抗氧化剂在减轻阿尔茨海默病氧化应激中的潜在机制和作用。

IF 3.3 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Rayees Ahmad Naik, Mehak Naseer Mir, Ishfaq Ahmad Malik, Rima Bhardwaj, Fahad M Alshabrmi, Mahmoud Abdulrahman Mahmoud, Majid Alhomrani, Abdulhakeem S Alamri, Walaa F Alsanie, Ahmed Hjazi, Tanmoy Ghatak, Burkhard Poeggeler, Mahendra P Singh, Gopenath Ts, Sandeep Kumar Singh
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引用次数: 0

摘要

阿尔茨海默病(AD)是导致痴呆症最普遍的原因,也是造成老年人健康问题和死亡率的重要因素。这种疾病会导致认知功能的逐渐退化和痴呆的发生。最新进展表明,老年痴呆症的发展比单纯的潜在大脑异常更为复杂。此外,阿尔茨海默氏症、代谢综合征和氧化应激都彼此错综复杂地联系在一起。循环脂质浓度的增加和葡萄糖稳态的紊乱会加剧脂质氧化,导致机体抗氧化防御功能逐渐耗竭。这种加剧的氧化代谢对细胞的完整性产生不利影响,导致神经元损伤。公认的导致注意力缺失症发病机制的途径包括突触可塑性改变、神经元紊乱和细胞死亡。一些膜蛋白的代谢异常被认为会导致淀粉样蛋白(Aβ)寡聚体的产生,而淀粉样蛋白对神经传导途径,尤其是涉及乙酰胆碱的神经传导途径危害极大。Aβ 寡聚体与这些神经递质系统之间的相互作用被认为会诱发细胞功能障碍、神经递质信号传递失衡,并最终导致神经系统症状的出现。抗氧化剂对人体健康有重大影响,因为它们可以通过对抗自由基来改善衰老过程。神经退行性疾病目前无法治愈,但可以得到有效控制。一种有吸引力的替代方法是通过饮食或膳食补充剂来利用天然抗氧化剂(如多酚),这种方法具有诸多优势。在这一框架内,我们广泛研究了氧化应激在阿尔茨海默病发病过程中的重要性,以及抗氧化剂在减轻氧化应激影响方面的潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Potential Mechanism and the Role of Antioxidants in Mitigating Oxidative Stress in Alzheimer's Disease.

Alzheimer's disease (AD) is the most prevalent cause of dementia and a significant contributor to health issues and mortality among older individuals. This condition involves a progressive deterioration in cognitive function and the onset of dementia. Recent advancements suggest that the development of AD is more intricate than its underlying brain abnormalities alone. In addition, Alzheimer's disease, metabolic syndrome, and oxidative stress are all intricately linked to one another. Increased concentrations of circulating lipids and disturbances in glucose homeostasis contribute to the intensification of lipid oxidation, leading to a gradual depletion of the body's antioxidant defenses. This heightened oxidative metabolism adversely impacts cell integrity, resulting in neuronal damage. Pathways commonly acknowledged as contributors to AD pathogenesis include alterations in synaptic plasticity, disorganization of neurons, and cell death. Abnormal metabolism of some membrane proteins is thought to cause the creation of amyloid (Aβ) oligomers, which are extremely hazardous to neurotransmission pathways, especially those involving acetylcholine. The interaction between Aβ oligomers and these neurotransmitter systems is thought to induce cellular dysfunction, an imbalance in neurotransmitter signaling, and, ultimately, the manifestation of neurological symptoms. Antioxidants have a significant impact on human health since they may improve the aging process by combating free radicals. Neurodegenerative diseases are currently incurable; however, they may be effectively managed. An appealing alternative is the utilization of natural antioxidants, such as polyphenols, through diet or dietary supplements, which offer numerous advantages. Within this framework, we have extensively examined the importance of oxidative stress in the advancement of Alzheimer's disease, as well as the potential influence of antioxidants in mitigating its effects.

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