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黄酮类载药纳米粒子作为一种对抗核糖核酸酶 A 氧化应激的有效手段。

Flavonoid loaded nanoparticles as an effective measure to combat oxidative stress in Ribonuclease A.

机构信息

Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

出版信息

Biochimie. 2019 Jul;162:185-197. doi: 10.1016/j.biochi.2019.04.023. Epub 2019 May 3.

Abstract

Flavonoids like quercetin and myricetin serve as naturally occurring antioxidants but their bioactivity is limited due to low aqueous solubility and oxidation under physiological conditions. In this current study, the antioxidant activity of quercetin and myricetin loaded chitosan nanoparticles during the induced oxidation of Ribonuclease A (RNase A) has been compared with the corresponding free flavonoids. Oxidation of RNase A leads to intermolecular dityrosine (DT) bond formation which shows a characteristic fluorescence emission around 405 nm. Although both quercetin and myricetin loaded nanoparticles initially exhibit lower antioxidant property compared to the free flavonoids, however, with increase in oxidant concentration over time the DT fluorescence showed greater increase for free flavonoids in comparison to the nanoparticles. The polyphenol loaded nanoparticles are also found to be effective in preventing bacterial cell damage in oxidizing medium. The slow release of flavonoids from the nanoparticles is responsible for their prolonged antioxidant effect in the oxidizing medium unlike the free flavonoids which are exhausted almost completely in the initial phase.

摘要

类黄酮如槲皮素和杨梅素是天然存在的抗氧化剂,但由于低水溶解度和在生理条件下氧化,其生物活性受到限制。在本研究中,比较了壳聚糖纳米粒子负载的槲皮素和杨梅素在核糖核酸酶 A(RNase A)诱导氧化过程中的抗氧化活性与相应的游离类黄酮。RNase A 的氧化导致二酪氨酸(DT)键的形成,这在 405nm 左右表现出特征荧光发射。虽然负载的纳米粒子最初显示出比游离类黄酮更低的抗氧化特性,但随着时间的推移,氧化剂浓度的增加,与纳米粒子相比,游离类黄酮的 DT 荧光显示出更大的增加。多酚负载的纳米粒子在氧化介质中也被发现能有效防止细菌细胞损伤。与游离类黄酮相比,纳米粒子中的类黄酮缓慢释放是其在氧化介质中具有持久抗氧化作用的原因,游离类黄酮在初始阶段几乎完全耗尽。

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