Silica Nanoparticles from Melon Seed Husk Abrogated Binary Metal(loid) Mediated Cerebellar Dysfunction by Attenuation of Oxido-inflammatory Response and Upregulation of Neurotrophic Factors in Male Albino Rats.

IF 2.7 3区 医学 Q3 NEUROSCIENCES Cerebellum Pub Date : 2024-12-01 Epub Date: 2024-09-27 DOI:10.1007/s12311-024-01747-1
Chidinma P Anyachor, Chinna N Orish, Anthonet N Ezejiofor, Ana Cirovic, Aleksandar Cirovic, Baridoo Donatus Dooka, Kenneth M Ezealisiji, Xavier Siwe Noundou, Orish E Orisakwe
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Abstract

Silica nanoparticles (SiNPs) have been touted for their role in the management of non-communicable diseases. Their neuroprotective benefits against heavy metal-induced neurotoxicity remain largely unexplored. This is a comparative evaluation of the oxido-inflammatory and neurotrophic effects of Ni, Al, and Ni/Al mixture on the cerebellum of male albino rats with or without treatment with SiNPs generated from melon seed husk. The study complied with the ARRIVE guidelines for reporting in vivo experiments. A total of 91, 7-9 week-old weight-matched male Sprague rats (to avoid sex bias) were randomly divided into 13 different dosing groups where Group 1 served as the control. Other groups received 0.2 mg/kg Ni, 1 mg/kg Al, and 0.2 mg/kg Ni + 1 mg/kg Al mixture with or without different doses of SiNP for 90 days. Rotarod performance was carried out. Oxidative stress markers, Ni, Al, Ca, Fe, Mg, neurotrophic factors, amyloid beta (Aβ-42), cyclooxygenase-2 (COX-2), and acetylcholinesterase (AChE) were determined in the cerebellum. SiNPs from melon seed husk caused a significant decrease in Aβ-42 level and activities of AChE and COX-2 and a significant increase in brain-derived neurotrophic factor (BDNF) and nerve growth factor (NGF) mediated by Ni, Al, and Ni/Al mixture exposure in rats. Neurotoxicity of the Ni/Al mixture is via heightened neuronal lipoperoxidative damage, decreased Mg, and increased Fe, and co-administration of SiNPs from melon seed husk with the Ni/Al mixture attenuated some of these biochemical changes in the cerebellum.

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瓜子壳中的二氧化硅纳米颗粒通过减轻氧化-炎症反应和上调白化雄性大鼠的神经营养因子缓解二元金属(loid)介导的小脑功能障碍
二氧化硅纳米粒子(SiNPs)因其在治疗非传染性疾病方面的作用而备受推崇。它们对重金属诱导的神经毒性的神经保护作用在很大程度上仍未得到探索。这是一项比较评估镍、铝和镍/铝混合物对雄性白化大鼠小脑的氧化-炎症和神经营养效应的研究。该研究符合 ARRIVE 的体内实验报告指南。共 91 只 7-9 周大、体重匹配的雄性 Sprague 大鼠(以避免性别偏差)被随机分为 13 个不同的剂量组,其中第 1 组为对照组。其他各组分别接受 0.2 毫克/千克镍、1 毫克/千克铝和 0.2 毫克/千克镍 + 1 毫克/千克铝混合物与或不与不同剂量的 SiNP,为期 90 天。进行了旋转运动。测定了小脑中的氧化应激标记物、镍、铝、钙、铁、镁、神经营养因子、淀粉样β(Aβ-42)、环氧化酶-2(COX-2)和乙酰胆碱酯酶(AChE)。大鼠接触镍、铝和镍/铝混合物后,瓜子壳中的 SiNPs 会导致 Aβ-42 水平以及 AChE 和 COX-2 活性显著降低,脑源性神经营养因子(BDNF)和神经生长因子(NGF)显著增加。镍/铝混合物的神经毒性是通过神经元脂过氧化损伤的加剧、镁的减少和铁的增加来实现的,而将瓜子壳中的 SiNPs 与镍/铝混合物联合施用可减轻小脑中的部分生化变化。
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来源期刊
Cerebellum
Cerebellum 医学-神经科学
CiteScore
6.40
自引率
14.30%
发文量
150
审稿时长
4-8 weeks
期刊介绍: Official publication of the Society for Research on the Cerebellum devoted to genetics of cerebellar ataxias, role of cerebellum in motor control and cognitive function, and amid an ageing population, diseases associated with cerebellar dysfunction. The Cerebellum is a central source for the latest developments in fundamental neurosciences including molecular and cellular biology; behavioural neurosciences and neurochemistry; genetics; fundamental and clinical neurophysiology; neurology and neuropathology; cognition and neuroimaging. The Cerebellum benefits neuroscientists in molecular and cellular biology; neurophysiologists; researchers in neurotransmission; neurologists; radiologists; paediatricians; neuropsychologists; students of neurology and psychiatry and others.
期刊最新文献
Correction: Systematic Review and Meta-Analysis of the Diagnostic Accuracy of a Graded Gait and Truncal Instability Rating in Acutely Dizzy and Ataxic Patients. Correction: Long-Term Follow-Up Before and During Riluzole Treatment in Six Patients from Two Families with Spinocerebellar Ataxia Type 7. Correction: Silica Nanoparticles from Melon Seed Husk Abrogated Binary Metal(loid) Mediated Cerebellar Dysfunction by Attenuation of Oxido-inflammatory Response and Upregulation of Neurotrophic Factors in Male Albino Rats. Clinical Heterogeneity of Essential Tremor: Understanding Neural Substrates of Action Tremor Subtypes. The Neuroimmune System and the Cerebellum.
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