Song Zhimei, Zhu Wenxia, Liu Na, Yang Fengying, Feng Runliang
Department of Pharmaceutical Engineering, School of Biological Science and Technology, University of Jinan, 336 Nanxinzhuang Xilu, Jinan, Shandong Province 250022, PR China.
School of Medicine and Life Sciences, University of Jinan, 336 Nanxinzhuang Xilu, Jinan, Shandong Province 250022, PR China; Shandong Academy of Medical Sciences, 18877 Jingshi Road, Jinan, Shandong Province 250062, PR China.
Int J Pharm. 2014 Aug 25;471(1-2):312-21. doi: 10.1016/j.ijpharm.2014.05.059. Epub 2014 Jun 2.
In this study, a novel linolenic acid-modified poly(ethylene glycol)-b-poly(ϵ-caprolactone) copolymer was prepared through radical addition, ring-opening polymerization, and N-acylation reactions. Its structure was characterized by (1)H NMR and GPC. Micelles were developed by thin-film hydration and used as a delivery system for curcumin with high drug loading capacity of 12.80% and entrapment efficiency of 98.53%. The water solubility of curcumin was increased to 2.05 mg/mL, which was approximately 1.87×10(5) times higher than that of free curcumin. The micelles were spherical shape with an average diameter of 20.8±0.8 nm. X-ray diffraction and FT-IR studies suggested that curcumin existed in the polymeric matrices under π-π conjugation and hydrogen bond interaction with the copolymer. In vitro drug release studies indicated that the curcumin release from linolenic acid-modified copolymer micelles met controlled release, and its release rate was less than that from the linolenic acid-unmodified copolymer micelles. Cytotoxicities against Hela and A-549cells demonstrated that the additional π-π conjugation could affect curcumin's anticancer activity through reducing its release from micelles. Hemolysis test and intravenous irritation test results revealed that the linolenic acid-modified copolymer was safe for intravenous injection. The plasma AUC0-∞ and MRT0-∞ of curcumin-loaded linolenic acid-conjugated poly(ethylene glycol)-b-poly(ϵ-caprolactone) copolymer micelles were 2.75- and 3.49-fold higher than that of control solution, respectively. The CLz was also decreased by 2.75-fold. So, this linolenic acid-modified copolymer might be a carrier candidate for curcumin delivery.
在本研究中,通过自由基加成、开环聚合和N-酰化反应制备了一种新型的亚麻酸修饰的聚(乙二醇)-b-聚(ε-己内酯)共聚物。通过¹H NMR和GPC对其结构进行了表征。通过薄膜水化法制备了胶束,并将其用作姜黄素的递送系统,其载药量高达12.80%,包封率为98.53%。姜黄素的水溶性提高到了2.05 mg/mL,约为游离姜黄素的1.87×10⁵倍。胶束呈球形,平均直径为20.8±0.8 nm。X射线衍射和FT-IR研究表明,姜黄素在聚合物基质中通过π-π共轭和与共聚物的氢键相互作用而存在。体外药物释放研究表明,姜黄素从亚麻酸修饰的共聚物胶束中的释放符合控释,其释放速率低于未修饰亚麻酸的共聚物胶束。对Hela和A-549细胞的细胞毒性表明,额外的π-π共轭可通过减少姜黄素从胶束中的释放来影响其抗癌活性。溶血试验和静脉刺激试验结果表明,亚麻酸修饰的共聚物用于静脉注射是安全的。负载姜黄素的亚麻酸共轭聚(乙二醇)-b-聚(ε-己内酯)共聚物胶束的血浆AUC₀-∞和MRT₀-∞分别比对照溶液高2.75倍和3.49倍。CLz也降低了2.75倍。因此,这种亚麻酸修饰的共聚物可能是一种用于姜黄素递送的载体候选物。