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π-π 堆积增加了载化疗药物的热敏性聚合物胶束的稳定性和载药量。

Π-π stacking increases the stability and loading capacity of thermosensitive polymeric micelles for chemotherapeutic drugs.

机构信息

Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences (UIPS), Utrecht University , Universiteitsweg 99, P.O. Box 80082, 3508 TB Utrecht, The Netherlands.

出版信息

Biomacromolecules. 2013 Jun 10;14(6):1826-37. doi: 10.1021/bm400234c. Epub 2013 May 10.

Abstract

Thermosensitive amphiphilic block copolymers self-assemble into micelles above their lower critical solution temperature in water, however, the micelles generally display mediocre physical stability. To stabilize such micelles and increase their loading capacity for chemotherapeutic drugs, block copolymers with novel aromatic monomers were synthesized by free radical polymerization of N-(2-benzoyloxypropyl methacrylamide (HPMAm-Bz) or the corresponding naphthoyl analogue (HPMAm-Nt), with N-(2-hydroxypropyl) methacrylamide monolactate, using a polyethylene glycol based macroinitiator. The critical micelle temperatures and critical micelle concentrations decreased with increasing the HPMAm-Bz/Nt content. The micelles of 30-50 nm were prepared by heating the polymer aqueous solutions from 0 to 50 °C and were colloidally stable for at least 48 h at pH 7.4 and 37 °C. Paclitaxel and docetaxel encapsulation was performed by mixing drug solutions in ethanol with polymer aqueous solutions and heating from 0 to 50 °C. The micelles had a drug loading capacity up to 34 wt % for docetaxel, which is among the highest loadings reported for polymeric micelles, with loaded micelle sizes ranging from 60 to 80 nm. The micelles without aromatic groups almost completely released loaded paclitaxel in 10 days, whereas the HPMAm-Bz/Nt containing micelles released 50% of the paclitaxel at the same time, which showed a better retention for the drug of the latter micelles. (1)H solid-state NMR spectroscopy data are compatible with π-π stacking between aromatic groups. The empty micelles demonstrated good cytocompatibility, and paclitaxel-loaded micelles showed high cytotoxicity to tumor cells. In conclusion, the π-π stacking effect introduced by aromatic groups increases the stability and loading capacity of polymeric micelles.

摘要

温敏两亲嵌段共聚物在其低于临界溶液温度的水中自组装成胶束,但这些胶束通常表现出中等的物理稳定性。为了稳定这些胶束并增加其对化疗药物的载药量,通过自由基聚合 N-(2-苯甲酰氧基丙基甲基丙烯酰胺(HPMAm-Bz)或相应的萘甲酰基类似物(HPMAm-Nt)与 N-(2-羟丙基)甲基丙烯酰胺单乳酸酯,使用基于聚乙二醇的大分子引发剂合成了具有新型芳香单体的嵌段共聚物。临界胶束温度和临界胶束浓度随 HPMAm-Bz/Nt 含量的增加而降低。将聚合物水溶液从 0 加热至 50°C 可制备 30-50nm 的胶束,在 pH7.4 和 37°C 下至少 48h 胶体稳定。通过将药物乙醇溶液与聚合物水溶液混合并从 0 加热至 50°C 来进行紫杉醇和多西紫杉醇的包封。胶束对多西紫杉醇的载药能力高达 34wt%,这是报道的聚合物胶束中载药量最高的之一,载药胶束的粒径范围为 60-80nm。不含芳香基团的胶束在 10 天内几乎完全释放了载紫杉醇,而 HPMAm-Bz/Nt 含有的胶束在相同时间内释放了 50%的紫杉醇,表明后者的胶束对药物的保留更好。1H 固态 NMR 谱数据与芳香族基团之间的π-π 堆积相容。空胶束表现出良好的细胞相容性,载紫杉醇的胶束对肿瘤细胞表现出高细胞毒性。总之,芳香族基团引入的 π-π 堆积效应增加了聚合物胶束的稳定性和载药量。

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