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首页> 外文期刊>International Journal of Pharmaceutics >Casein nanoparticles in combination with 2-hydroxypropyl-beta-cyclodextrin improves the oral bioavailability of quercetin
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Casein nanoparticles in combination with 2-hydroxypropyl-beta-cyclodextrin improves the oral bioavailability of quercetin

机译:酪蛋白纳米颗粒与2-羟丙基 - β-环糊精组合改善了槲皮素的口腔生物利用度

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The aim of this work was to optimize the preparative process of quercetin loaded casein nanoparticles as well as to evaluate the pharmacokinetics of this flavonoid when administered orally in Wistar rats. Nanoparticles were obtained by coacervation after the incubation of casein, 2-hydroxypropyl-beta-cyclodextrin (HP-beta-CD) and quercetin in an aqueous environment. Then, nanoparticles were purified and dried. The resulting nanoparticles displayed a size of 200 nm with a negative zeta potential and a payload of about 32 mu g/mg. Release studies showed a zero-order kinetic, suggesting a mechanism based on erosion of the nanoparticle matrix. For the pharmacokinetic study, quercetin was orally administered to rats as a single dose of 25 mg/kg. Animals treated with quercetin-loaded casein nanoparticles displayed higher plasma levels than those observed in animals receiving the solution of the flavonoid (control). Thus, the relative oral bioavailability of quercetin when administered as casein nanoparticles (close to 37%) was found to be about 9-times higher than the oral solution of the flavonoid in a mixture of PEG 400 and water. In summary, the combination of casein and 2-hydroxypropyl-beta-cyclodextrin produces nanoparticles that may be a good option to load quercetin for both nutraceutical and pharmaceutical purposes.
机译:本作作品的目的是优化槲皮素的酪蛋白纳米颗粒的制备方法,以及在Wistar大鼠口服给药时评估该类黄酮的药代动力学。通过在酪蛋白,2-羟丙基 - β-环糊精(HP-Beta-CD)和槲皮素在水环境中孵育后,通过凝聚来获得纳米粒子。然后,纯化纳米颗粒并干燥。所得纳米颗粒的尺寸为200nm,具有负Zeta电位和约32μg/ mg的有效载荷。释放研究显示零级动力学,暗示了基于纳米粒子基质腐蚀的机制。对于药代动力学研究,将槲皮素口服给予大鼠,例如25mg / kg的单剂量。用槲皮素负载的酪蛋白纳米粒子治疗的动物显示比在接受类黄酮(对照)溶液中观察到的等离子体水平更高的血浆水平。因此,发现作为酪蛋白纳米颗粒(接近37%)时槲皮素的相对口服生物利用度约为比PEG 400和水的混合物中黄酮酸的口服溶液高约9倍。总之,酪蛋白和2-羟丙基 - β-环糊精的组合产生纳米颗粒,其可以是负载植物和药物目的的槲皮素的良好选择。

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