Examining the Influence of Zinc Oxide Nanoparticles and Bulk Zinc Oxide on Rat Brain Functions: a Comprehensive Neurobehavioral, Antioxidant, Gene Expression, and Histopathological Investigation.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Biological Trace Element Research Pub Date : 2024-10-01 Epub Date: 2024-01-08 DOI:10.1007/s12011-023-04043-x
Amira A Goma, Alyaa R Salama, Hossam G Tohamy, Rashed R Rashed, Mustafa Shukry, Sara E El-Kazaz
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Abstract

The study aimed to assess the impact of zinc oxide nanoparticles (ZnONPs) on rats' neurobehavior compared to bulk zinc oxide (BZnO). Thirty male Sprague-Dawley rats were randomly assigned to five groups. The control group received Tween 80 (10%), while the ZnONP groups were given ZnONPs at 5 and 10 mg/kg body weight dosages, and the bulk zinc oxide (BZnO) groups received BZnO at the same dosages. Behavioral observations, neurobehavioral examinations, and assessments of brain tissue oxidative markers, neurotransmitter levels, and histopathological changes were performed. The results indicated that ZnONP at a dosage of 5 mg/kg improved general behavior, locomotor activity, memory, and recognition and reduced fearfulness in rats. Conversely, the higher dosage of 10 mg/kg and the bulk form had adverse effects on general behavior, locomotor activity, and learning ability, with the bulk form demonstrating the most severe impact-znONP-5 treatment increased antioxidant enzyme levels and decreased inflammatory markers. BZnO-5 exhibited lower oxidative stress markers, although still higher than BZnO-10. Furthermore, ZnONP-5 and BZnO-5 increased neurotransmitter levels compared to higher dosages. ZnONP-5 upregulated the expression of brain-derived neurotrophic factor (BDNF) mRNA, while BZnO-5 showed increased BDNF mRNA expression and decreased expression of genes related to apoptosis and inflammation. In summary, ZnONPs at 5 mg/kg demonstrated positive effects on rat brain function and behavior, while higher dosages and the bulk form had detrimental effects. In conclusion, the studies emphasized the importance of further assessing various doses and forms of zinc oxide on brain health, highlighting the significance of dosage considerations when using nanomaterials.

研究纳米氧化锌颗粒和块状氧化锌对大鼠大脑功能的影响:神经行为学、抗氧化剂、基因表达和组织病理学的综合研究。
该研究旨在评估纳米氧化锌(ZnONPs)与块状氧化锌(BZnO)相比对大鼠神经行为的影响。30 只雄性 Sprague-Dawley 大鼠被随机分为五组。对照组服用吐温 80(10%),ZnONP 组服用 5 毫克/千克体重和 10 毫克/千克体重的 ZnONP,而大量氧化锌(BZnO)组服用相同剂量的 BZnO。实验组进行了行为观察、神经行为检查和脑组织氧化标记物、神经递质水平和组织病理学变化评估。结果表明,5 毫克/千克剂量的氧化锌能改善大鼠的一般行为、运动活动、记忆和识别能力,并减少恐惧感。相反,较高剂量(10 毫克/千克)和散装的 ZnONP-5 会对大鼠的一般行为、运动活动和学习能力产生不利影响,其中散装的 ZnONP-5 所产生的影响最为严重。BZnO-5 的氧化应激标记物较低,但仍高于 BZnO-10。此外,ZnONP-5 和 BZnO-5 还能提高神经递质水平。ZnONP-5 上调了脑源性神经营养因子(BDNF)mRNA 的表达,而 BZnO-5 则增加了 BDNF mRNA 的表达,降低了与细胞凋亡和炎症有关的基因的表达。总之,5 毫克/千克的 ZnONPs 对大鼠大脑功能和行为有积极影响,而更高剂量和块状 ZnONPs 则有不利影响。总之,这些研究强调了进一步评估各种剂量和形式的氧化锌对大脑健康影响的重要性,突出了在使用纳米材料时考虑剂量的重要性。
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来源期刊
Biological Trace Element Research
Biological Trace Element Research 生物-内分泌学与代谢
CiteScore
8.70
自引率
10.30%
发文量
459
审稿时长
2 months
期刊介绍: Biological Trace Element Research provides a much-needed central forum for the emergent, interdisciplinary field of research on the biological, environmental, and biomedical roles of trace elements. Rather than confine itself to biochemistry, the journal emphasizes the integrative aspects of trace metal research in all appropriate fields, publishing human and animal nutritional studies devoted to the fundamental chemistry and biochemistry at issue as well as to the elucidation of the relevant aspects of preventive medicine, epidemiology, clinical chemistry, agriculture, endocrinology, animal science, pharmacology, microbiology, toxicology, virology, marine biology, sensory physiology, developmental biology, and related fields.
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