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探索生育三烯酚针对神经退行性疾病的抗炎活性、作用机制及前瞻性药物递送系统。

Exploring the anti-inflammatory activities, mechanism of action and prospective drug delivery systems of tocotrienol to target neurodegenerative diseases.

作者信息

Mathew Angela Maria, Bhuvanendran Saatheeyavaane, Nair Rajesh Sreedharan, K Radhakrishnan Ammu

机构信息

Department of Life Sciences, CHRIST (Deemed to be University), Bangalore, Karnataka, 560029, India.

Jeffrey Cheah School of Medicine and Health Sciences, Monash University Malaysia, Bandar Sunway, Selangor, 47500, Malaysia.

出版信息

F1000Res. 2023 Mar 27;12:338. doi: 10.12688/f1000research.131863.1. eCollection 2023.

Abstract

A major cause of death in the elderly worldwide is attributed to neurodegenerative diseases, such as AD (Alzheimer's disease), PD (Parkinson's disease), ALS (Amyotrophic lateral sclerosis), FRDA (Friedreich's ataxia), VaD (Vascular dementia) etc. These can be caused due to multiple factors such as genetic, physiological problems like stroke or tumor, or even external causes like viruses, toxins, or chemicals. T3s (tocotrienols) exhibit various bioactive properties where it acts as an antioxidant, anti-inflammatory, anti-tumorigenic, and cholesterol lowering agent. Since T3 interferes with and influences several anti-inflammatory mechanisms, it aids in combating inflammatory responses that lead to disease progression. T3s are found to have a profound neuroprotective ability, however, due to their poor oral bioavailability, their full potential could not be exploited. Hence there is a need to explore other drug delivery techniques, especially focusing on aspects of nanotechnology. In this review paper we explore the anti-inflammatory mechanisms of T3 to apply it in the treatment of neurodegenerative diseases and also discusses the possibilities of nano methods of administering tocotrienols to target neurodegenerative diseases.

摘要

全球老年人的主要死因归因于神经退行性疾病,如阿尔茨海默病(AD)、帕金森病(PD)、肌萎缩侧索硬化症(ALS)、弗里德赖希共济失调(FRDA)、血管性痴呆(VaD)等。这些疾病可能由多种因素引起,如遗传因素、生理问题(如中风或肿瘤),甚至外部因素(如病毒、毒素或化学物质)。生育三烯酚(T3s)具有多种生物活性特性,可作为抗氧化剂、抗炎剂、抗肿瘤剂和降胆固醇剂。由于T3干扰并影响多种抗炎机制,它有助于对抗导致疾病进展的炎症反应。人们发现T3s具有强大的神经保护能力,然而,由于其口服生物利用度差,其全部潜力无法得到充分发挥。因此,有必要探索其他药物递送技术,特别是专注于纳米技术方面。在这篇综述论文中,我们探讨了T3的抗炎机制,以便将其应用于神经退行性疾病的治疗,并讨论了采用纳米方法给药生育三烯酚以靶向神经退行性疾病的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edf3/11406131/feaed8b1415c/f1000research-12-144748-g0000.jpg

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