Effects of Aluminum Oxide Nanoparticles in the Spinal Cord of Male Wistar Rats and the Potential Ameliorative Role of Melatonin

IF 4.4 3区 医学 Q2 ENVIRONMENTAL SCIENCES
Nermeen G. Abdelhameed, Yasmine H. Ahmed, Noha A. E. Yasin, Mohamed Y. Mahmoud, Mohamed A. El‐sakhawy
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Abstract

Aluminum oxide nanoparticles (Al2O3 NPs) are widely utilized in vaccine manufacturing and other medical preparations. Melatonin has numerous effects as an antioxidant and anti‐apoptotic. The purpose of this study was to examine the beneficial impact of melatonin on Al2O3 NPs toxicity in the spinal cord. Forty male rats were divided into four groups: Group I, the negative controls (received standard diet and distilled water); Group II, Al2O3 NPs (received 30 mg/kg bw Al2O3 NPs); Group III, melatonin and Al2O3 NPs (received 30 mg/kg bw Al2O3 NPs + 10 mg/kg bw melatonin); Group IV, melatonin (received 10 mg/kg bw melatonin). All treatments were administered daily for 28 days by gastric gavage. After that, all rats were sacrificed, then, the samples from different spinal cords were subjected to histopathological, biochemical, and immunohistochemical analyses. Al2O3 NPs markedly elevated malondialdehyde and 8‐hydroxydeoxyguanosine while inhibiting superoxide dismutase and catalase. Al2O3 NPs also induced histological alterations in both gray and white matter manifested by neuronal degeneration, vacuolation, axonal degeneration, ballooning, and fusion of myelin sheaths. Furthermore, immunohistochemical results displayed a strong positive expression of caspase‐3. Conversely, melatonin significantly mitigated the effects of Al2O3 NPs by increasing the activities of antioxidant enzymes and inhibiting malondialdehyde and 8‐hydroxydeoxyguanosine. Moreover, melatonin alleviated most histological alterations induced by Al2O3 NPs and reduced caspase‐3 immunoreactivity. Collectively, melatonin could protect the spinal cord and mitigate Al2O3 NPs‐induced neurotoxicity.
氧化铝纳米颗粒在雄性Wistar大鼠脊髓中的作用及褪黑素的潜在改善作用
氧化铝纳米颗粒(Al2O3 NPs)广泛应用于疫苗制造和其他医疗制剂。褪黑素作为抗氧化剂和抗细胞凋亡具有多种作用。本研究的目的是研究褪黑素对Al2O3 NPs脊髓毒性的有益影响。将40只雄性大鼠分为四组:第一组为阴性对照(给予标准饮食和蒸馏水);第二组,Al2O3 NPs(接受30 mg/kg bw Al2O3 NPs);第三组,褪黑素和Al2O3 NPs(接受30 mg/kg bw Al2O3 NPs + 10 mg/kg bw褪黑素);IV组,褪黑素(给予10 mg/kg bw褪黑素)。每天灌胃治疗28 d。然后处死大鼠,取不同脊髓标本进行组织病理学、生化和免疫组织化学分析。Al2O3 NPs显著提高丙二醛和8 -羟基脱氧鸟苷,同时抑制超氧化物歧化酶和过氧化氢酶。Al2O3 NPs还能诱导灰质和白质的组织学改变,表现为神经元变性、空泡化、轴突变性、球囊化和髓鞘融合。此外,免疫组化结果显示caspase‐3强烈阳性表达。相反,褪黑素通过增加抗氧化酶的活性和抑制丙二醛和8 -羟基脱氧鸟苷来显著减轻Al2O3 NPs的影响。此外,褪黑素减轻了Al2O3 NPs引起的大多数组织学改变,并降低了caspase‐3的免疫反应性。总之,褪黑素可以保护脊髓并减轻Al2O3 NPs诱导的神经毒性。
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来源期刊
Environmental Toxicology
Environmental Toxicology 环境科学-毒理学
CiteScore
7.10
自引率
8.90%
发文量
261
审稿时长
4.5 months
期刊介绍: The journal publishes in the areas of toxicity and toxicology of environmental pollutants in air, dust, sediment, soil and water, and natural toxins in the environment.Of particular interest are: Toxic or biologically disruptive impacts of anthropogenic chemicals such as pharmaceuticals, industrial organics, agricultural chemicals, and by-products such as chlorinated compounds from water disinfection and waste incineration; Natural toxins and their impacts; Biotransformation and metabolism of toxigenic compounds, food chains for toxin accumulation or biodegradation; Assays of toxicity, endocrine disruption, mutagenicity, carcinogenicity, ecosystem impact and health hazard; Environmental and public health risk assessment, environmental guidelines, environmental policy for toxicants.
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