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Preparation and Pharmacokinetic Study of Daidzein Long-Circulating Liposomes

机译:大豆苷元长循环脂质体的制备及药代动力学研究

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摘要

In this study, daidzein long-circulating liposomes (DLCL) were prepared using the ultrasonication and lipid film-hydration method. The optimized preparation conditions by the orthogonal design was as follows: 55 to 40 for the molar ratio of soybean phosphatidylcholine (SPC) to cholesterol, 1 to 10 for the mass ratio of daidzein to total lipid (SPC and cholesterol) (w:w), the indicated concentration of 5% DSPE-mPEG2000 (w:w), 50 °C for the hydration temperature, and 24 min for the ultrasonic time. Under these conditions, the encapsulation efficiency and drug loading of DLCL were 85.3 ± 3.6% and 8.2 ± 1.4%, respectively. The complete release times of DLCL in the medium of pH 1.2 and pH 6.9 increased by four- and twofold of that of free drugs, respectively. After rats were orally administered, a single dose of daidzein (30 mg/kg) and DLCL (containing equal dose of daidzein), respectively, and the MRT0−t (mean residence time, which is the time required for the elimination of 63.2% of drug in the body), t1/2 (the elimination half-life, which is the time required to halve the plasma drug concentration of the terminal phase), and AUC0−t (the area under the plasma drug concentration-time curve, which represents the total absorption after a single dose and reflects the drug absorption degree) of daidzein in DLCL group, increased by 1.6-, 1.8- and 2.5-fold as compared with those in the free group daidzein. Our results indicated that DLCL could not only reduce the first-pass effect of daidzein to promote its oral absorption, but also prolong its mean resident time to achieve the slow-release effect.
机译:在这项研究中,大豆黄酮长循环脂质体(DLCL)是使用超声和脂质膜水化方法制备的。通过正交设计优化的制备条件如下:大豆磷脂酰胆碱(SPC)与胆固醇的摩尔比为55至40,大豆黄酮与总脂质(SPC和胆固醇)的质量比(w:w)为1至10 ,指示浓度为5%DSPE-mPEG2000(w:w),水合温度为50 C,超声时间为24 min。在此条件下,DLCL的包封率和载药量分别为85.3±3.6%和8.2±1.4%。在pH 1.2和pH 6.9的介质中,DLCL的完全释放时间分别增加了游离药物的四倍和两倍。大鼠口服后,单剂量黄豆苷元(30μmg/ kg)和DLCL(含有相等剂量的黄豆苷元)和MRT0-t(平均停留时间,即消除63.2%所需的时间) t1 / 2(消除半衰期,这是将终末期血浆药物浓度减半所需的时间)和AUC0-t(血浆药物浓度-时间曲线下的面积), DLCL组的大豆苷元单剂量给药后的总吸收量(反映药物的吸收程度)与游离大豆苷元组相比增加了1.6倍,1.8倍和2.5倍。我们的结果表明,DLCL不仅可以降低大豆苷元的首过效应以促进其口服吸收,而且可以延长其平均停留时间以达到缓释作用。

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