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六臂星形聚(乳酸-共-乙醇酸)载紫杉醇的合成、表征及评价。

Synthesis, characterization, and evaluation of paclitaxel loaded in six-arm star-shaped poly(lactic-co-glycolic acid).

机构信息

Tianjin Key Laboratory of Biomaterial Research, Institute of Biomedical Engineering, Chinese Academy of Medical Science and Peking Union Medical College, Tianjin, People's Republic of China ; Center for Medical Device Evaluation of Tianjin, Tianjin, People's Republic of China.

出版信息

Int J Nanomedicine. 2013;8:4315-26. doi: 10.2147/IJN.S51629. Epub 2013 Nov 7.

Abstract

BACKGROUND

Star-shaped polymers provide more terminal groups, and are promising for application in drug-delivery systems.

METHODS

A new series of six-arm star-shaped poly(lactic-co-glycolic acid) (6-s-PLGA) was synthesized by ring-opening polymerization. The structure and properties of the 6-s-PLGA were characterized by carbon-13 nuclear magnetic resonance spectroscopy, infrared spectroscopy, gel permeation chromatography, and differential scanning calorimetry. Then, paclitaxel-loaded six-arm star-shaped poly(lactic-co-glycolic acid) nanoparticles (6-s-PLGA-PTX-NPs) were prepared under the conditions optimized by the orthogonal testing. High-performance liquid chromatography was used to analyze the nanoparticles' encapsulation efficiency and drug-loading capacity, dynamic light scattering was used to determine their size and size distribution, and transmission electron microscopy was used to evaluate their morphology. The release performance of the 6-s-PLGA-PTX-NPs in vitro and the cytostatic effect of 6-s-PLGA-PTX-NPs were investigated in comparison with paclitaxel-loaded linear poly(lactic-co-glycolic acid) nanoparticles (L-PLGA-PTX-NPs).

RESULTS

The results of carbon-13 nuclear magnetic resonance spectroscopy and infrared spectroscopy suggest that the polymerization was successfully initiated by inositol and confirm the structure of 6-s-PLGA. The molecular weights of a series of 6-s-PLGAs had a ratio corresponding to the molar ratio of raw materials to initiator. Differential scanning calorimetry revealed that the 6-s-PLGA had a low glass transition temperature of 40°C-50°C. The 6-s-PLGA-PTX-NPs were monodispersed with an average diameter of 240.4±6.9 nm in water, which was further confirmed by transmission electron microscopy. The encapsulation efficiency of the 6-s-PLGA-PTX-NPs was higher than that of the L-PLGA-PTX-NPs. In terms of the in vitro release of nanoparticles, paclitaxel (PTX) was released more slowly and more steadily from 6-s-PLGA than from linear poly(lactic-co-glycolic acid). In the cytostatic study, the 6-s-PLGA-PTX-NPs and L-PLGA-PTX-NPs were found to have a similar antiproliferative effect, which indicates durable efficacy due to the slower release of the PTX when loaded in 6-s-PLGA.

CONCLUSION

The results suggest that 6-s-PLGA may be promising for application in PTX delivery to enhance sustained antiproliferative therapy.

摘要

背景

星形聚合物提供了更多的末端基团,有望应用于药物传递系统。

方法

通过开环聚合合成了一系列新型六臂星形聚(乳酸-共-乙醇酸)(6-s-PLGA)。通过碳-13 核磁共振波谱、红外光谱、凝胶渗透色谱和差示扫描量热法对 6-s-PLGA 的结构和性能进行了表征。然后,通过正交试验优化条件,制备了载紫杉醇的六臂星形聚(乳酸-共-乙醇酸)纳米粒(6-s-PLGA-PTX-NPs)。高效液相色谱法分析纳米粒的包封率和载药量,动态光散射法测定其粒径及粒径分布,透射电镜评价其形态。与载紫杉醇的线性聚(乳酸-共-乙醇酸)纳米粒(L-PLGA-PTX-NPs)比较,考察了 6-s-PLGA-PTX-NPs 的体外释放性能和细胞抑制作用。

结果

碳-13 核磁共振波谱和红外光谱结果表明,聚合反应由肌醇引发成功,并证实了 6-s-PLGA 的结构。一系列 6-s-PLGA 的分子量与原料和引发剂的摩尔比相对应。差示扫描量热法表明,6-s-PLGA 的玻璃化转变温度较低,为 40°C-50°C。6-s-PLGA-PTX-NPs 在水中呈单分散性,平均直径为 240.4±6.9nm,透射电镜进一步证实了这一点。6-s-PLGA-PTX-NPs 的包封率高于 L-PLGA-PTX-NPs。在纳米粒的体外释放方面,紫杉醇(PTX)从 6-s-PLGA 中的释放速度更慢、更稳定。在细胞抑制研究中,发现 6-s-PLGA-PTX-NPs 和 L-PLGA-PTX-NPs 具有相似的抗增殖作用,这表明由于载药 6-s-PLGA 中 PTX 的释放更缓慢,因此具有更持久的疗效。

结论

结果表明,6-s-PLGA 可能有望用于 PTX 传递,以增强持续的抗增殖治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed2e/3825676/27dbb4b9416f/ijn-8-4315Fig1.jpg

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