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首页> 外文期刊>Veterinary World >The combined effect of magnetic and electric fields using on/off infrared light on the blood sugar level and the diameter of Langerhans islets of diabetic mice
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The combined effect of magnetic and electric fields using on/off infrared light on the blood sugar level and the diameter of Langerhans islets of diabetic mice

机译:磁场使用ON / OFF红外灯对糖尿病小鼠血糖水平的磁场和电场的综合作用

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Background and Aim: At present, diabetes is treated with oral antidiabetic medicines, such as sulfonylureas and thiazolidine, as well as insulin injection. However, these methods have several shortcomings. Therefore, alternatives for treating diabetes mellitus (DM) are needed. This study aims to determine the combined effect of magnetic and electric fields on blood sugar levels and the diameter of Langerhans islets of diabetic mice. Materials and Methods: Induction of DM in mice was carried out by administering lard for 2 weeks and continued with an intraperitoneal injection of streptozotocin, dissolved in a 4.5 pH citrate buffer, and administered in a dose of 30 mg/kg bodyweight for 5 days. Treatments were used in combination with magnetic and electric fields using on/off infrared light. Blood samples were pipetted through the tip of mice's tails to establish the blood sugar level for each individual mouse. Histology preparation of the pancreas organ was affected using the histology standard as well as hematoxylin and eosin staining methods. Langerhans islet diameter data were analyzed using analysis of variance followed by Duncan's multiple range test. Data analysis was performed at α=0.05. Results: The results showed that the combined treatment of permanent magnetic and unidirectional electric fields (PS) caused changes in blood sugar levels that were not significantly different from the normal control group. The PS treatment improved the diameter of the Langerhans islets but not to a significant degree compared to other treatments. Conclusion: The use of PS treatment is effective for reducing the blood sugar levels of diabetic mice and improving the diameter of their Langerhans islets.
机译:背景和目的:目前,糖尿病用口腔抗糖尿病药物治疗,如磺酰脲和噻唑烷,以及胰岛素注射。但是,这些方法有几个缺点。因此,需要治疗糖尿病(DM)的替代方案。本研究旨在确定磁场和糖尿病小鼠含血糖水平和猩猩小鼠胰岛直径的综合影响。材料和方法:通过施用猪油2周进行小鼠中DM诱导,并继续腹腔注射链脲佐菌素,溶解在4.5 pH柠檬酸盐缓冲液中,并以30mg / kg体重的剂量给药5天。使用ON / OFF红外光与磁场和电场组合使用处理。通过小鼠尾部的血液移液,以建立每个单独的小鼠的血糖水平。使用组织学标准以及苏木精和曙红染色方法,影响胰腺器官的组织学制备。使用vencan的多个范围测试,使用方差分析分析朗格汉斯胰岛直径数据。数据分析在α= 0.05进行。结果:结果表明,永磁和单向电场(PS)的组合处理导致血糖水平的变化与正常对照组没有显着差异。 PS治疗改善了朗格汉斯胰岛的直径,但与其他治疗相比,没有显着程度。结论:使用PS治疗可有效降低糖尿病小鼠的血糖水平,提高兰氏汉胰岛的直径。

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