首页> 外文期刊>Iranian journal of science and technology >Effect of Silymarin Supplementation on Nickel Oxide Nanoparticle Toxicity to Rainbow Trout (Oncorhynchus mykiss) Fingerlings: Pancreas Tissue Histopathology and Alkaline Protease Activity
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Effect of Silymarin Supplementation on Nickel Oxide Nanoparticle Toxicity to Rainbow Trout (Oncorhynchus mykiss) Fingerlings: Pancreas Tissue Histopathology and Alkaline Protease Activity

机译:补充水飞蓟素对氧化镍纳米粒子对虹鳟鱼(Oncorhynchus mykiss)鱼种的毒性作用:胰腺组织病理学和碱性蛋白酶活性

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The effects of dietary nickel oxide nanoparticles (NiO-NPs) contamination along with silymarin supplementation on pancreatic tissue of rainbow trout fingerlings were investigated. Five treatments including different levels of NiO-NPs (0, 100 and 500 mg kg_(−1)feed) and silymarin (0 and 1 g kg_(−1)feed) in three respective replicates were designed. The trial was conducted under 12L:12D photoperiod condition for 60 days. Tissue samples for histological and enzymatic studies were taken on days 30 and 60. The results from day 30 indicated that the highest and lowest alkaline protease activities were belonged to fish fed diet without any nanoparticles (T1) and those fed 100 or 500 mg kg_(−1)feed (T4 and T5), respectively. Dietary silymarin could to some extent prevent toxic effects of NiO-NPs on enzyme activity (T2 vs. T3). Acinar cells necrosis, edema of connective tissue and cellular shrinkage were observed in NiO-NPs received groups (T4 and T5). At the end of the trial, T2 and T3 could regain their digestive capacity after removal of nanoparticles and those groups continued to receive nanoparticles until the end of the trial (T4 and T5) showed the lowest alkaline protease activity. Moreover, the histological observations revealed pancreas tissue necrosis, nuclear degeneration and vascular dilation in the latter groups. In conclusion, NiO-NPs affected pancreatic tissue and its function in a dose-dependent manner, while dietary silymarin helped fish to sustain digestive capacity. Future researches should focus on the ecological outcomes of pollutants induced toxicity.
机译:研究了膳食氧化镍纳米颗粒(NiO-NPs)污染以及水飞蓟素的添加对虹鳟鱼种鱼胰腺组织的影响。设计了五种处理方法,分别进行了三个重复试验,其中包括不同水平的NiO-NPs(0、100和500 mg·kg _(-1)饲料)和水飞蓟素(0和1 g·kg _(-1)饲料)。该试验在12L:12D光照条件下进行了60天。在第30和60天进行组织学和酶学研究的组织样本。从第30天开始的结果表明,最高和最低的碱性蛋白酶活性属于不添加任何纳米颗粒(T1)的鱼饲料,而饲喂100或500 mg kg_( -1)分别进料(T4和T5)。日粮水飞蓟素可以在一定程度上防止NiO-NPs对酶活性的毒性作用(T2与T3)。 NiO-NPs接受组(T4和T5)观察到腺泡细胞坏死,结缔组织水肿和细胞萎缩。在试验结束时,T2和T3可以在去除纳米颗粒后恢复其消化能力,并且这些组继续接受纳米颗粒,直到试验结束(T4和T5)显示出最低的碱性蛋白酶活性。此外,组织学观察显示后一组胰腺组织坏死,核变性和血管扩张。总之,NiO-NPs以剂量依赖的方式影响胰腺组织及其功能,而饮食水飞蓟素有助于鱼类维持消化能力。未来的研究应集中在污染物引起的毒性的生态结果上。

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