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A Short Review on the Efficacy of Derivatives of Curcumin

机译:姜黄素衍生物功效研究进展

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Curcumin with medicinal value should possess good bioavailability and stability. Unfortunately, the bioavailability of curcumin is less, and its stability depends on the medium. After intake of curcumin, it undergoes metabolism to form metabolites, which are bioactive and show better bioavailability than curcumin. Hence, the disadvantages of curcumin can be overcome by the formation of its synthetic derivative. In this review paper, the derivatives of curcumin, namely tetrahydrocur-cumin, hexahydrocurcumin, octahydrocurcumin, deketene curcumin, and dimethoxycurcumin are discussed. The diketo group, diene moiety, and ortho-methoxy phenolic groups present in curcumin influence its properties. Curcumin undergoes degradation in alkaline and non-polar mediums, mainly because of its property to exhibit keto-enol tautomerism, which is further enhanced due to the presence of diene moiety and ortho-methoxy phenolic groups. If the keto-enol tautomerism is inhibited by its derivatization, then its stability is improved. This is especially true in the case of hexahydro-curcumin, octahydrocurcumin, and deketene curcumin, which do not possess an active methylene group. Although tetrahydrocurcumin undergoes keto-enol tautomerism, the degradation of enol tautomer is prevented due to the absence of diene moiety. The activities of curcumin are medium dependent, whereas the activities of hydrogenated derivatives of curcumin and deketene curcumin are medium independent. Dimethoxycurcumin exhibits keto-enol tautomerism and can undergo degradation in alkaline and non-polar mediums at a faster rate than curcumin. The reason is that the strong activating hydroxyl groups in curcumin are replaced by a stronger activating methoxy group in di-methoxycurcumin. On the other hand, in acidic and polar mediums, the rate of beneficial activities of dimethoxycurcumin is more than curcumin. Also, the bioavailability of the above-mentioned derivatives of curcumin is more than curcumin.
机译:姜黄素与药用价值应具备良好生物利用度和稳定性。姜黄素的生物利用度低,其稳定取决于介质。姜黄素,它经历了新陈代谢代谢产物,生物活性并展示更好比姜黄素生物利用度。姜黄素是可以克服的缺点形成的合成衍生物。审查论文,姜黄素的衍生物,即dimethoxycurcumin进行了讨论。集团、二烯基,和ortho-methoxy酚醛群体在姜黄素影响它属性。碱性和非极性介质,主要是因为房地产展示keto-enol互变现象,这是进一步提高由于的存在吗二烯一半和ortho-methoxy酚组。如果keto-enol互变现象是由其抑制衍生化,提高其稳定性。的情况下尤其如此hexahydro-curcumin octahydrocurcumin,deketene姜黄素,不拥有一个活跃的亚甲基组。经历keto-enol互变现象,退化烯醇互变异构体是由于没有阻止二烯的一部分。媒介的依赖,而活动的氢化姜黄素和deketene的衍生品姜黄素是介质无关的。Dimethoxycurcumin展品keto-enol互变现象并可以在碱性和发生退化非极性介质速度比姜黄素。原因是强烈激活羟基在姜黄素组取而代之的是更强的激活di-methoxycurcumin甲氧基集团。另一方面,在酸性和极性介质,有益的活动dimethoxycurcumin比姜黄素。上述的生物利用度姜黄素比姜黄素的衍生品。

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