Vitexin loaded mixed polymeric micelles: preparation, optimization, evaluation and anti-osteoporotic effect.

Jian Zhang, Xiaoxiao Li, Xiaoli Xia, Michael Adu-Frimpong, Xinyi Shen, Qing He, Wanjing Rong, Feng Shi, Xia Cao, Hao Ji, Elmurat Toreniyazov, Qilong Wang, Jiangnan Yu, Ximing Xu
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Abstract

In this regard, we developed vitexin (Vi)-loaded D-ɑ-tocopherol polyethylene glycol succinate, polyvinylpyrrolidone K30 and sodium cholate mixed micelles (Vi-MMs) mainly for improving oral bioavailability and enhancing anti-osteoporotic effect of Vi. Thin layer dispersion method was employed to prepare Vi-MMs, and then the optimal prescription was optimized by the orthogonal design-response surface method, wherein encapsulation efficiency (EE) was used as optimizing index. The physical properties of Vi-MMs such as appearance morphology, particle size, and zeta potential were also characterized. We further analyzed thein-vitrorelease of Vi and Vi-MMs in three media and investigated the pharmacokinetics of Vi and Vi-MMs in rats. Anti-osteoporotic activity of Vi and Vi-MMs was assessed by establishing a zebrafish osteoporosis model with prednisone. Drug loading, EE, particle size and zeta potential of the optimized Vi-MMs were 8.58 ± 0.13%, 93.86 ± 1.79%, 20.41 ± 0.64 nm and -10 ± 0.56 mV, respectively. The optimized Vi-MMs were shaped spherically as exhibited by transmission electron microscopic technique, with evident core shell nano-structure, well dispersed. In all three media, the release rate of Vi-MMs was significantly higher than that of free Vi. The oral bioavailability of Vi-MMs was increased by 5.6-fold compared to free Vi. In addition, alleviation of prednisone induced osteoporosis in zebrafish by Vi-MMs further demonstrated good anti-osteoporotic effect. In summary, Vi-MMs exhibited enhanced bioavailability and anti-osteoporotic effect, which is expected to be potential nanocarrier for Vi applications in drug development.

牡荆素负载混合聚合物胶束的制备、优化、评价及抗骨质疏松作用。
为此,为了提高维生素D-维生素D-生育酚聚乙二醇琥珀酸酯、聚乙烯吡咯烷酮K30和胆酸钠混合胶束(Vi- mm)的口服生物利用度,增强其抗骨质疏松作用,我们研制了vitexin (Vi)负载的混合胶束(Vi)。采用薄层分散法制备了Vi- mm,并以包封率(EE)为优化指标,采用正交设计-响应面法优化处方。表征了vi - mm的外观形态、粒径和zeta电位等物理性质。我们进一步分析了它们在三种介质中的体外释放,并研究了它们在大鼠体内的药代动力学。通过强的松建立斑马鱼骨质疏松模型,评估Vi和Vi- mm的抗骨质疏松活性。优化后的vi - mm载药量、EE、粒径和zeta电位分别为8.58±0.13%、93.86±1.79%、20.41±0.64 nm和-10±0.56 mV。通过透射电镜观察,优化后的vi - mm呈球形,具有明显的核壳纳米结构,分散良好。在三种介质中,Vi- mm的释放率均显著高于游离Vi,口服生物利用度较游离Vi提高5.6倍。此外,Vi- mm对强的松所致的斑马鱼骨质疏松症的缓解进一步显示出良好的抗骨质疏松作用。综上所述,Vi- mm具有增强的生物利用度和抗骨质疏松作用,有望成为药物开发中潜在的Vi纳米载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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