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Stealth MePEG-PCL micelles: effects of polymer composition on micelle physicochemical characteristics, in vitro drug release, in vivo pharmacokinetics in rats and biodistribution in S-180 tumor bearing mice

机译:隐形MePEG-PCL胶束:聚合物成分对胶束理化特性,体外药物释放,大鼠体内药代动力学以及在S-180荷瘤小鼠中的生物分布的影响

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摘要

The amphiphilic copolymer of poly(methoxy-polyethyleneglycol polycaprolactone) (MePEG-PCL) was synthesized. Micelles loading hydroxycamptothecin (HCPT) as a model drug were prepared by solid-dispersion and dialysis-hydration method. The MePEG-PCL micelles were further characterized in terms of critical association concentrations (CAC), PEG surface density, fixed aqueous layer thickness, in vitro drug release and in vivo pharmacokinetics and biodistribution. The results showed that longer polycaprolactone (PCL) chain length would lead to the reduction of CAC value, stabilized HCPT, increasing drug-loading coefficient, sparser PEG surface density and slower drug release patterns. On the other hand, longer PEG chain length would give rise to less negative zeta potential and larger fixed aqueous layer thickness, as well as sparser PEG surface density and quicker drug release. MePEG-PCL micelles with PEG molecular weight of 2,000, 5,000, 10,000 could extend the AUC of HCPT in blood compartment by 9.13, 13.82, 21.25 times and increase the AUC of I-125-HCPT in the tumor of S-180 mice by 7.94, 11.32, 26.08-fold, respectively. It was suggested that the PEG and PCL chain length may play a very important role in the micelle's in vitro properties and in vivo behavior.
机译:合成了聚(甲氧基-聚乙二醇聚己内酯)(MePEG-PCL)的两亲共聚物。通过固体分散和透析-水合作用方法制备了载有羟基喜树碱(HCPT)作为模型药物的胶束。 MePEG-PCL胶束根据临界缔合浓度(CAC),PEG表面密度,固定水层厚度,体外药物释放以及体内药代动力学和生物分布进行了进一步表征。结果表明,更长的聚己内酯(PCL)链长度会导致CAC值降低,HCPT稳定,药物载量系数增加,PEG表面密度较稀疏和药物释放模式减慢。另一方面,较长的PEG链长会导致负的zeta电位降低,固定的水层厚度增大,而PEG表面密度较稀疏,药物释放速度更快。 PEG分子量分别为2,000、5,000、10,000的MePEG-PCL胶束可以使HCPT在血腔中的AUC延长9.13、13.82、21.25倍,并使S-180小鼠肿瘤中I-125-HCPT的AUC增大7.94 ,11.32、26.08倍。有人认为,PEG和PCL链的长度可能在胶束的体外特性和体内行为中起着非常重要的作用。

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