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首页> 外文期刊>Danishgah-i Ulum-i Pizishki va Khadamat-i Bihdashti-Darmani Shahid Sadugi Yazd. Majallah >synergic application effects of silver nanoparticles and low-frequency electromagnetic field on the chick embryo chorioallantoic membrane on angiogenesis
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synergic application effects of silver nanoparticles and low-frequency electromagnetic field on the chick embryo chorioallantoic membrane on angiogenesis

机译:纳米银和低频电磁场协同作用在鸡胚绒囊尿膜对血管新生的协同作用

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摘要

Background and purpose:  Angiogenesis has a role in many vital processes also many developmental processes are influenced by an electromagnetic field. In the present study the synergic effects of silver nanoparticles and low-frequency electromagnetic field on angiogenesis in the chick embryo chorioallantoic membrane (CAM).Materials and method: In this experimental study, (Ross strain ) on the eighth day incubation of embryonated chicken eggs were treated with 50, 100 and 200 mg/ml of silver nanoparticles. Then on tenth day, the eggs for 3 hours were exposed to the electromagnetic field. The twelfth day, the samples were photographed and the number, length of vessels, weight and Crown-rump were analyzed with software Image J. hemoglobin content were tested with derabkin assay. Silver nanoparticles antioxidant activity was assessment. Data were analyzed using spss 16 software and ANOVA statistical test.Results: The average number and length of vessels and hemoglobin content decreased in treated groups with silver nanoparticles and Electromagnetic fields. synergic use of silver nanoparticles and Electromagnetic fields reduce the average number and length of vessels and hemoglobin content  than using one alone. Antioxidant assay showed that silver nanoparticles inhibited free radical production.Conclusions: Synergic application of biogenic silver nanoparticles with electromagnetic field significantly reduced angiogenesis CAM comparing to use one of them. 
机译:背景和目的:血管生成在许多重要过程中都起作用,许多发育过程也受到电磁场的影响。在本研究中,银纳米颗粒和低频电磁场对鸡胚绒囊尿膜(CAM)血管生成的协同作用。材料与方法:在本实验研究中,(罗斯菌株)在鸡胚鸡蛋第八天孵化中用50、100和200mg / ml的银纳米颗粒处理。然后在第十天,将鸡蛋暴露3小时,暴露于电磁场中。第十二天,对样品照相,并用Image J软件分析血管的数目,血管长度,重量和冠状臀。用derabkin测定法检测血红蛋白含量。对银纳米颗粒的抗氧化活性进行了评估。结果:使用银纳米颗粒和电磁场处理组的平均血管数目和长度以及血红蛋白含量降低。银纳米颗粒与电磁场的协同使用比单独使用一种可以减少血管的平均数量和长度以及血红蛋白含量。结论:与电磁场协同使用生物纳米银具有协同作用,显着降低了血管生成CAM。

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