Laboratory Animal and Comparative Medicine ›› 2011, Vol. 31 ›› Issue (6): 470-472.DOI: 10.3969/j.issn.1674-5817.2011.06.017
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Received:
2011-03-28
Online:
2011-12-25
Published:
2011-12-25
CLC Number:
[1] 王保伟, 李颖, 刘晓红, 等. 高脂饲料喂养时间及链脲佐菌素剂量对实验型2型糖尿病大鼠造模的影响[J]. 卫生研究, 2011, 40(1):99-106. [2] Srinivasan K, Viswanad B, Lydia A, et al.Combination of high-fat fed and low dose streptozotocin treated rat:a model fortype 2 diabetes and pharmacological screening[J]. Pharmacol Res, 2005, 52:313-320. [3] 郭福川, 李颖, 孙长颢, 等. 高脂饲料诱导对大鼠血脂的影响[J]. 卫生研究, 2011, 40(1):40-42. [4] 田爱平, 郭赛珊, 申竹芳. 高脂饲料与胰岛素抵抗动物模型[J]. 中国药理学通报, 2006, 22(3):267-269. [5] 陈继红, 孙伟, 高坤, 等. 高脂饲料加速阿霉素肾小球硬化模型的建立[J]. 南京中医药大学学报, 2007, 23(3):161-163. [6] 冯斌, 杨庭树, 张华巍. 高脂饲料喂养与动脉内膜球囊损伤结合建立兔腹主动脉粥样硬化模型[J]. 中国组织工程研究与临床康复, 2009, 13(15):2911-2914. [7] 刘建勋. 高脂饲料加球囊拉伤制备小型猪慢性心肌缺血模型的研究[J].中药药理与临床, 2008, 24(3):108-111. [8] 宫环, 张铁梅, 李怡, 等. 不同饲料配方及喂饲方法制备不同胰岛素敏感性大鼠模型的研究[J].中华糖尿病杂志,2005, 13(6):456-462. [9] Matsusue K.A physiological role for fat specific protein 27/cell death-inducing DFF45-like Effector C in adipose and liver[J]. Biol Pharm Bull, 2010,33(3):346-350. [10] Román-García P, Carrillo-López N, Fernández-Martín JL, et al.High phosphorus diet induces vascular calcification, a related decrease in bone mass and changes in the aortic gene expression[J]. Bone, 2010, 46(1):121-128. [11] Himes RW, Smith CW.Tlr2 is critical for diet-induced metabolic syndrome in a murine model[J]. FASEB J, 2010, 24(3):731-739. [12] 贲长恩. 血虚动物模型的创建及试验[J]. 北京实验动物科学和管理, 1994, 11(3):5-10. [13] 沈丽, 卢维晟, 姚俊宇, 等. 不同方法建立动脉粥样硬化大鼠模型的比较[J]. 心脏杂志, 2005, 17(1):18-20. [14] 李枫, 李建辉, 毕会民. 低脂饮食和有氧运动干预对高脂大鼠脂肪组织蛋白激酶B 表达的影响[J]. 微循环学杂志, 2005, 15(1):26-28, 31. [15] 钱晓飞, 汤家铭. 特殊配方饲料引起实验动物体重增长缓慢的原因探讨[J]. 中国比较医学杂志, 2007, 17(12):752-754. |
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