用电感耦合等离子体和组织病理学方法评价生物磁性铁纳米颗粒在wistar大鼠肝组织中对电磁场响应的积累和组织效应

B. Yahyaei, S. Abbasi
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引用次数: 0

摘要

目的:探讨磁性纳米颗粒对组织健康的影响。材料与方法:以尖孢镰刀菌为原料制备磁性铁纳米颗粒,对其大小进行验证,评价其对大鼠肝组织的影响后,随机选取24只大鼠分为4组。在干预的基础上,通过腹腔注射纳米颗粒。实验结束后,取组织标本送实验室制备组织病理切片,进行诱导配对等离子体光谱分析。结果:真菌产生的磁性铁纳米颗粒经可见光分光光度计、x射线衍射和电子显微镜检测证实其存在,其平均粒径为20 ~ 30 nm。MTT试验还表明,磁性铁纳米颗粒具有低毒性,ICP分析表明,随着电磁场的存在,铁纳米颗粒进入组织的速度增加。显微镜结果还显示,电磁场组和无毒剂量组肝细胞、小叶中心静脉和窦腔的变化最多。结论:基于结果,可以说磁性铁纳米颗粒虽然不会在组织中诱发特异性毒性作用,但电磁场本身引起组织改变的概率增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of accumulation and tissue effects of biological magnetic iron nanoparticles in response to the electromagnetic field by Inductively Coupled Plasma and histopathological methods in liver tissue of wistar rats
Aim: The aim is to investigate the effects of magnetic nanoparticles on tissue health. Material and Methods : Magnetic iron nanoparticles were produced using Fusarium oxysporum and after proving their size to evaluate their effect on the liver tissue of 24 rats, they were randomly selected and divided into 4 groups. Based on the interventions, nanoparticles were injected intraperitoneally. At the end of the experiment, tissue sampling was performed and the samples were sent to the laboratory to prepare histopathological sections and analyze induced paired plasma spectroscopy. Results: The fungus produced magnetic iron nanoparticles and visible light spectrophotometer tests, X-ray diffraction confirmed its presence and electron microscopy showed that their average size is 20 to 30 nm. MTT test also showed that magnetic iron nanoparticles have low toxicity and ICP analysis showed that with the presence of electromagnetic field, the rate of entry of iron nanoparticles into the tissue has increased. Microscopic results also showed that the most changes in hepatocytes, lobular center vein and sinusoidal space were in the electromagnetic field group and non-toxic dose group of nanoparticles with the presence of electromagnetic field. Conclusion : Based on the results, it can be said that while magnetic iron nanoparticles do not induce a specific toxic effect in tissue, but the probability that the electromagnetic field itself causes tissue changes increases.
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