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用于多西他赛口服递送的聚丙交酯-维生素E衍生物/蒙脱石纳米颗粒制剂

Poly(lactide)-vitamin E derivative/montmorillonite nanoparticle formulations for the oral delivery of Docetaxel.

作者信息

Feng Si-Shen, Mei Lin, Anitha Panneerselvan, Gan Chee Wee, Zhou Wenyou

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, Block E5, 02-11, 4 Engineering Drive 4, Singapore 117576, Singapore.

出版信息

Biomaterials. 2009 Jul;30(19):3297-306. doi: 10.1016/j.biomaterials.2009.02.045. Epub 2009 Mar 19.

Abstract

Four systems of nanoparticles of biodegradable polymers were developed in this research for oral delivery of anticancer drugs with Docetaxel used as a model drug, which include the poly(lactic-co-glycolic acid) nanoparticles (PLGA NPs), the poly(lactide)-vitamin E TPGS nanoparticles (PLA-TPGS NPs), the poly(lactic-co-glycolic acid)-montmorillonite nanoparticles (PLGA/MMT NPs) and the poly(lactide)-vitamin E TPGS/montmorillonite nanoparticles (PLA-TPGS/MMT NPs). Vitamin E TPGS stands for d-alpha-tocopheryl polyethylene glycol 1000 succinate (TPGS), which is a water-soluble derivative of natural vitamin E formed by esterification of vitamin E succinate with polyethylene glycol (PEG) 1000. The design was made to take advantages of TPGS in nanoparticle technology such as high emulsification effects and high drug encapsulation efficiency, and those in drug formulation such as high cellular adhesion and adsorption. MMT of similar effects is also a detoxifier, which may cure some side effects caused by the formulated drug. The drug-loaded NPs were prepared by a modified solvent extraction/evaporation method and then characterized for their MMT content, size and size distribution, surface charge and morphology, physical status and encapsulation efficiency of the drug in the NPs, and in vitro drug release profile. Cellular uptake of the coumarin 6-loaded NPs was investigated. In vitro cancer cell viability experiment showed that judged by IC(50), the PLA-TPGS/MMT NP formulation was found 2.89, 3.98, 2.12-fold more effective and the PLA-TPGS NP formulation could be 1.774, 2.58, 1.58-fold more effective than the Taxotere((R)) after 24, 48, 72h treatment, respectively. In vivo PK experiment with SD rats showed that oral administration of the PLA-TPGS/MMT NP formulation and the PLA-TPGS NP formulation could achieve 26.4 and 20.6 times longer half-life respectively than i.v. administration of Taxotere((R)) at the same 10mg/kg dose. One dose oral administration of the NP formulations could realize almost 3 week sustained chemotherapy in comparison of 22h of i.v. administration of Taxotere((R)). The oral bioavailability can be enhanced from 3.59% for Taxotere((R)) to 78% for the PLA-TPGS/MMT NP formulation and 91% for the PLA-TPGS NP formulation respectively. Oral chemotherapy by nanoparticles of biodegradable polymers is feasible.

摘要

本研究开发了四种可生物降解聚合物纳米颗粒系统用于口服递送抗癌药物,以多西他赛作为模型药物,包括聚(乳酸 - 乙醇酸)纳米颗粒(PLGA NPs)、聚(丙交酯)-维生素E TPGS纳米颗粒(PLA - TPGS NPs)、聚(乳酸 - 乙醇酸)-蒙脱石纳米颗粒(PLGA/MMT NPs)和聚(丙交酯)-维生素E TPGS/蒙脱石纳米颗粒(PLA - TPGS/MMT NPs)。维生素E TPGS代表d-α-生育酚聚乙二醇1000琥珀酸酯(TPGS),它是天然维生素E的水溶性衍生物,由维生素E琥珀酸酯与聚乙二醇(PEG)1000酯化形成。该设计利用了TPGS在纳米颗粒技术中的优势,如高乳化效果和高药物包封效率,以及在药物制剂中的优势,如高细胞粘附和吸附。具有类似作用的蒙脱石也是一种解毒剂,它可以消除制剂药物引起的一些副作用。通过改进的溶剂萃取/蒸发法制备载药纳米颗粒,然后对其蒙脱石含量、尺寸和尺寸分布、表面电荷和形态、物理状态以及药物在纳米颗粒中的包封效率和体外药物释放曲线进行表征。研究了载香豆素6纳米颗粒的细胞摄取情况。体外癌细胞活力实验表明,以IC(50)判断,在分别处理24、48、72小时后,PLA - TPGS/MMT NP制剂比泰索帝(Taxotere)分别有效2.89、3.98、2.12倍,PLA - TPGS NP制剂比泰索帝(Taxotere)分别有效1.774、2.58、1.58倍。对SD大鼠进行的体内药代动力学实验表明,以相同的10mg/kg剂量口服PLA - TPGS/MMT NP制剂和PLA - TPGS NP制剂,其半衰期分别比静脉注射泰索帝(Taxotere)长26.4倍和20.6倍。与静脉注射泰索帝(Taxotere)22小时相比,口服一剂纳米颗粒制剂可实现近3周的持续化疗。口服生物利用度可分别从泰索帝(Taxotere)的3.59%提高到PLA - TPGS/MMT NP制剂的78%和PLA - TPGS NP制剂的91%。可生物降解聚合物纳米颗粒进行口服化疗是可行的。

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