首页> 美国卫生研究院文献>AAPS PharmSciTech >The Investigation on Polyion Complex Micelles Composed of Diammonium Glycyrrhizinate/Poly(Ethylene Glycol)–Glycidyltrimethylammonium Chloride-Grafted Polyasparthydrazide
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The Investigation on Polyion Complex Micelles Composed of Diammonium Glycyrrhizinate/Poly(Ethylene Glycol)–Glycidyltrimethylammonium Chloride-Grafted Polyasparthydrazide

机译:甘草次酸铵/聚(乙二醇)-缩水甘油基三甲基氯化铵接枝聚天冬氨酸组成的聚离子复合物胶束的研究

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摘要

To prepare stable polyion complex (PIC) micelles, polyasparthydrazide (PAHy) modified with glycidyltrimethylammonium groups and methoxy poly(ethylene glycol) (mPEG) (mPEG-g-PAHy-GTA) was synthesized. The cytotoxicity of the polymer was evaluated by the methyl tetrazolium assay. The polymer entrapped the diammonium glycyrrhizinate (DG) and formed polyion complexes. The effect of pH value, grafting degree of mPEG, copolymer and drug concentration on the micelle formation was investigated by means of measuring entrapment efficiency and micelle size. In vitro DG release from the PIC micelles was detected by dialysis in various media of different ionic strengths. To examine the pharmacokinetic behavior of micelles in vivo, the time course of the drug in plasma was evaluated. The cytotoxicity of the polymer was very low. The results showed that entrapment efficiency can reach about 93%, and the mean particle size was almost 50 nm. The drug release rate decreased with a decrease in ionic strength of the release medium or an increase in the PEG grafting degree. Compared with DG solution, the AUC of DG micelles had a twofold increase. The smaller clearance and longer mean residence time of the DG micelles group compared with DG solution group showed that the DG loaded in PIC micelles can reduce drug elimination and prolong the drug residence time in the blood circulation. The results indicated that PIC micelles composed of mPEG-g-PAHy-GTA would be prospective as a drug carrier to the drugs which can be ionized in solution.
机译:为了制备稳定的聚离子复合物(PIC)胶束,合成了用缩水甘油基三甲基铵基团和甲氧基聚乙二醇(mPEG)(mPEG-g-PAHy-GTA)改性的聚天冬氨酸(PAHy)。通过甲基四唑鎓测定法评估聚合物的细胞毒性。聚合物截留甘草酸二铵(DG)并形成聚离子络合物。通过测量包封率和胶束大小,研究了pH值,mPEG的接枝度,共聚物和药物浓度对胶束形成的影响。通过在不同离子强度的各种介质中透析,检测到从PIC胶束中释放出的DG。为了检查体内胶束的药代动力学行为,评估了药物在血浆中的时间进程。该聚合物的细胞毒性非常低。结果表明包封率可以达到93%左右,平均粒径几乎为50 nm。药物释放速率随着释放介质离子强度的降低或PEG接枝度的增加而降低。与DG溶液相比,DG胶束的AUC增加了两倍。与DG溶液组相比,DG胶束组的清除率较小且平均停留时间较长,这表明PIC胶束中的DG可以减少药物消除并延长药物在血液循环中的停留时间。结果表明,由mPEG-g-PAHy-GTA组成的PIC胶束有望作为可在溶液中电离的药物的药物载体。

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