Qi Xiaole, Qin Xiaoxue, Yang Rong, Qin Jiayi, Li Wenyan, Luan Kun, Wu Zhenghong, Song Li
Key Laboratory of Modern Chinese Medicines, China Pharmaceutical University, Nanjing 210009, PR China.
The Second Clinical Medical College, Nanjing University of Chinese Medicine, Nanjing 210029, China.
J Pharm Sci. 2016 Jan;105(1):122-30. doi: 10.1016/j.xphs.2015.11.019. Epub 2016 Jan 13.
The aims of this study were to prepare fine intra-articular-administrated chitosan thermosensitive hydrogels combined with alginate microspheres and to investigate the possibility of those hydrogels as a drug delivery system for promoting the anti-inflammation effect. Diclofenac sodium containing alginate microspheres was prepared by a modified emulsification and/or gelation method and then dispersed into injectable thermosensitive hydrogels, consisting of chitosan and β-glycerophosphate. The final combined hydrogels were evaluated in terms of their morphology properties, rheological properties, in vitro drug release, and in vivo biocompatibility and pharmacodynamics behaviors. The optimized formulation exhibited sol-gel transition at 31.72 ± 0.42°C and quickly turned into gel within 5 min, with sustained drug release characteristics followed Ritger-Peppas equation, which could prolong the in vitro drug release to 5 days. In addition, the anti-inflammation efficacy of the combined hydrogels in rabbits with experimental rheumatoid arthritis was higher than that of drug solution and pure chitosan hydrogels. Those results demonstrated that these combined hydrogels could become a potential drug delivery system for improving the therapeutic effect of diclofenac sodium and suggested an important technology platform for intra-articular administration.
本研究的目的是制备与海藻酸钠微球相结合的用于关节内给药的精细壳聚糖热敏水凝胶,并研究这些水凝胶作为促进抗炎作用的药物递送系统的可能性。采用改良的乳化和/或凝胶化方法制备含双氯芬酸钠的海藻酸钠微球,然后将其分散到由壳聚糖和β-甘油磷酸酯组成的可注射热敏水凝胶中。对最终的复合水凝胶进行形态学性质、流变学性质、体外药物释放以及体内生物相容性和药效学行为等方面的评价。优化后的制剂在31.72±0.42℃表现出溶胶-凝胶转变,并在5分钟内迅速转变为凝胶,具有符合Ritger-Peppas方程的药物缓释特性,可将体外药物释放延长至5天。此外,复合水凝胶对实验性类风湿性关节炎兔的抗炎效果高于药物溶液和纯壳聚糖水凝胶。这些结果表明,这些复合水凝胶可成为提高双氯芬酸钠治疗效果的潜在药物递送系统,并为关节内给药提供了一个重要的技术平台。