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β-环糊精对杨梅素纳米包埋后分子性质的影响:光学光谱和量子化学研究的见解。

Effect of β-cyclodextrin on the molecular properties of myricetin upon nano-encapsulation: insight from optical spectroscopy and quantum chemical studies.

机构信息

Saroj Mohan Institute of Technology, Guptipara, Hooghly 712512, India.

出版信息

Carbohydr Polym. 2014 Jan;99:116-25. doi: 10.1016/j.carbpol.2013.08.008. Epub 2013 Aug 13.

Abstract

Myricetin, a bioactive plant flavonol, readily forms inclusion complex with the drug delivery vehicle beta-cyclodextrin (β-CD). Appearance of typical "dual emission", consisting of normal (470 nm) and ESIPT tautomer (530 nm) bands, with concomitant rise in fluorescence intensity and dramatically blue shifted normal fluorescence of myricetin with increasing β-CD concentration, indicates facile entry of myricetin into the cavity of β-CD. The stoichiometry of the inclusion complex has been established to be equimolar (1:1), with an equilibrium constant of 439 ± 18 M(-1) at 25 °C. The driving force of inclusion is attributed to strong van der Waals interaction and formation of hydrogen bond between host (β-CD) and guest (myricetin). Both experimental and theoretical studies indicate that myricetin possibly incorporates within β-CD through its benzoyl moiety. Inclusion in β-CD increases the antioxidant potency of myricetin which has been attributed to the less delocalised HOMO and reduced HOMO-LUMO energy gap in the confined state.

摘要

杨梅素是一种生物活性植物类黄酮,可与药物输送载体β-环糊精(β-CD)形成包合物。出现典型的“双重发射”,由正常(470nm)和 ESIPT 互变异构体(530nm)带组成,随着β-CD 浓度的增加,杨梅素的荧光强度显著增加,正常荧光明显蓝移,表明杨梅素很容易进入β-CD 的腔中。包合物的化学计量比已确定为等摩尔(1:1),在 25°C 时平衡常数为 439±18M(-1)。包合的驱动力归因于主体(β-CD)和客体(杨梅素)之间的强范德华相互作用和氢键的形成。实验和理论研究均表明,杨梅素可能通过其苯甲酰部分与β-CD 结合。在β-CD 中的包合增加了杨梅素的抗氧化能力,这归因于受限状态下 HOMO 较少离域和 HOMO-LUMO 能隙减小。

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