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海带多糖对2型糖尿病小鼠血清胰岛素和胰淀素水平的影响 被引量:8

Effects of Laminaria Japonica polysaccharide on the serum levels of insulin and amylin in type 2 diabetes mellitus model mice
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摘要 目的:探讨海带多糖对实验性2型糖尿病小鼠的降血糖作用和可能的机制。方法:健康雄性昆明小鼠60只,高脂饲料喂养并腹腔注射四氧嘧啶制备2型糖尿病动物模型,海带多糖灌胃干预治疗。自动血糖仪测小鼠空腹血糖(FBG),免疫电化学发光法检测血清胰岛素(Insulin)水平,酶联免疫吸附法检血清胰淀素(Amylin)水平。结果:经海带多糖干预治疗后,高、中、低剂量组动物FBG水平较模型组显著降低(P<0.05);血清胰岛素水平和Amylin水平较模型组显著升高(P<0.05);各剂量组之间无明显差异。结论:海带多糖在2型糖尿病早期能促进胰岛细胞的分泌功能,提高血清胰岛素和胰淀素水平,发挥降糖作用。 Objective: To investigate the hypoglycemic effect and possible mechanism of Laminaria Japonica polysaccharide (LJPS) in type 2 diabetes mellitus model mice. Methods: Type 2 diabetes mellitus models were established by feeding high fatty forage and injecting alloxan in 60 healthy male mice. The LJPS was applied as additive in physiological saline to treat the mice by intragastric administration. The levels of fasting blood glucose (FBG) were detected by automatic blood glucose device. The electrochemical immunological assay was applied to determine the insulin level in serum. The enzyme-linked immunosorbent assay (ELISA) was applied to determine the amylin level in serum. Results: After treated with LJPS, the FBG in the low-middle-high dosage groups decreased significantly than those in the model group (P〈0.05); while the levels of insulin and amylin in serum increased significantly than those in the model group (P〈0.05). There were no significant differences among the low, middle and high dosage groups all above indexes. Conclusion: LJPS have hypoglycemic effects in early period of type 2 diabetes mellitus by promoting the islet cell to secret insulin and amylin.
出处 《中华中医药杂志》 CAS CSCD 北大核心 2013年第7期2145-2147,共3页 China Journal of Traditional Chinese Medicine and Pharmacy
基金 中科院-广东省联合资助项目(No.2009B091300086 No.2010A090100023)~~
关键词 海带多糖 2型糖尿病 四氧嘧啶 胰岛素 胰淀素 小鼠 LJPS Type 2 diabetes Alloxan Insulin Amylin Mouse
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  • 1Snedeker S M,Hay A G.Do interactions between gut ecology and environmental chemicals contribute to obesity and diabetes. Environ Health Perspect,2012,120(3):332-339.
  • 2Shubrook J H,Johnson A W.An osteopathic approach to type 2 diabetes mellitus.J Am Osteopath Assoc,2011,111(9):531-537.
  • 3Grzybowska M,Bober J,Olszewska M.Metformin-mechanisms of action and use for the treatment of type 2 diabetes mellitus.Postepy Hiq Med Dosw,2011,65(5):277-285.
  • 4Esser N,Paquot N,Scheen A J.Type 2 diabetes and anti- inflammatory agents:new therapeutic prospects.Rev Med Suisse, 2011,7(306):1614-1618,1620.
  • 5Reaven G M.Insulin resistance:the link between obesity and cardiovascular disease.Med Clin North Am,2011,95(5):875-892.
  • 6Stern M P.Diabetes and cardiovascular disease:the'common' hypothesis.Diabetes,1995,44(4):369-374.
  • 7Lutz T A.Pancreatic amylin as a centrally acting satiating hormone. Curt Dmg Targets,2005,6(2): 181 - 189.
  • 8Broosky J,Chada M,Kotaska K,et al.Amylin-its physiological role in hunaans.Cesk Fysiol,2002,51 (4): 176-180.
  • 9孙立靖,王彦,台杰,杨潇然,矫燕.昆布药理作用研究概述[J].中国药业,2009,18(2):59-60. 被引量:10
  • 10吴建东,于广利,李苗苗,赵峡,王长云,刘涛,顾晨曦.厚叶切氏海带多糖的提取分离及其结构表征[J].中国海洋大学学报(自然科学版),2011,41(7):127-130. 被引量:9

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