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首页> 外文期刊>International Journal of Pharmaceutics >Brain delivery of camptothecin by means of solid lipid nanoparticles: Formulation design, in vitro and in vivo studies
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Brain delivery of camptothecin by means of solid lipid nanoparticles: Formulation design, in vitro and in vivo studies

机译:喜树碱通过固体脂质纳米颗粒的脑部递送:配方设计,体外和体内研究

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摘要

For the purpose of brain delivery upon intravenous injection, formulations of camptothecin-loaded solid lipid nanoparticles (SLN), prepared by hot high pressure homogenisation, were designed. Incorporation of camptothecin in the hydrophobic and acidic environment of SLN matrix was chosen to stabilise the lactone ring, which is essential for its antitumour activity, and for avoiding premature loss of drug on the way to target camptothecin to the brain. A multivariate approach was used to assess the influence of the qualitative and quantitative composition on the physicochemical properties of camptothecin-loaded SLN in comparison to plain SLN. Mean particle sizes of ≤200 nm, homogenous size distributions and high encapsulation efficiencies (>90%) were achieved for the most suitable formulations. In vitro release studies in plasma, showed a prolonged release profile of camptothecin from SLN, confirming the physical stability of the particles under physiological pH. A higher affinity of the SLN to the porcine brain capillary endothelial cells (BCEC) was shown in comparison to macrophages. MTT studies in BCEC revealed a moderate decrease in the cell viability of camptothecin, when incorporated in SLN compared to free camptothecin in solution. In vivo studies in rats showed that fluorescently labelled SLN were detected in the brain after i.v. administration. This study indicates that the camptothecin-loaded SLN are a promising drug brain delivery system worth to explore further for brain tumour therapy.
机译:为了静脉注射时脑部递送的目的,设计了通过热高压均质化制备的载有喜树碱的固体脂质纳米颗粒(SLN)的制剂。选择将喜树碱掺入SLN基质的疏水和酸性环境中以稳定内酯环,这对于其抗肿瘤活性以及避免在将喜树碱靶向大脑的过程中避免药物过早丢失至关重要。与单纯的SLN相比,使用多元方法评估定性和定量组成对喜树碱负载的SLN的理化性质的影响。对于最合适的配方,平均粒径≤200 nm,粒径分布均匀,包封效率高(> 90%)。血浆中的体外释放研究表明喜树碱从SLN的释放曲线延长,从而证实了在生理pH下颗粒的物理稳定性。与巨噬细胞相比,SLN对猪脑毛细血管内皮细胞(BCEC)的亲和力更高。 BCEC中的MTT研究表明,与溶液中的游离喜树碱相比,掺入SLN中时喜树碱的细胞活力有中等程度的降低。对大鼠的体内研究表明,静脉内注射后在大脑中检测到荧光标记的SLN。行政。这项研究表明,喜树碱加载的SLN是一种有前途的药物脑传递系统,值得进一步探索脑肿瘤治疗。

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