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通过基于两亲性聚磷腈的聚合物胶束将吲哚美辛局部递送至患有关节炎的大鼠体内。

Local delivery of indomethacin to arthritis-bearing rats through polymeric micelles based on amphiphilic polyphosphazenes.

作者信息

Zhang Jian Xiang, Yan Mei Qiu, Li Xiao Hui, Qiu Li Yan, Li Xiao Dong, Li Xiao Jing, Jin Yi, Zhu Kang Jie

机构信息

College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310068, People's Republic of China.

出版信息

Pharm Res. 2007 Oct;24(10):1944-53. doi: 10.1007/s11095-007-9322-4. Epub 2007 May 26.

Abstract

PURPOSE

Preparation, in vitro and in vivo evaluation of indomethacin-loaded polymeric micelles based on amphiphilic polyphosphazene.

METHODS

Amphiphilic polyphosphazenes (PNIPAAm/EAB-PPPs) with poly (N-isopropylacrylamide) (PNIPAAm) and ethyl 4-aminobenzoate (EAB) as side groups were synthesized through thermal ring-opening polymerization and subsequent substitution reactions. Indomethacin (IND) loaded polymeric micelles based on PNIPAAm/EAB-PPPs were prepared by dialysis procedure. In vitro IND release kinetics was investigated in 0.1 M PBS (pH 7.4), while in vivo pharmacokinetics was performed in Sprague-Dawley rats. In vivo pharmacodynamic study was carried out based on two animal models, i.e. carrageenan-induced acute paw edema and complete Freund's adjuvant (CFA) induced ankle arthritis model.

RESULTS

Drug loading capacity of micelles based on this type of amphiphilic copolymers was mainly determined by copolymer composition and the chemical structure of drug. In addition to the compatibility between drug and micellar core, hydrogen bonding interaction between drug and hydrophilic corona may significantly influence drug loading as well. In vitro drug release in PBS suggested that there was no significant difference in release rate between micelles based on copolymers with various EAB content. Compared with the rats administered with free IND aqueous solution, IND concentration in rats' plasma showed a prolonged maintenance in experimental group treated with IND-loaded polymeric micelles. In vivo pharmacodynamic study indicated that sustained therapeutic efficacy could be achieved through topical injection of the aqueous solution of IND-loaded micelles. Local delivery of IND can avoid the severe gastrointestinal stimulation, which was frequently associated with oral administration as evidenced by ulceration evaluation.

CONCLUSIONS

The promising results of current preliminary study suggest that this type of amphiphilic copolymers could be used as injectable drug carriers for hydrophobic drugs.

摘要

目的

制备基于两亲性聚磷腈的吲哚美辛负载聚合物胶束,并进行体外和体内评价。

方法

通过热开环聚合及后续取代反应合成了以聚(N-异丙基丙烯酰胺)(PNIPAAm)和4-氨基苯甲酸乙酯(EAB)为侧基的两亲性聚磷腈(PNIPAAm/EAB-PPPs)。采用透析法制备了基于PNIPAAm/EAB-PPPs的吲哚美辛(IND)负载聚合物胶束。在0.1 M PBS(pH 7.4)中研究了IND的体外释放动力学,同时在Sprague-Dawley大鼠中进行了体内药代动力学研究。基于两种动物模型进行了体内药效学研究,即角叉菜胶诱导的急性爪肿胀和完全弗氏佐剂(CFA)诱导的踝关节关节炎模型。

结果

基于这类两亲性共聚物的胶束载药量主要由共聚物组成和药物化学结构决定。除了药物与胶束核的相容性外,药物与亲水性冠层之间的氢键相互作用也可能显著影响载药量。PBS中的体外药物释放表明,基于不同EAB含量共聚物的胶束在释放速率上没有显著差异。与给予游离IND水溶液的大鼠相比,给予IND负载聚合物胶束的实验组大鼠血浆中IND浓度维持时间延长。体内药效学研究表明,通过局部注射IND负载胶束的水溶液可实现持续的治疗效果。IND的局部给药可避免严重的胃肠道刺激,溃疡评估证明口服给药常伴有这种刺激。

结论

当前初步研究的良好结果表明,这类两亲性共聚物可作为疏水性药物的可注射药物载体。

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