橙花叔醇--通过其抗氧化特性治疗各种神经系统疾病的潜在药物

IF 2.2 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Vibhav Varshney, Prachi Varshney, Abhishek Kumar, Ahsas Goyal, Debapriya Garabadu
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引用次数: 0

摘要

神经系统疾病是影响老年人认知和运动功能的毁灭性疾病。然而,目前还没有治疗这些疾病的适当药物,现有的药物只能缓解患者的症状。所有神经系统疾病都有相同的病因,如氧化应激、线粒体功能障碍、神经化学物质缺乏、神经元缺失、细胞凋亡、内质网应激、神经炎症以及与疾病相关的蛋白质聚集。如今,研究人员利用抗氧化剂策略来预防或阻止疾病的发展。橙花叔醇是一种强抗氧化剂,具有多种生物活性和特性,可治疗心脏毒性、肾毒性、神经毒性和许多其他疾病。最近的许多出版物和研究都强调了橙花醇对脑部疾病的有益作用。在阿尔茨海默病中,橙花叔醇通过增强抗氧化剂的表达,减少淀粉样斑块的形成、脂质过氧化、胆碱能神经元损失、运动功能障碍、神经炎症和海马损伤,从而显示出神经保护作用。此外,它还能通过抑制小胶质细胞活化,对鱼藤酮诱导的神经毒性起到神经保护作用。另一项研究报告称,橙花叔醇通过降低氧化应激,抑制了kindling诱导的记忆损伤,从而在动物模型中显示出抗癫痫作用。研究发现,服用橙花叔醇可提高抗氧化剂水平,减少促炎细胞因子的释放,以及减少凋亡蛋白和脑梗塞面积。总之,橙花叔醇可逆转疾病相关因素的有害影响,包括操作系统、神经炎症、蛋白聚集和细胞凋亡,因此橙花叔醇是治疗神经系统疾病的一种可选药物。本综述旨在讨论橙花叔醇治疗各种神经系统疾病的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nerolidol- Potential Therapeutic Agent for Various Neurological Disorders via its Antioxidative Property.

Neurological disorders are devastating conditions affecting both cognitive and motorrelated functions in aged people. Yet there is no proper medication to treat these illnesses, and the currently available medications can only provide symptomatic relief to the patients. All neurological disorders share the same etiology, such as oxidative stress, mitochondrial dysfunction, neurochemical deficiency, neuronal loss, apoptosis, endoplasmic reticulum stress, neuroinflammation, and disease-related protein aggregation. Nowadays, researchers use antioxidant-based strategies to prevent or halt the disease progression. Nerolidol, a strong antioxidant, possesses various biological activities and properties that treat cardiotoxicity, nephrotoxicity, neurotoxicity, and many other diseases. Many recent publications and research studies highlight the beneficial effect of nerolidol on brain disorders. In Alzheimer's disease, nerolidol shows neuroprotection by decreasing amyloid plaque formation, lipid peroxidation, cholinergic neuronal loss, locomotor dysfunction, neuroinflammation, and hippocampal damage via enhancing antioxidant expression. Also, it shows neuroprotection against rotenone-induced neurotoxicity by inhibiting microglial activation. Another study reported that nerolidol shows antiepileptic effects in animal models by suppressing kindling-induced memory impairment by decreasing oxidative stress. It has been found that NRL administration increases the antioxidant levels, decreasing the proinflammatory cytokine release as well as decreasing the apoptotic protein and cerebral infarct size. In conclusion, nerolidol tends to reverse the harmful effects of disease-related factors, including OS, neuroinflammation, protein aggregation, and apoptosis, making nerolidol a choiceable drug for the management of neurological disorders. The purpose of this review is to discuss the mechanism of nerolidol in treating various neurological disorders.

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来源期刊
Current pharmaceutical biotechnology
Current pharmaceutical biotechnology 医学-生化与分子生物学
CiteScore
5.60
自引率
3.60%
发文量
203
审稿时长
6 months
期刊介绍: Current Pharmaceutical Biotechnology aims to cover all the latest and outstanding developments in Pharmaceutical Biotechnology. Each issue of the journal includes timely in-depth reviews, original research articles and letters written by leaders in the field, covering a range of current topics in scientific areas of Pharmaceutical Biotechnology. Invited and unsolicited review articles are welcome. The journal encourages contributions describing research at the interface of drug discovery and pharmacological applications, involving in vitro investigations and pre-clinical or clinical studies. Scientific areas within the scope of the journal include pharmaceutical chemistry, biochemistry and genetics, molecular and cellular biology, and polymer and materials sciences as they relate to pharmaceutical science and biotechnology. In addition, the journal also considers comprehensive studies and research advances pertaining food chemistry with pharmaceutical implication. Areas of interest include: DNA/protein engineering and processing Synthetic biotechnology Omics (genomics, proteomics, metabolomics and systems biology) Therapeutic biotechnology (gene therapy, peptide inhibitors, enzymes) Drug delivery and targeting Nanobiotechnology Molecular pharmaceutics and molecular pharmacology Analytical biotechnology (biosensing, advanced technology for detection of bioanalytes) Pharmacokinetics and pharmacodynamics Applied Microbiology Bioinformatics (computational biopharmaceutics and modeling) Environmental biotechnology Regenerative medicine (stem cells, tissue engineering and biomaterials) Translational immunology (cell therapies, antibody engineering, xenotransplantation) Industrial bioprocesses for drug production and development Biosafety Biotech ethics Special Issues devoted to crucial topics, providing the latest comprehensive information on cutting-edge areas of research and technological advances, are welcome. Current Pharmaceutical Biotechnology is an essential journal for academic, clinical, government and pharmaceutical scientists who wish to be kept informed and up-to-date with the latest and most important developments.
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