Prospective Effect of Nano-Selenium Particles on Thyroid Dysfunction and Oxidative Stress Induced by Sodium Benzoate in Male Albino Rats.

Q3 Agricultural and Biological Sciences
Afaf Abdullah Al-Shelash, Heba Fawzy Gomaa
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引用次数: 0

Abstract

&lt;b&gt;Background and Objective:&lt;/b&gt; The negative effects of preservatives, such as sodium benzoate, have received increasing global attention. The objective of the study was to investigate the potential protective effects of nano-selenium (nano-Se) on thyroid functions, oxidative stress and inflammatory cytokine responses of albino rats. &lt;b&gt;Materials and Methods:&lt;/b&gt; Thirty-five male rats were divided into five groups, 7 rats in each: GI: A control group, GII: Corn oil, GIII: Nano-selenium, GIV: Sodium benzoate, GV: Selenium nanoparticles followed with sodium benzoate. At the end of study, sera were separated from all rats for estimation of MDA, GSH, GSH-PX, glucose, interleukin-1ß, TSH, T3, FT3, T4 and FT4. All data were statistically analyzed using Analysis of Variance (ANOVA). &lt;b&gt;Results:&lt;/b&gt; Sodium benzoate treatment showed opposite effects as it decreased levels of T3, FT3, F4, FT4, GSH and GSH-PX. On the contrary, it increased serum levels of TSH, MDA, NO, glucose and IL-1β when compared to the control group. Whereas, nano-selenium promoted a significant increase in levels of thyroid hormones T3, T4 and FT4, upgrading GSH and GSH-PX. While it reduced TSH, MDA, NO, glucose and IL-1β levels when compared to the sodium benzoate group. &lt;b&gt;Conclusion:&lt;/b&gt; Nano-selenium treatment as a protector showed the ability to reduce lipid peroxidation and restore glutathione peroxidase activity, thus, selenium complex at nano-level can reduce oxidative stress and damage of thyroid hormones caused by sodium benzoate administration.

纳米硒颗粒对苯甲酸钠诱导的雄性白化大鼠甲状腺功能障碍和氧化应激的前瞻性影响。
&;lt;b&;gt;背景和目的:;lt/b&;gt;防腐剂的负面影响,如苯甲酸钠,已经受到越来越多的全球关注。本研究的目的是研究纳米硒对白化大鼠甲状腺功能、氧化应激和炎症细胞因子反应的潜在保护作用&;lt;b&;gt;材料和方法:;lt/b&;gt;35只雄性大鼠被分为5组,每组7只:GI:A对照组,GII:玉米油,GIII:纳米硒,GIV:苯甲酸钠,GV:硒纳米颗粒,然后是苯甲酸钠。在研究结束时,从所有大鼠中分离血清,以评估MDA、GSH、GSH-PX、葡萄糖、白细胞介素-1和;,TSH、T3、FT3、T4和FT4。使用方差分析(ANOVA)对所有数据进行统计学分析&;lt;b&;gt;结果:&;lt/b&;gt;苯甲酸钠处理降低T3、FT3、F4、FT4、GSH和GSH-PX的水平,效果相反。相反,它增加了血清TSH、MDA、NO、葡萄糖和IL-1β的水平;与对照组相比。而纳米硒促进甲状腺激素T3、T4和FT4水平的显著升高,使GSH和GSH-PX水平升高。同时降低TSH、MDA、NO、葡萄糖和IL-1β;与苯甲酸钠组相比&;lt;b&;gt;结论:;lt/b&;gt;纳米硒作为一种保护剂,具有降低脂质过氧化和恢复谷胱甘肽过氧化物酶活性的能力,因此,纳米硒复合物可以减轻苯甲酸钠给药引起的氧化应激和甲状腺激素损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Pakistan Journal of Biological Sciences
Pakistan Journal of Biological Sciences Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.90
自引率
0.00%
发文量
102
期刊介绍: Pakistan Journal of Biological Sciences (PJBS) is an international, peer-reviewed and well indexed scientific journal seeks to promote and disseminate the knowledge of biological sciences by publishing outstanding research in the field. Scope of the journal includes: Cell biology, developmental biology, structural biology, microbiology, entomology, toxicology, molecular biology & genetics, biochemistry, biotechnology, biodiversity, ecology, marine biology, plant biology and bioinformatics.
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