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Pharmacological potential of tocotrienols: a review

机译:生育三烯酚的药理潜力:综述

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摘要

Tocotrienols, members of the vitamin E family, are natural compounds found in a number of vegetable oils, wheat germ, barley, and certain types of nuts and grains. Like tocopherols, tocotrienols are also of four types viz. alpha, beta, gamma and delta. Unlike tocopherols, tocotrienols are unsaturated and possess an isoprenoid side chain. Tocopherols are lipophilic in nature and are found in association with lipoproteins, fat deposits and cellular membranes and protect the polyunsaturated fatty acids from peroxidation reactions. The unsaturated chain of tocotrienol allows an efficient penetration into tissues that have saturated fatty layers such as the brain and liver. Recent mechanistic studies indicate that other forms of vitamin E, such as γ-tocopherol, δ-tocopherol, and γ-tocotrienol, have unique antioxidant and anti-inflammatory properties that are superior to those of α-tocopherol against chronic diseases. These forms scavenge reactive nitrogen species, inhibit cyclooxygenase- and 5-lipoxygenase-catalyzed eicosanoids and suppress proinflammatory signalling, such as NF-κB and STAT. The animal and human studies show tocotrienols may be useful against inflammation-associated diseases. Many of the functions of tocotrienols are related to its antioxidant properties and its varied effects are due to it behaving as a signalling molecule. Tocotrienols exhibit biological activities that are also exhibited by tocopherols, such as neuroprotective, anti-cancer, anti-inflammatory and cholesterol lowering properties. Hence, effort has been made to compile the different functions and properties of tocotrienols in experimental model systems and humans. This article constitutes an in-depth review of the pharmacology, metabolism, toxicology and biosafety aspects of tocotrienols. Tocotrienols are detectable at appreciable levels in the plasma after supplementations. However, there is inadequate data on the plasma concentrations of tocotrienols that are sufficient to demonstrate significant physiological effect and biodistribution studies show their accumulation in vital organs of the body. Considering the wide range of benefits that tocotrienols possesses against some common human ailments and having a promising potential, the experimental analysis accounts for about a small fraction of all vitamin E research. The current state of knowledge deserves further investigation into this lesser known form of vitamin E.Electronic supplementary materialThe online version of this article (doi:10.1186/1743-7075-11-52) contains supplementary material, which is available to authorized users.
机译:生育三烯酚是维生素E家族的一员,是在许多植物油,小麦胚芽,大麦以及某些类型的坚果和谷物中发现的天然化合物。像生育酚一样,生育三烯酚也有四种类型。 alpha,beta,gamma和delta。与生育酚不同,生育三烯酚是不饱和的,并具有类异戊二烯侧链。生育酚本质上是亲脂性的,并与脂蛋白,脂肪沉积物和细胞膜结合在一起,可以保护多不饱和脂肪酸免于过氧化反应。生育三烯酚的不饱和链可以有效地渗透到具有饱和脂肪层的组织中,例如大脑和肝脏。最近的机理研究表明,其他形式的维生素E,例如γ-生育酚,δ-生育酚和γ-生育三烯酚,具有独特的抗氧化剂和抗炎特性,优于针对慢性疾病的α-生育酚。这些形式清除活性氮,抑制环加氧酶和5-脂氧合酶催化的类花生酸,并抑制促炎性信号,例如NF-κB和STAT。动物和人体研究表明,生育三烯酚可能有助于抗炎相关疾病。生育三烯酚的许多功能与其抗氧化性能有关,其变化的作用归因于它作为信号分子的行为。生育三烯酚显示出生育酚也具有的生物活性,例如神经保护,抗癌,抗炎和降低胆固醇的特性。因此,已经努力在实验模型系统和人类中汇编生育三烯酚的不同功能和性质。本文构成对生育三烯酚的药理学,代谢,毒理学和生物安全性方面的深入综述。补充后血浆中的生育三烯酚含量可检测到。然而,关于生育三烯酚的血浆浓度的数据不足以证明其显着的生理作用,生物分布研究表明它们在人体重要器官中的积累。考虑到生育三烯酚对人类的某些常见疾病具有广泛的益处并具有广阔的发展潜力,因此实验分析仅占维生素E研究的一小部分。当前的知识状态值得对这种鲜为人知的维生素E形式进行进一步研究。电子补充材料本文的在线版本(doi:10.1186 / 1743-7075-11-52)包含补充材料,授权用户可以使用。

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