Q,Xie H, et al. Effects of Sleeve Gastrectomy on Serum 12α-Hydroxylated Bile Acids in a Diabetic Rat MoBdel.[J]. Obesity Surgery, 2017:1-7.
[29]
Hu C,Su Q,Li F, et al. Duodenal–Jejunal Bypass Improves Glucose Homeostasis in Association with Decreased Proinflammatory Response and Activation of JNK in the Liver and Adipose Tissue in a T2DM Rat Model[J]. Obesity Surgery, 2014, 24(9):1453-1462.
[30]
刘腾. 减重与代谢手术治疗T2DM的机制研究[D]. 山东大学, 2017.
[31]
Zhou D,Jiang X,Ding W, et al. Impact of Bariatric Surgery on Ghrelin and Obestatin Levels in Obesity or Type 2 Diabetes Mellitus Rat Model[J]. Journal of Diabetes Research, 2014, 2014(1):569435.
[32]
Dib N,Kiciak A,Pietrzak P, et al. Early-effect of bariatric surgery (Scopinaro method) on intestinal hormones and adipokines in insulin resistant Wistar rat[J]. Journal of Physiology & Pharmacology An Official Journal of the Polish Physiological Society, 2013, 64(5):571.
[33]
Jia V. Li, Hutan Ashrafian, Marco Bueter, James Kinross, Caroline Sands, Carel W le Roux, Stephen R. Bloom, Ara Darzi, Thanos Athanasiou, Julian R. Marchesi, Jeremy K. Nicholson, Elaine Holmes. Metabolic surgery profoundly influences gut microbial-host metabolic cross-talk.[J]. Gut, 2011, 60(9):1214-1223.
[34]
Zhang X,Liu S,Zhang G, et al. Bariatric Surgery Ameliorates Diabetic Cardiac Dysfunction by Inhibiting ER Stress in a Diabetic Rat Model.[J]. Obesity Surgery, 2017, 27(5): 1324-1334.
[35]
Wang C,He B,Piao D, et al. Roux-en-Y Esophagojejunostomy Ameliorates Renal Function Through Reduction of Renal Inflammatory and Fibrotic Markers in Diabetic Nephropathy.[J]. Obesity Surgery, 2016, 26(7):1402-1413.
[36]
Choi YS,Lee SK,Bae WJ, et al. Bariatric Surgery Improves the Cavernosal Neuronal, Vasorelaxation, and Contraction Mechanisms for Erectile Dysfunction As Result of Amelioration of Glucose Homeostasis in a Diabetic Rat Model[J]. Plos One, 2014, 9(8):e104042.
[37]
Ressler IB,Grayson BE,Seeley RJ. Metabolic, behavioral, and reproductive effects of vertical sleeve gastrectomy in an obese rat model of polycystic ovary syndrome[J]. Obesity Surgery, 2014, 24(6):866-876.
[38]
Cummings BP,Graham JL,Stanhope KL, et al. Maternal ileal interposition surgery confers metabolic improvements to offspring independent of effects on maternal body weight in UCD-T2DM rats.[J]. Obesity Surgery, 2013, 23(12):2042-2049.
[39]
柳广南, 陈学远, 张建全, 等. 一种天然的阻塞性睡眠呼吸暂停低通气综合征动物模型——陆川猪[J]. 中华内科杂志, 2004, 43(3):224-225.
[40]
Cao J,Ren Q,Tan C, et al. Small Intestinal Bypass Induces a Persistent Weight-Loss Effect and Improves Glucose Tolerance in Obese Rats.[J]. Obesity Surgery, 2017, 27(7):1-8.
[41]
Zubiaga L,Abad R,Ruiz-Tovar J, et al. The Effects of One-Anastomosis Gastric Bypass on Glucose Metabolism in Goto-Kakizaki Rats[J]. Obesity Surgery, 2016, 26(11):1-7.
[42]
Gao F,Zhang X,Zhou L, et al. Type 2 diabetes mitigation in the diabetic Goto-Kakizaki rat by elevated bile acids following a common-bile-duct surgery.[J]. Metabolism Clinical & Experimental, 2016, 65(2):78.
[43]
Bussey CE,Withers SB,Aldous RG, et al. Obesity-Related Perivascular Adipose Tissue Damage Is Reversed by Sustained Weight Loss in the Rat[J]. Arterioscler Thromb Vasc Biol, 2016, 36(7):1377-1385.
[44]
H.G.沃格尔. 药理学实验指南:新药发现和药理学评价[M]. 科学出版社, 2001.
[45]
Portha B. Programmed disorders of beta-cell development and function as one cause for type 2 diabetes? The GK rat paradigm[J]. Diabetes/metabolism Research & Reviews, 2010, 21(6):495-504.
[46]
张均田. 现代药理实验方法[M]. 北京医科大学、中国协和医科大学联合出版社, 1998.
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