相关链接
联系方式
  • 通信地址:成都市望江路29号四川大学国家生物医学材料工程技术研究中心
  • 邮编:610064
  • 电话:028-85412923
  • 传真:
  • Email:bhe@scu.edu.cn
当前位置:> 首页 > 论文著作 > 正文
Effects of pH-sensitive Chain Length on Doxorubicin Release from mPEG-b-PH-b-PLLA Nanoparticles
作者:Rong Liu, Bin He*, Dong Li, Yusi Lai, Jing Chang, James. Z. Tang, Zhongwei Gu*
关键字:poly(ethylene glycol), poly(L-histidine), poly(L-lactide), pH sensitivity, doxorubicin, drug release, nanoparticle
论文来源:期刊
具体来源:Int. J. Nanomed., 2012, 7: 4433-4446
发表时间:2012年

Background: Two methoxyl poly(ethylene glycol)-poly(L-histidine)-poly(L-lactide) (mPEG-PH-PLLA) triblock copolymers with different poly(L-histidine) chain lengths were synthesized. The morphology and biocompatibility of these self-assembled nanoparticles was investigated.
Methods: Doxorubicin, an antitumor drug, was trapped in the nanoparticles to explore their drug-release behavior. The drug-loaded nanoparticles were incubated with HepG2 cells to evaluate their antitumor efficacy in vitro. The effects of poly(L-histidine) chain length on the properties, drug-release behavior, and antitumor efficiency of the nanoparticles were investigated.
Results: The nanoparticles were pH-sensitive. The mean diameters of the two types of mPEG-PH-PLLA nanoparticle were less than 200 nm when the pH values were 5.0 and 7.4. The nanoparticles were nontoxic to NIH 3T3 fibroblasts and HepG2 cells. The release of doxorubicin at pH 5.0 was much faster than that at pH 7.4. The release rate of mPEG45-PH15-PLLA82 nanoparticles was much faster than that of mPEG45-PH30-PLLA82 nanoparticles at pH 5.0.
Conclusion: The inhibition effect of mPEG45-PH15-PLLA82 nanoparticles on the growth of HepG2 cells was greater than that of mPEG45-PH30-PLLA82 nanoparticles when the concentration of encapsulated doxorubicin was less than 15 μg/mL.