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Effects of biologically produced gold nanoparticles: toxicity assessment in different rat organs after intraperitoneal injection

机译:生物产生的金纳米颗粒的影响:腹膜内注射后不同大鼠器官的毒性评估

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摘要

Gold nanoparticles (GNPs) have different usage in the medical field. The plan of the present research was to evaluate the influence of the biologically produced GNPs on some rat organs. GNPs were produced using Fusarium oxysporum and their presence was confirmed using spectrophotometer, transmission electron microscope (TEM) and X-ray diffraction (XRD) analyses. The non-toxic and toxic doses of GNPs were determined using MTT assay and were injected intraperitoneally into rats in 3 continuous days and their effects on the kidney, liver and testis were analyzed using microscopic technique. Results revealed that GNPs that were produced had 525?nm absorbance peak and average sizes of about 50?nm, with round and hexagonal shapes. Results from the XRD analysis showed the presence of GNPs in the reaction mixture. MTT assay results revealed that GNPs had somehow toxic effects which depend on their doses. Histological examinations indicated that based on the tested organ, the distribution and effects of GNPs were different which in the testis, the non-toxic dose had no effects and in some parts of the liver and kidney, it induced mild changes. The toxic dose of the GNPs in all the three tested organs induced mild changes. In conclusion, the in vitro and in vivo behaviors of the produced GNPs were different and GNPs even in high concentration induced low changes in the rat organs. This may be due to the short exposure and the use of the biologically produced GNPs.
机译:金纳米颗粒(GNP)在医学领域有不同的用法。本研究的计划是评估生物产生的GNP对某些大鼠器官的影响。 GNPs使用尖孢镰刀菌(Fusarium oxysporum)生产,并通过分光光度计,透射电子显微镜(TEM)和X射线衍射(XRD)分析确认了它们的存在。用MTT法测定GNPs的无毒和毒性剂量,并连续3天腹膜内注射给大鼠,并用显微镜技术分析其对肾脏,肝脏和睾丸的影响。结果表明,所产生的GNP具有525?nm的吸收峰,平均大小约为50?nm,具有圆形和六边形形状。 XRD分析的结果表明反应混合物中存在GNP。 MTT测定结果表明,GNPs的毒性作用取决于剂量。组织学检查表明,根据被测器官,GNPs的分布和作用是不同的,在睾丸中,无毒剂量无作用,并且在肝脏和肾脏的某些部位会引起轻度变化。所有三个测试器官中GNP的毒性剂量均引起轻度变化。总之,所产生的GNP的体外和体内行为是不同的,即使在高浓度下,GNP也会引起大鼠器官的低变化。这可能是由于短时间接触和生物产生的GNP的使用。

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