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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Ultrastructural Hepatic Alterations Induced by 35 nm Zinc Oxide Nanoparticles
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Ultrastructural Hepatic Alterations Induced by 35 nm Zinc Oxide Nanoparticles

机译:35 nm氧化锌纳米粒子诱导的超微结构肝改变。

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摘要

Zinc oxide nanoparticles (ZnO NPs) are widely used in industry and cosmetic products with promising investment in medical diagnosis and treatment. However, these particles may reveal high potential risk for human health with little information is available about their toxicity. The present study was carried out to investigate the ultrastrcutural alterations induced in the hepatic tissues by ZnO NPs. Male Wistar albino rats were exposed to ZnO NPs at a daily dose of 2 mg/kg for 21 days. Furthermore, liver biopsies from all rats under study were subjected and processed for transmission electron microscopy and ultrastructural examination. Exposure to ZnO NPs has induced the following ultrastructural alterations: sinusoidal dilatation, Kupffer cells enlargement and activation, mitochondrial crystolysis and swelling, endoplasmic reticulum dilatation and vesiculation, myelin figures formation, karyopyknosis, nuclear membrane irregularity, chromatin fragmentation and glycogen depletion. These findings may suggest that ZnO NPs can induce ultrastructural alterations in the hepatic tissues resulted from disturbance of the pro-oxidant/antioxidant system leading to cellular alterations and affecting the liver functions. The results raise the concerns about the safety associated with ZnO NPs applications and highlight on the need to elucidate probable nanotoxicity that might be induced by these particles in the vital organs.
机译:氧化锌纳米粒子(ZnO NPs)广泛用于工业和化妆品,并在医学诊断和治疗方面有前途的投资。但是,这些颗粒可能显示出对人类健康的高潜在风险,而关于其毒性的信息很少。本研究旨在研究ZnO NPs在肝组织中引起的超微结构改变。将雄性Wistar白化病大鼠以2 mg / kg的日剂量暴露于ZnO NPs 21天。此外,对所有接受研究的大鼠的肝活检进行了处理,以进行透射电子显微镜和超微结构检查。暴露于ZnO NPs会引起以下超微结构改变:正弦曲线扩张,库普弗细胞扩大和激活,线粒体冷冻和肿胀,内质网扩张和囊泡形成,髓磷脂形成,核分裂症,核膜不规则,染色质断裂和糖原耗竭。这些发现可能表明,ZnO NPs可以诱导肝组织中的超微结构改变,这是由于前氧化剂/抗氧化剂系统的紊乱导致细胞改变并影响肝功能。结果引起了人们对与ZnO NPs应用相关的安全性的担忧,并强调需要阐明可能由这些重要器官中的颗粒诱导的纳米毒性。

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